Isoquercetin (BioDeep_00000275350)
Main id: BioDeep_00000000179
natural product PANOMIX_OTCML-2023 PANOMIX-Anthocyanidin BioNovoGene_Lab2019
代谢物信息卡片
化学式: C21H20O12 (464.09547200000003)
中文名称: 槲皮素 3-β-D-葡萄糖甙, 槲皮素-3-O-葡萄糖苷, 槲皮素-3-β-D-葡萄糖苷、异槲皮苷
谱图信息:
最多检出来源 () 0%
分子结构信息
SMILES: C1=CC(=C(C=C1C2=C(C(=O)C3=C(C=C(C=C3O2)O)O)OC4C(C(C(C(O4)CO)O)O)O)O)O
InChI: InChI=1/C21H20O12/c22-6-13-15(27)17(29)18(30)21(32-13)33-20-16(28)14-11(26)4-8(23)5-12(14)31-19(20)7-1-2-9(24)10(25)3-7/h1-5,13,15,17-18,21-27,29-30H,6H2/t13-,15-,17+,18-,21+/m1/s1
描述信息
COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials
Corona-virus
Coronavirus
SARS-CoV-2
COVID-19
SARS-CoV
COVID19
SARS2
SARS
Isoquercetin (Quercetin 3-glucoside) is a naturally occurring polyphenol that has antioxidant, anti-proliferative, and anti-inflammatory properties. Isoquercetin alleviates ethanol-induced hepatotoxicity, oxidative stress, and inflammatory responses via the Nrf2/ARE antioxidant signaling pathway[1]. Isoquercetin regulates the expression of nitric oxide synthase 2 (NO2) via modulating the nuclear factor-κB (NF-κB) transcription regulation system. Isoquercetin has high bioavailability and low toxicity, is a promising candidate agent to prevent birth defects in diabetic pregnancies[2].
Isoquercetin (Quercetin 3-glucoside) is a naturally occurring polyphenol that has antioxidant, anti-proliferative, and anti-inflammatory properties. Isoquercetin alleviates ethanol-induced hepatotoxicity, oxidative stress, and inflammatory responses via the Nrf2/ARE antioxidant signaling pathway[1]. Isoquercetin regulates the expression of nitric oxide synthase 2 (NO2) via modulating the nuclear factor-κB (NF-κB) transcription regulation system. Isoquercetin has high bioavailability and low toxicity, is a promising candidate agent to prevent birth defects in diabetic pregnancies[2].
Isoquercitrin (Isoquercitroside) is an effective antioxidant and an eosinophilic inflammation suppressor.
Isoquercitrin (Isoquercitroside) is an effective antioxidant and an eosinophilic inflammation suppressor.
同义名列表
15 个代谢物同义名
3,3,4,5,7-Pentahydroxyflavone 3-β-glucoside; Quercetin 3-β-D-glucoside; Isoquercitrin; Isoquercetin; quercetin-3-O-glucoside; Quercetin O-glucoside; Quercetin 3-O-glucoside; Quercetin 3-beta-D-glucopyranoside; Quercetin-3-beta-D-glucoside; Qurcetin-3-glucoside; Quercetin 3-glucoside; quercetin-3-o-beta-glucopyranoside; Quercetol 3-glucoside; Isoquercitroside; Quercetin 3-O-glucoside
数据库引用编号
39 个数据库交叉引用编号
- ChEBI: CHEBI:68352
- KEGG: C05623
- PubChem: 5280804
- Metlin: METLIN64941
- DrugBank: DB12665
- ChEMBL: CHEMBL250450
- MetaCyc: CPD1F-437
- CAS: 482-35-9
- MoNA: CCMSLIB00000077231
- MoNA: CCMSLIB00000078876
- MoNA: PM016130
- MoNA: PM003728
- MoNA: PM017605
- MoNA: PM011204
- MoNA: PM000321
- MoNA: PM010319
- MoNA: PM002518
- MoNA: PM006202
- MoNA: PM012113
- MoNA: PM016111
- MoNA: PM012007
- MoNA: PT204330
- MoNA: PT104330
- MoNA: TY000219
- MoNA: TY000218
- PMhub: MS000007565
- ChEBI: CHEBI:28299
- PubChem: 7940
- LipidMAPS: LMPK12112086
- KNApSAcK: C00005373
- CAS: 21637-25-2
- PDB-CCD: HW2
- 3DMET: B01878
- NIKKAJI: J11.252F
- medchemexpress: HY-N1445
- medchemexpress: HY-N0768
- BioNovoGene_Lab2019: BioNovoGene_Lab2019-699
- KNApSAcK: 28299
- LOTUS: LTS0254337
分类词条
相关代谢途径
Reactome(0)
BioCyc(0)
PlantCyc(0)
代谢反应
0 个相关的代谢反应过程信息。
Reactome(0)
BioCyc(0)
WikiPathways(0)
Plant Reactome(0)
INOH(0)
PlantCyc(0)
COVID-19 Disease Map(0)
PathBank(0)
PharmGKB(0)
1139 个相关的物种来源信息
- 183220 - Abelmoschus manihot (L)Medic.: -
- 3319 - Abies: LTS0254337
- 97171 - Abies nephrolepis: 10.1002/CBDV.201000373
- 97171 - Abies nephrolepis: LTS0254337
- 137429 - Acaena: LTS0254337
- 281911 - Acaena magellanica: 10.1211/0022357021779014
- 281911 - Acaena magellanica: LTS0254337
- 20025 - Acalypha: LTS0254337
- 720869 - Acalypha australis: 10.1007/S10600-012-0285-2
- 720869 - Acalypha australis: LTS0254337
- 478095 - Acalypha indica: 10.1002/JCCS.199700075
- 478095 - Acalypha indica: LTS0254337
- 4022 - Acer: LTS0254337
- 171204 - Acer barbinerve: 10.1007/S10600-011-0016-0
- 171204 - Acer barbinerve: LTS0254337
- 168564 - Acer mandshuricum: 10.5012/BKCS.2010.31.04.929
- 168564 - Acer mandshuricum: LTS0254337
- 3624 - Actinidia: LTS0254337
- 3625 - Actinidia chinensis: LTS0254337
- 165710 - Actinidia kolomikta: 10.1007/S10600-010-9569-6
- 165710 - Actinidia kolomikta: LTS0254337
- 3623 - Actinidiaceae: LTS0254337
- 4242 - Adenothamnus: LTS0254337
- 4243 - Adenothamnus validus: 10.1016/0031-9422(88)87035-3
- 4243 - Adenothamnus validus: LTS0254337
- 4206 - Adoxaceae: LTS0254337
- 43363 - Aesculus: LTS0254337
- 290911 - Aesculus chinensis: 10.1021/NP030470H
- 290911 - Aesculus chinensis: LTS0254337
- 184381 - Aganosma: LTS0254337
- 49132 - Agarista: LTS0254337
- 49175 - Agarista salicifolia: 10.1016/J.CHROMA.2007.03.038
- 49175 - Agarista salicifolia: LTS0254337
- 23137 - Agrimonia: LTS0254337
- 57912 - Agrimonia eupatoria: 10.1271/BBB.100200
- 57912 - Agrimonia eupatoria: LTS0254337
- 74656 - Agrimonia pilosa: 10.1016/J.PHYTOCHEM.2010.08.007
- 74656 - Agrimonia pilosa: LTS0254337
- 38595 - Ajuga: LTS0254337
- 16896 - Alangium: LTS0254337
- 16897 - Alangium chinense: 10.1021/NP990391Z
- 16897 - Alangium chinense: LTS0254337
- 60116 - Alangium platanifolium: 10.1016/0031-9422(93)85414-M
- 60116 - Alangium platanifolium: LTS0254337
- 2650355 - Alangium platanifolium var. trilobum: 10.1016/0031-9422(93)85414-M
- 4678 - Allium: LTS0254337
- 4679 - Allium cepa:
- 4679 - Allium cepa: 10.1055/S-2007-969296
- 4679 - Allium cepa: LTS0254337
- 74896 - Allium neapolitanum: 10.1016/S0031-9422(96)00663-2
- 74896 - Allium neapolitanum: LTS0254337
- 88845 - Allium victorialis: 10.1016/J.BMCL.2012.10.043
- 88845 - Allium victorialis: LTS0254337
- 3563 - Amaranthaceae: LTS0254337
- 3564 - Amaranthus: LTS0254337
- 56196 - Amaranthus viridis: 10.1055/S-0033-1352389
- 56196 - Amaranthus viridis: LTS0254337
- 4668 - Amaryllidaceae: LTS0254337
- 386050 - Ammoides: LTS0254337
- 386051 - Ammoides pusilla: 10.1007/S10600-005-0085-Z
- 386051 - Ammoides pusilla: LTS0254337
- 4011 - Anacardiaceae: LTS0254337
- 49044 - Anaphalis: LTS0254337
- 1209471 - Anaphalis sinica: 10.1002/JCCS.200400063
- 1209471 - Anaphalis sinica: LTS0254337
- 89629 - Anchusa: LTS0254337
- 256470 - Anchusa azurea: 10.1002/HLCA.200900230
- 256470 - Anchusa azurea: LTS0254337
- 22868 - Anemone: LTS0254337
- 1484106 - Anemone tomentosa: 10.1007/S10600-010-9697-Z
- 1484106 - Anemone tomentosa: LTS0254337
- 40948 - Angelica: LTS0254337
- 22140 - Annonaceae: LTS0254337
- 4037 - Apiaceae: LTS0254337
- 4056 - Apocynaceae: LTS0254337
- 13338 - Apocynum: LTS0254337
- 13339 - Apocynum cannabinum:
- 377125 - Apocynum venetum:
- 377125 - Apocynum venetum: 10.1007/S10600-011-9801-Z
- 377125 - Apocynum venetum: 10.1055/S-2000-11135
- 377125 - Apocynum venetum: LTS0254337
- 4294 - Aquifoliaceae: LTS0254337
- 3702 - Arabidopsis thaliana: 10.1104/PP.109.148031
- 3817 - Arachis: LTS0254337
- 3818 - Arachis hypogaea: 10.1021/JF703652A
- 3818 - Arachis hypogaea: LTS0254337
- 4050 - Araliaceae: LTS0254337
- 13344 - Ardisia: LTS0254337
- 13345 - Ardisia crenata: 10.3389/FMOLB.2021.683671
- 1006429 - Ardisia sanguinolenta: 10.1248/CPB.50.1484
- 1006429 - Ardisia sanguinolenta: LTS0254337
- 4710 - Arecaceae: LTS0254337
- 54795 - Argemone: LTS0254337
- 99325 - Argemone platyceras: 10.1016/J.EJPHAR.2005.08.046
- 99325 - Argemone platyceras: LTS0254337
- 4246 - Arnica: LTS0254337
- 149410 - Arnica longifolia: 10.1016/S0031-9422(00)89581-3
- 149410 - Arnica longifolia: LTS0254337
- 436215 - Arnica viscosa: 10.1002/J.1537-2197.1987.TB12148.X
- 436215 - Arnica viscosa: LTS0254337
- 4219 - Artemisia: LTS0254337
- 35608 - Artemisia annua: 10.1016/0031-9422(94)00591-G
- 35608 - Artemisia annua: LTS0254337
- 35608 - Artemisia Annua L.: -
- 992876 - Artemisia armeniaca: 10.1002/CBDV.201000284
- 992876 - Artemisia armeniaca: LTS0254337
- 401898 - Artemisia gmelinii: 10.1155/2014/673286
- 401898 - Artemisia gmelinii: LTS0254337
- 265784 - Artemisia iwayomogi: 10.1155/2014/673286
- 265784 - Artemisia iwayomogi: LTS0254337
- 6656 - Arthropoda: LTS0254337
- 23143 - Aruncus: LTS0254337
- 32220 - Aruncus dioicus: 10.1016/J.BMCL.2011.04.043
- 32220 - Aruncus dioicus: LTS0254337
- 2163610 - Aruncus dioicus var. kamtschaticus: 10.1016/J.BMCL.2011.04.043
- 2163610 - Aruncus dioicus var. kamtschaticus: LTS0254337
- 40552 - Asparagaceae: LTS0254337
- 51383 - Asphodelaceae: LTS0254337
- 41479 - Aster: LTS0254337
- 947972 - Aster koraiensis:
- 947972 - Aster koraiensis: 10.1021/NP200646E
- 947972 - Aster koraiensis: 10.5012/BKCS.2010.31.01.227
- 947972 - Aster koraiensis: LTS0254337
- 4210 - Asteraceae: LTS0254337
- 20400 - Astragalus: LTS0254337
- 1197409 - Astragalus arguricus: 10.1007/BF00574227
- 1197409 - Astragalus arguricus: LTS0254337
- 1080390 - Astragalus asper: 10.1007/S10600-010-9597-2
- 1080390 - Astragalus asper: LTS0254337
- 3083988 - Astragalus bungeanus: LTS0254337
- 3083996 - Astragalus captiosus: LTS0254337
- 20410 - Astragalus cicer: 10.1007/BF00602480
- 20410 - Astragalus cicer: LTS0254337
- 1197414 - Astragalus goktschaicus: 10.1007/BF00574227
- 1197414 - Astragalus goktschaicus: LTS0254337
- 1906524 - Astragalus lagurus: 10.1007/BF00580090
- 1906524 - Astragalus lagurus: LTS0254337
- 1091133 - Astragalus onobrychis: 10.1007/BF00574227
- 1091133 - Astragalus onobrychis: LTS0254337
- 1264832 - Astragalus saganlugensis: 10.1007/BF00602480
- 1264832 - Astragalus saganlugensis: LTS0254337
- 1197423 - Astragalus sevangensis: 10.1007/BF00574227
- 1197423 - Astragalus sevangensis: LTS0254337
- 1080395 - Astragalus varius: 10.1007/BF00596666
- 137668 - Atraphaxis: LTS0254337
- 1215405 - Atraphaxis frutescens: 10.1007/BF00571235
- 1215405 - Atraphaxis frutescens: LTS0254337
- 103963 - Austrocedrus: LTS0254337
- 103964 - Austrocedrus chilensis: 10.1016/0031-9422(90)85105-O
- 103964 - Austrocedrus chilensis: LTS0254337
- 8782 - Aves: LTS0254337
- 124942 - Azadirachta: LTS0254337
- 124943 - Azadirachta indica:
- 124943 - Azadirachta indica: 10.1016/S0031-9422(00)97156-5
- 124943 - Azadirachta indica: 10.1016/S0031-9422(00)97305-9
- 124943 - Azadirachta indica: LTS0254337
- 41487 - Baccharis: LTS0254337
- 1620022 - Baccharis angustifolia: 10.1016/S0031-9422(00)90045-1
- 1620022 - Baccharis angustifolia: LTS0254337
- 72900 - Baccharis dracunculifolia: 10.1248/CPB.49.1388
- 72900 - Baccharis dracunculifolia: LTS0254337
- 2707479 - Baccharis ochracea: 10.1016/S0031-9422(96)00565-1
- 2707479 - Baccharis ochracea: LTS0254337
- 25692 - Balsaminaceae: LTS0254337
- 3805 - Bauhinia: LTS0254337
- 228520 - Bauhinia glauca: 10.1016/J.BMCL.2015.05.089
- 41773 - Berberidaceae: LTS0254337
- 22774 - Berberis: LTS0254337
- 258209 - Berberis vulgaris: 10.1007/BF00579837
- 258209 - Berberis vulgaris: LTS0254337
- 53575 - Berlandiera: LTS0254337
- 53576 - Berlandiera pumila: 10.1016/S0031-9422(00)90045-1
- 53576 - Berlandiera pumila: LTS0254337
- 3504 - Betula: LTS0254337
- 284673 - Betula alnoides: 10.1016/J.PHYTOL.2011.02.011
- 284673 - Betula alnoides: LTS0254337
- 3514 - Betulaceae: LTS0254337
- 42336 - Bidens: LTS0254337
- 1527831 - Bidens bipinnata: 10.3987/COM-03-S31
- 1527831 - Bidens bipinnata: LTS0254337
- 24079 - Bignoniaceae: LTS0254337
- 21571 - Boraginaceae: LTS0254337
- 3705 - Brassica: LTS0254337
- 3712 - Brassica oleracea: LTS0254337
- 36774 - Brassica oleracea var. italica: 10.1002/(SICI)1097-0010(199808)77:4<468::AID-JSFA66>3.0.CO;2-B
- 36774 - Brassica oleracea var. italica: LTS0254337
- 3700 - Brassicaceae: LTS0254337
- 283086 - Bridelia: LTS0254337
- 319147 - Bridelia ferruginea:
- 319147 - Bridelia ferruginea: 10.1016/S0031-9422(00)82558-3
- 319147 - Bridelia ferruginea: 10.1055/S-1999-14059
- 319147 - Bridelia ferruginea: LTS0254337
- 56522 - Buphthalmum: LTS0254337
- 56523 - Buphthalmum salicifolium: 10.1016/S0031-9422(99)00082-5
- 56523 - Buphthalmum salicifolium: LTS0254337
- 52451 - Bupleurum chinense DC.: -
- 4014 - Burseraceae: LTS0254337
- 4269 - Byrsonima: LTS0254337
- 1027102 - Byrsonima coccolobifolia: 10.1021/NP400717M
- 4270 - Byrsonima crassifolia: 10.1016/S0031-9422(96)00842-4
- 4270 - Byrsonima crassifolia: LTS0254337
- 41495 - Calendula: LTS0254337
- 41496 - Calendula officinalis:
- 41496 - Calendula officinalis: 10.1007/BF00598181
- 41496 - Calendula officinalis: 10.1007/S10600-007-0084-3
- 41496 - Calendula officinalis: 10.1021/NP068016B
- 41496 - Calendula officinalis: LTS0254337
- 3427 - Calycanthaceae: LTS0254337
- 3428 - Calycanthus: LTS0254337
- 3431 - Calycanthus chinensis: 10.1016/J.BMC.2011.03.055
- 3431 - Calycanthus chinensis: LTS0254337
- 4441 - Camellia: LTS0254337
- 4442 - Camellia sinensis:
- 4442 - Camellia sinensis: 10.1002/MNFR.200400064
- 4442 - Camellia sinensis: 10.1021/JF9800211
- 4442 - Camellia sinensis: 10.1080/1071576021000006707
- 4442 - Camellia sinensis: LTS0254337
- 40568 - Campanula: LTS0254337
- 239399 - Campanula barbata: 10.1016/S0031-9422(00)00423-4
- 239399 - Campanula barbata: LTS0254337
- 1238577 - Campanula kemulariae: 10.1007/BF00579158
- 1238577 - Campanula kemulariae: LTS0254337
- 239408 - Campanula kolenatiana: 10.1007/BF00579158
- 239408 - Campanula kolenatiana: LTS0254337
- 239416 - Campanula persicifolia: 10.1007/BF00607553
- 239416 - Campanula persicifolia: LTS0254337
- 239420 - Campanula raddeana: 10.1007/BF00579158
- 239420 - Campanula raddeana: LTS0254337
- 4381 - Campanulaceae: LTS0254337
- 16921 - Camptotheca: LTS0254337
- 16922 - Camptotheca acuminata: 10.1055/S-2004-835854
- 16922 - Camptotheca acuminata: LTS0254337
- 43690 - Canarium: LTS0254337
- 300208 - Canarium album: 10.1007/S10600-010-9543-3
- 300208 - Canarium album: LTS0254337
- 3424 - Canellaceae: LTS0254337
- 20483 - Caragana: LTS0254337
- 3086226 - Caragana alaica: LTS0254337
- 20484 - Caragana arborescens: 10.1007/BF00598323
- 20484 - Caragana arborescens: LTS0254337
- 4221 - Carthamus: LTS0254337
- 41502 - Carthamus lanatus: 10.1007/BF02329612
- 41502 - Carthamus lanatus: LTS0254337
- 114815 - Castanopsis: LTS0254337
- 167387 - Castanopsis fissa: 10.1016/J.PHYTOCHEM.2011.07.007
- 167387 - Castanopsis fissa: LTS0254337
- 46111 - Celosia: LTS0254337
- 46112 - Celosia argentea: 10.1080/10286020.2010.503652
- 46112 - Celosia argentea: LTS0254337
- 43068 - Centella: LTS0254337
- 48106 - Centella asiatica: 10.1016/J.BMCL.2011.01.066
- 48106 - Centella asiatica: LTS0254337
- 50178 - Cephalotaxus: LTS0254337
- 49800 - Cercis: LTS0254337
- 49801 - Cercis canadensis: 10.1021/JA01176A016
- 49801 - Cercis canadensis: LTS0254337
- 228520 - Cheniella glauca: 10.1016/J.BMCL.2015.05.089
- 1804623 - Chenopodiaceae: LTS0254337
- 1307779 - Chenopodiastrum: LTS0254337
- 46091 - Chenopodiastrum murale: 10.1007/S10600-007-0056-7
- 46091 - Chenopodiastrum murale: LTS0254337
- 3558 - Chenopodium: LTS0254337
- 3559 - Chenopodium album:
- 3559 - Chenopodium album: 10.1007/S10600-007-0056-7
- 3559 - Chenopodium album: 10.1021/JF800421J
- 3559 - Chenopodium album: LTS0254337
- 7711 - Chordata: LTS0254337
- 22973 - Chrysobalanaceae: LTS0254337
- 13424 - Chrysophyllum: LTS0254337
- 221251 - Chrysophyllum cainito: 10.1021/JF011178N
- 221251 - Chrysophyllum cainito: LTS0254337
- 30102 - Cicadellidae: LTS0254337
- 13428 - Cinnamomum: LTS0254337
- 337469 - Cinnamomum philippinense: 10.1002/JCCS.201190020
- 337469 - Cinnamomum philippinense: LTS0254337
- 149357 - Cissus: LTS0254337
- 165299 - Cissus discolor: 10.1248/CPB.57.1089
- 289665 - Cissus verticillata: LTS0254337
- 69450 - Cistaceae: LTS0254337
- 69451 - Cistus: LTS0254337
- 191224 - Cistus creticus: 10.1016/0031-9422(92)80355-I
- 335173 - Cistus ladanifer: 10.1016/0031-9422(92)80355-I
- 335173 - Cistus ladanifer: LTS0254337
- 43365 - Clitoria: LTS0254337
- 43366 - Clitoria ternatea:
- 43366 - Clitoria ternatea: 10.1016/S0031-9422(02)00486-7
- 43366 - Clitoria ternatea: 10.1016/S0031-9422(03)00504-1
- 43366 - Clitoria ternatea: LTS0254337
- 401068 - Coleogyne: LTS0254337
- 401069 - Coleogyne ramosissima: 10.1016/S0031-9422(00)00192-8
- 401069 - Coleogyne ramosissima: LTS0254337
- 4118 - Convolvulaceae: LTS0254337
- 41552 - Conyza: LTS0254337
- 2490659 - Conyza filaginoides: 10.1021/NP000442O
- 2490659 - Conyza filaginoides: 10.1055/S-2006-957598
- 2490659 - Conyza filaginoides: LTS0254337
- 93758 - Corchorus: LTS0254337
- 93759 - Corchorus olitorius: 10.1038/192288B0
- 93759 - Corchorus olitorius: LTS0254337
- 42219 - Cornaceae: LTS0254337
- 4281 - Cornus: LTS0254337
- 4285 - Cornus mas: 10.1016/J.FOODCHEM.2009.07.063
- 4285 - Cornus mas: LTS0254337
- 41555 - Cosmos: LTS0254337
- 459758 - Cosmos sulphureus:
- 459758 - Cosmos sulphureus: 10.1002/MRC.2516
- 459758 - Cosmos sulphureus: 10.1021/JA01259A066
- 459758 - Cosmos sulphureus: LTS0254337
- 36607 - Cotoneaster: LTS0254337
- 1851000 - Cotoneaster orbicularis: 10.1016/S0031-9422(99)00598-1
- 1851000 - Cotoneaster orbicularis: LTS0254337
- 49139 - Craibiodendron: LTS0254337
- 49140 - Craibiodendron yunnanense: 10.1007/S10600-008-0012-1
- 49140 - Craibiodendron yunnanense: LTS0254337
- 189210 - Crassocephalum: LTS0254337
- 189211 - Crassocephalum crepidioides: 10.1248/BPB.28.19
- 189211 - Crassocephalum crepidioides: LTS0254337
- 3781 - Crassulaceae: LTS0254337
- 197371 - Cressa: LTS0254337
- 1465651 - Cressa cretica: 10.1016/J.FITOTE.2004.05.008
- 1465651 - Cressa cretica: LTS0254337
- 22027 - Cryptocarya: LTS0254337
- 1345247 - Cryptocarya moschata: 10.1021/NP400717M
- 1345247 - Cryptocarya moschata: LTS0254337
- 3367 - Cupressaceae: LTS0254337
- 59973 - Cyclamen: LTS0254337
- 87530 - Cyclamen persicum: 10.1016/S0031-9422(99)00297-6
- 87530 - Cyclamen persicum: LTS0254337
- 53862 - Dalbergia: LTS0254337
- 107308 - Dalbergia sissoo: 10.1016/J.BMCL.2011.12.036
- 107308 - Dalbergia sissoo: LTS0254337
- 32084 - Dennstaedtiaceae: LTS0254337
- 89410 - Descurainia: LTS0254337
- 89411 - Descurainia sophia: 10.1248/CPB.52.1483
- 89411 - Descurainia sophia: LTS0254337
- 89411 - Descurainia sophia (L.) Webb. ex Prantl: -
- 53866 - Desmodium: LTS0254337
- 37228 - Dicranopteris: LTS0254337
- 37229 - Dicranopteris linearis: 10.1248/CPB.43.1800
- 37229 - Dicranopteris linearis: LTS0254337
- 77005 - Dictamnus: LTS0254337
- 298346 - Dictamnus albus: 10.1007/BF00579494
- 298346 - Dictamnus albus: LTS0254337
- 714465 - Dictamnus dasycarpus: 10.1007/BF00575725
- 714465 - Dictamnus dasycarpus: LTS0254337
- 4672 - Dioscorea: LTS0254337
- 35874 - Dioscorea bulbifera: 10.1002/CBDV.201000279
- 35874 - Dioscorea bulbifera: LTS0254337
- 4671 - Dioscoreaceae: LTS0254337
- 13492 - Diospyros: LTS0254337
- 665996 - Diospyros cathayensis: 10.1248/CPB.53.591
- 665996 - Diospyros cathayensis: LTS0254337
- 35925 - Diospyros kaki:
- 35925 - Diospyros kaki: 10.1007/BF00579082
- 35925 - Diospyros kaki: 10.1248/BPB.33.122
- 35925 - Diospyros kaki: LTS0254337
- 35925 - Diospyros kaki Thunb.: -
- 87301 - Draba: LTS0254337
- 171822 - Draba nemorosa: 10.1007/S12272-010-0806-0
- 171822 - Draba nemorosa: LTS0254337
- 39297 - Dracocephalum ruyschiana: 10.1021/NP300609U
- 240058 - Dysphania: LTS0254337
- 240045 - Dysphania botrys: 10.1007/BF00563912
- 240045 - Dysphania botrys: LTS0254337
- 19955 - Ebenaceae: LTS0254337
- 45918 - Empetrum: LTS0254337
- 191066 - Empetrum nigrum:
- 191066 - Empetrum nigrum: 10.1007/BF00598202
- 191066 - Empetrum nigrum: 10.1081/JLC-100100418
- 191066 - Empetrum nigrum: LTS0254337
- 3256 - Equisetaceae: LTS0254337
- 3257 - Equisetum: LTS0254337
- 3258 - Equisetum arvense: 10.1248/YAKUSHI1881.60.8_449
- 3258 - Equisetum arvense: LTS0254337
- 13509 - Erica: LTS0254337
- 270432 - Erica cinerea: 10.1016/0031-9422(92)83305-I
- 270432 - Erica cinerea: LTS0254337
- 4345 - Ericaceae: LTS0254337
- 23166 - Eriobotrya: LTS0254337
- 32224 - Eriobotrya japonica: 10.1007/S10600-005-0048-4
- 32224 - Eriobotrya japonica: LTS0254337
- 3932 - Eucalyptus: LTS0254337
- 34316 - Eucalyptus camaldulensis: 10.1016/0031-9422(93)85448-Z
- 34316 - Eucalyptus camaldulensis: LTS0254337
- 627158 - Eucalyptus robusta: 10.1016/0031-9422(93)85448-Z
- 4391 - Eucommia: LTS0254337
- 4392 - Eucommia ulmoides:
- 4392 - Eucommia ulmoides: 10.1007/S11418-006-0027-5
- 4392 - Eucommia ulmoides: 10.1021/NP0780046
- 4392 - Eucommia ulmoides: LTS0254337
- 4390 - Eucommiaceae: LTS0254337
- 2759 - Eukaryota: LTS0254337
- 3990 - Euphorbia: LTS0254337
- 526193 - Euphorbia ebracteolata: 10.1016/J.CARRES.2003.12.017
- 526193 - Euphorbia ebracteolata: LTS0254337
- 212301 - Euphorbia humifusa: 10.1016/J.FITOTE.2010.04.012
- 212301 - Euphorbia humifusa: LTS0254337
- 1091645 - Euphorbia retusa: 10.1016/S0031-9422(00)83562-1
- 1091645 - Euphorbia retusa: LTS0254337
- 1091647 - Euphorbia sulcata: 10.1016/S0031-9422(00)83562-1
- 2919153 - Euphorbia watanabei: LTS0254337
- 3977 - Euphorbiaceae: LTS0254337
- 210331 - Euscaphis: LTS0254337
- 210332 - Euscaphis japonica: 10.1055/S-2007-981551
- 210332 - Euscaphis japonica: LTS0254337
- 113200 - Evolvulus: LTS0254337
- 439689 - Evolvulus alsinoides:
- 439689 - Evolvulus alsinoides: 10.1016/J.FITOTE.2009.09.003
- 439689 - Evolvulus alsinoides: 10.1248/CPB.55.771
- 439689 - Evolvulus alsinoides: LTS0254337
- 179681 - Excoecaria: LTS0254337
- 241838 - Excoecaria agallocha: 10.1016/J.BMCL.2011.11.109
- 241838 - Excoecaria agallocha: LTS0254337
- 3803 - Fabaceae: LTS0254337
- 164493 - Fadogia: LTS0254337
- 164500 - Fadogia ancylantha: 10.1021/NP900466X
- 164500 - Fadogia ancylantha: LTS0254337
- 3503 - Fagaceae: LTS0254337
- 66628 - Fagonia: LTS0254337
- 66629 - Fagonia indica: 10.1016/0305-1978(88)90012-9
- 66629 - Fagonia indica: LTS0254337
- 291474 - Fagonia paulayana: 10.1016/0305-1978(88)90012-9
- 291474 - Fagonia paulayana: LTS0254337
- 76024 - Fallopia: LTS0254337
- 76025 - Fallopia multiflora: LTS0254337
- 76028 - Fallopia multiflora var. ciliinervis: 10.1002/JCCS.200700015
- 76028 - Fallopia multiflora var. ciliinervis: LTS0254337
- 3493 - Ficus: LTS0254337
- 1009471 - Ficus pandurata: 10.1080/14786410902757899
- 1009471 - Ficus pandurata: LTS0254337
- 479338 - Ficus ruficaulis: 10.1021/NP0401056
- 479338 - Ficus ruficaulis: LTS0254337
- 48037 - Foeniculum: LTS0254337
- 48038 - Foeniculum vulgare: 10.3390/70200245
- 29178 - Foraminifera: LTS0254337
- 3746 - Fragaria: 10.1021/JF049450R
- 3746 - Fragaria: LTS0254337
- 43486 - Gardenia: LTS0254337
- 114476 - Gardenia jasminoides: 10.1021/NP050447R
- 114476 - Gardenia jasminoides: LTS0254337
- 49818 - Genista: LTS0254337
- 49826 - Genista tricuspidata:
- 49826 - Genista tricuspidata: 10.1007/S10600-006-0264-6
- 49826 - Genista tricuspidata: 10.1007/S10600-011-9903-7
- 49826 - Genista tricuspidata: LTS0254337
- 49810 - Genista tridentata: 10.1002/PTR.2403
- 4027 - Geraniaceae: LTS0254337
- 4028 - Geranium: LTS0254337
- 554690 - Geranium carolinianum: 10.1248/BPB.31.743
- 554690 - Geranium carolinianum: LTS0254337
- 2766698 - Geranium saxatile: LTS0254337
- 314613 - Geranium tuberosum: 10.1002/HLCA.200800346
- 314613 - Geranium tuberosum: LTS0254337
- 3310 - Ginkgo: LTS0254337
- 3311 - Ginkgo biloba:
- 3311 - Ginkgo biloba: 10.1021/JF011682S
- 3311 - Ginkgo biloba: 10.3389/FPLS.2019.00983
- 3311 - Ginkgo biloba: LTS0254337
- 3311 - Ginkgo biloba L.: -
- 3309 - Ginkgoaceae: LTS0254337
- 29811 - Ginkgoopsida: LTS0254337
- 49747 - Gladiolus: LTS0254337
- 1007786 - Gladiolus italicus: 10.1007/S13369-010-0015-7
- 1007786 - Gladiolus italicus: LTS0254337
- 1478145 - Glebionis: LTS0254337
- 99038 - Glebionis coronaria: 10.1007/S10600-007-0222-Y
- 99038 - Glebionis coronaria: LTS0254337
- 48118 - Glehnia: LTS0254337
- 48119 - Glehnia littoralis: 10.1248/CPB.50.73
- 48119 - Glehnia littoralis: LTS0254337
- 3272 - Gleicheniaceae: LTS0254337
- 46347 - Glycyrrhiza: LTS0254337
- 49827 - Glycyrrhiza glabra:
- 49827 - Glycyrrhiza glabra: 10.1007/BF02759632
- 49827 - Glycyrrhiza glabra: 10.1021/NP050034Q
- 49827 - Glycyrrhiza glabra: LTS0254337
- 49827 - Glycyrrhiza glabra L.: -
- 74614 - Glycyrrhiza inflata Bat.: -
- 74613 - Glycyrrhiza uralensis: 10.3987/COM-04-10150
- 74613 - Glycyrrhiza uralensis: LTS0254337
- 74613 - Glycyrrhiza uralensis Fisch.: -
- 3633 - Gossypium: LTS0254337
- 3635 - Gossypium hirsutum: 10.1007/S10600-008-9067-2
- 3635 - Gossypium hirsutum: LTS0254337
- 648866 - Grona styracifolia: 10.1007/S10600-010-9746-7
- 23066 - Grossulariaceae: LTS0254337
- 162790 - Haematoxylum: LTS0254337
- 321551 - Haematoxylum campechianum: 10.1016/0031-9422(95)00924-8
- 321551 - Haematoxylum campechianum: LTS0254337
- 239184 - Halocnemum: LTS0254337
- 239185 - Halocnemum strobilaceum: 10.1007/BF02238224
- 239185 - Halocnemum strobilaceum: LTS0254337
- 282321 - Halostachys: LTS0254337
- 365472 - Halostachys belangeriana: 10.3390/MOLECULES15117933
- 282322 - Halostachys caspica: 10.3390/MOLECULES15117933
- 282322 - Halostachys caspica: LTS0254337
- 59430 - Helichrysum: LTS0254337
- 261776 - Helichrysum arenarium:
- 261776 - Helichrysum arenarium: 10.1248/CPB.57.361
- 261776 - Helichrysum arenarium: 10.1248/CPB.57.853
- 261776 - Helichrysum arenarium: LTS0254337
- 261805 - Helichrysum stoechas:
- 261805 - Helichrysum stoechas: 10.1016/S0731-7085(00)00431-3
- 261805 - Helichrysum stoechas: 10.1023/B:CONC.0000033925.00693.7B
- 261805 - Helichrysum stoechas: LTS0254337
- 16107 - Hemerocallis: LTS0254337
- 34190 - Hemerocallis fulva: 10.1016/J.LFS.2004.07.001
- 34190 - Hemerocallis fulva: LTS0254337
- 60144 - Heterophyllaea: LTS0254337
- 60145 - Heterophyllaea pustulata: 10.1021/NP050181O
- 60145 - Heterophyllaea pustulata: LTS0254337
- 71056 - Heterotheca: 10.1016/S0968-0896(00)00102-4
- 71056 - Heterotheca: LTS0254337
- 16752 - Houttuynia cordata Thunb.: -
- 23097 - Hydrangeaceae: LTS0254337
- 629714 - Hypericaceae: LTS0254337
- 55962 - Hypericum: LTS0254337
- 282542 - Hypericum japonicum:
- 282542 - Hypericum japonicum: 10.1016/S0031-9422(98)00106-X
- 282542 - Hypericum japonicum: 10.3390/MOLECULES13112796
- 282542 - Hypericum japonicum: LTS0254337
- 65561 - Hypericum perforatum:
- 65561 - Hypericum perforatum: 10.1055/S-2000-11119
- 65561 - Hypericum perforatum: 10.1055/S-2003-45150
- 65561 - Hypericum perforatum: LTS0254337
- 673934 - Hypericum richeri: 10.1080/14786410802401390
- 673934 - Hypericum richeri: LTS0254337
- 282553 - Hypericum sampsonii: 10.1248/CPB.52.866
- 282553 - Hypericum sampsonii: LTS0254337
- 282556 - Hypericum sikokumontanum: 10.1016/J.PHYTOCHEM.2008.11.006
- 282556 - Hypericum sikokumontanum: LTS0254337
- 1321357 - Hypericum thasium: 10.1016/J.PHYTOCHEM.2008.10.006
- 1321357 - Hypericum thasium: LTS0254337
- 182994 - Ichthyothere: LTS0254337
- 185166 - Ichthyothere terminalis: 10.1016/0031-9422(82)83123-3
- 185166 - Ichthyothere terminalis: LTS0254337
- 4295 - Ilex: LTS0254337
- 2033736 - Ilex dunniana: 10.1002/HLCA.201000385
- 2033736 - Ilex dunniana: LTS0254337
- 1043421 - Ilex hainanensis: 10.1080/14786410802044885
- 1043421 - Ilex hainanensis: LTS0254337
- 35939 - Impatiens: LTS0254337
- 50557 - Insecta: LTS0254337
- 453958 - Inula japonica Thunb.: -
- 304104 - Iochroma: LTS0254337
- 362360 - Iochroma gesnerioides: 10.1016/0031-6865(94)90049-3
- 362360 - Iochroma gesnerioides: LTS0254337
- 211590 - Iphiona: LTS0254337
- 211591 - Iphiona scabra: 10.1016/S0031-9422(00)81848-8
- 211591 - Iphiona scabra: LTS0254337
- 4119 - Ipomoea: LTS0254337
- 4120 - Ipomoea batatas: 10.1271/BBB1961.55.613
- 4120 - Ipomoea batatas: LTS0254337
- 26339 - Iridaceae: LTS0254337
- 4147 - Jasminum: LTS0254337
- 389181 - Jasminum grandiflorum: 10.1055/S-2006-957419
- 389181 - Jasminum grandiflorum: LTS0254337
- 206141 - Kali: LTS0254337
- 2116407 - Kali collina:
- 2116407 - Kali collinum:
- 61137 - Kandelia: LTS0254337
- 61147 - Kandelia candel: 10.1016/J.BMCL.2015.02.048
- 61147 - Kandelia candel: LTS0254337
- 240079 - Krascheninnikovia: LTS0254337
- 240080 - Krascheninnikovia ceratoides: 10.1007/S10600-009-9247-8
- 240080 - Krascheninnikovia ceratoides: LTS0254337
- 4235 - Lactuca: LTS0254337
- 75953 - Lactuca indica: 10.1016/J.BMCL.2007.10.046
- 75953 - Lactuca indica: LTS0254337
- 72946 - Laennecia: LTS0254337
- 212497 - Lagynidae: LTS0254337
- 4136 - Lamiaceae: LTS0254337
- 53158 - Lamium: LTS0254337
- 53159 - Lamium album: 10.1016/0031-9422(94)00727-B
- 53159 - Lamium album: LTS0254337
- 3325 - Larix: LTS0254337
- 62751 - Larix sibirica: 10.1007/BF00564611
- 62751 - Larix sibirica: LTS0254337
- 3853 - Lathyrus: LTS0254337
- 254779 - Lathyrus pratensis: 10.1007/BF00607555
- 254779 - Lathyrus pratensis: LTS0254337
- 3433 - Lauraceae: LTS0254337
- 85222 - Laurus: LTS0254337
- 85223 - Laurus nobilis: 10.1248/BPB.25.102
- 85223 - Laurus nobilis: LTS0254337
- 41707 - Lawsonia: LTS0254337
- 141191 - Lawsonia inermis: 10.1016/J.BMCL.2015.04.052
- 141191 - Lawsonia inermis: LTS0254337
- 1673678 - Leiothrichidae: LTS0254337
- 4137 - Leonurus: LTS0254337
- 4138 - Leonurus japonicus: 10.3136/FSTI9596T9798.4.278
- 4138 - Leonurus japonicus: LTS0254337
- 153459 - Lepidium apetalum Willd: -
- 32162 - Lepisorus: LTS0254337
- 699669 - Lepisorus contortus: 10.1021/NP100373F
- 699669 - Lepisorus contortus: LTS0254337
- 53892 - Lespedeza: LTS0254337
- 556514 - Lespedeza bicolor: 10.1016/S0031-9422(00)90131-6
- 556514 - Lespedeza bicolor: LTS0254337
- 688283 - Lespedeza juncea: LTS0254337
- 22986 - Licania: LTS0254337
- 4677 - Liliaceae: LTS0254337
- 4447 - Liliopsida: LTS0254337
- 151068 - Litchi: LTS0254337
- 151069 - Litchi chinensis: 10.1021/JF000815R
- 151069 - Litchi chinensis: LTS0254337
- 105884 - Lonicera japonica:
- 3867 - Lotus: LTS0254337
- 47247 - Lotus corniculatus: 10.1007/S10600-009-9362-6
- 47247 - Lotus corniculatus: LTS0254337
- 1211582 - Lotus corniculatus subsp. corniculatus: 10.1007/S10600-009-9362-6
- 1211582 - Lotus corniculatus subsp. corniculatus: LTS0254337
- 1006353 - Lotus ucrainicus: 10.1007/S10600-009-9362-6
- 1006353 - Lotus ucrainicus: LTS0254337
- 260602 - Lycopus: LTS0254337
- 260603 - Lycopus europaeus: 10.1055/S-2006-958151
- 260603 - Lycopus europaeus: LTS0254337
- 3928 - Lythraceae: LTS0254337
- 109810 - Macaranga: LTS0254337
- 109849 - Macaranga tanarius: 10.1016/J.PHYTOCHEM.2009.07.020
- 109849 - Macaranga tanarius: LTS0254337
- 251260 - Machilus: LTS0254337
- 325535 - Machilus japonica: 10.1021/NP9000653
- 325535 - Machilus japonica: LTS0254337
- 3398 - Magnoliopsida: LTS0254337
- 4268 - Malpighiaceae: LTS0254337
- 3749 - Malus: LTS0254337
- 3750 - Malus domestica:
- 3750 - Malus domestica: 10.1002/MNFR.200500064
- 3750 - Malus domestica: 10.1016/S0308-8146(99)00099-0
- 3750 - Malus domestica: 10.1021/JF00097A031
- 3750 - Malus domestica: 10.1021/JF034475W
- 3750 - Malus domestica: 10.1021/JF0346298
- 3750 - Malus domestica: 10.1021/JF035416L
- 3750 - Malus domestica: 10.1021/JF049317Z
- 3750 - Malus domestica: 10.1111/J.1365-2621.2003.TB12340.X
- 3750 - Malus domestica: LTS0254337
- 283210 - Malus pumila:
- 283210 - Malus pumila: 10.1002/MNFR.200500064
- 283210 - Malus pumila: 10.1016/S0308-8146(99)00099-0
- 283210 - Malus pumila: 10.1021/JF00048A016
- 283210 - Malus pumila: 10.1021/JF00097A031
- 283210 - Malus pumila: 10.1021/JF034475W
- 283210 - Malus pumila: 10.1021/JF0346298
- 283210 - Malus pumila: 10.1021/JF035416L
- 283210 - Malus pumila: 10.1021/JF049317Z
- 283210 - Malus pumila: 10.1111/J.1365-2621.2003.TB12340.X
- 283210 - Malus pumila: LTS0254337
- 3752 - Malus sylvestris: 10.1021/JF00048A016
- 3752 - Malus sylvestris: LTS0254337
- 3629 - Malvaceae: LTS0254337
- 13814 - Marsileaceae: LTS0254337
- 75424 - Mayaca: LTS0254337
- 75425 - Mayaca fluviatilis: 10.1016/0031-9422(85)80068-6
- 75425 - Mayaca fluviatilis: LTS0254337
- 75423 - Mayacaceae: LTS0254337
- 72195 - Meconopsis: LTS0254337
- 248847 - Meconopsis quintuplinervia: 10.1016/J.PHYTOCHEM.2005.12.002
- 248847 - Meconopsis quintuplinervia: LTS0254337
- 50362 - Melanthiaceae: LTS0254337
- 39998 - Melastomataceae: LTS0254337
- 43707 - Meliaceae: LTS0254337
- 47081 - Melilotus: LTS0254337
- 861159 - Melilotus sulcatus: 10.3390/12020263
- 861159 - Melilotus sulcatus: LTS0254337
- 33208 - Metazoa: LTS0254337
- 263288 - Miconia: LTS0254337
- 477031 - Miconia cabucu: 10.1016/J.PHYTOCHEM.2007.04.020
- 477031 - Miconia cabucu: LTS0254337
- 102786 - Mikania: LTS0254337
- 1049779 - Mikania laevigata: 10.1016/J.TETLET.2010.10.102
- 1049779 - Mikania laevigata: LTS0254337
- 113471 - Monochaetum: LTS0254337
- 3487 - Moraceae: LTS0254337
- 43521 - Morinda: LTS0254337
- 43522 - Morinda citrifolia: 10.1021/JF010492E
- 43522 - Morinda citrifolia: LTS0254337
- 3734 - Moringa: LTS0254337
- 3735 - Moringa oleifera: 10.1016/J.PHYTOCHEM.2011.02.021
- 3735 - Moringa oleifera: LTS0254337
- 3733 - Moringaceae: LTS0254337
- 3497 - Morus: LTS0254337
- 3498 - Morus alba:
- 3498 - Morus alba: 10.1016/J.BMCL.2015.04.045
- 3498 - Morus alba: 10.1089/JMF.2014.3196
- 3498 - Morus alba: 10.1248/BPB.23.451
- 3498 - Morus alba: 10.1248/CPB.49.151
- 3498 - Morus alba: LTS0254337
- 3498 - Morus alba L.: -
- 1031565 - Morus insignis: 10.1248/CPB.41.1238
- 85232 - Morus nigra: 10.1021/JF703709R
- 85232 - Morus nigra: LTS0254337
- 16614 - Myrsinaceae: LTS0254337
- 59981 - Myrsine: LTS0254337
- 59982 - Myrsine africana: 10.1016/S0031-9422(96)00329-9
- 59982 - Myrsine africana: LTS0254337
- 3931 - Myrtaceae: LTS0254337
- 4430 - Nelumbo: LTS0254337
- 4432 - Nelumbo nucifera:
- 4432 - Nelumbo nucifera: 10.1016/J.ACA.2012.02.051
- 4432 - Nelumbo nucifera: 10.1016/J.BMC.2004.10.020
- 4432 - Nelumbo nucifera: 10.1016/J.BMCL.2013.04.013
- 4432 - Nelumbo nucifera: 10.1021/JF900950Z
- 4432 - Nelumbo nucifera: LTS0254337
- 400540 - Nelumbo nucifera subsp. nucifera: 10.1371/JOURNAL.PONE.0081971
- 400540 - Nelumbo nucifera subsp. nucifera: LTS0254337
- 4429 - Nelumbonaceae: LTS0254337
- 4418 - Nymphaea: LTS0254337
- 299116 - Nymphaea ampla: 10.1016/J.PHYTOCHEM.2005.02.027
- 299116 - Nymphaea ampla: LTS0254337
- 49506 - Nymphaea caerulea: 10.1016/J.PHYTOCHEM.2008.04.009
- 49506 - Nymphaea caerulea: LTS0254337
- 1616377 - Nymphaea nouchali var. caerulea: 10.1016/J.PHYTOCHEM.2008.04.009
- 4419 - Nymphaea odorata: 10.1016/J.PHYTOCHEM.2008.04.009
- 4410 - Nymphaeaceae: LTS0254337
- 4289 - Nyssaceae: LTS0254337
- 56628 - Ochna: LTS0254337
- 2699572 - Ochna obtusata: 10.1021/NP9604590
- 2699572 - Ochna obtusata: LTS0254337
- 56627 - Ochnaceae: LTS0254337
- 4144 - Oleaceae: LTS0254337
- 3934 - Onagraceae: LTS0254337
- 3881 - Onobrychis: LTS0254337
- 3021501 - Onobrychis stenostachya: LTS0254337
- 32171 - Onychium: LTS0254337
- 238830 - Onychium contiguum: 10.1016/0031-9422(74)85048-X
- 238830 - Onychium contiguum: LTS0254337
- 164276 - Onychium lucidum: 10.1016/0031-9422(74)85048-X
- 164276 - Onychium lucidum: LTS0254337
- 20802 - Oxytropis: LTS0254337
- 671264 - Oxytropis racemosa: 10.1248/CPB.58.1587
- 671264 - Oxytropis racemosa: LTS0254337
- 106692 - Paliurus: LTS0254337
- 106693 - Paliurus spina-christi: 10.1007/BF00599276
- 106693 - Paliurus spina-christi: LTS0254337
- 4053 - Panax: LTS0254337
- 4054 - Panax ginseng: 10.1248/YAKUSHI1947.89.1_122
- 4054 - Panax ginseng: LTS0254337
- 3465 - Papaveraceae: LTS0254337
- 103976 - Papuacedrus: LTS0254337
- 103977 - Papuacedrus papuana: 10.1016/0031-9422(90)85105-O
- 103977 - Papuacedrus papuana: LTS0254337
- 4030 - Pelargonium: LTS0254337
- 59871 - Pelargonium reniforme: 10.1016/S0031-9422(01)00403-4
- 59871 - Pelargonium reniforme: LTS0254337
- 63484 - Periploca: LTS0254337
- 190712 - Periploca sepium: 10.1007/S10600-010-9646-X
- 190712 - Periploca sepium: LTS0254337
- 61508 - Persicaria: LTS0254337
- 254780 - Persicaria amphibia: 10.1021/NP9900674
- 580470 - Persicaria decipiens:
- 580470 - Persicaria decipiens: 10.1021/NP9900674
- 580470 - Persicaria decipiens: LTS0254337
- 46901 - Persicaria hydropiper: 10.1007/BF00580088
- 46901 - Persicaria hydropiper: LTS0254337
- 430754 - Persicaria lapathifolia:
- 430754 - Persicaria lapathifolia: 10.1248/CPB.47.1484
- 430754 - Persicaria lapathifolia: LTS0254337
- 1211590 - Persicaria lapathifolia subsp. lapathifolia: 10.1002/JCCS.200300062
- 1211590 - Persicaria lapathifolia subsp. lapathifolia: 10.1007/BF00579836
- 1211590 - Persicaria lapathifolia subsp. lapathifolia: 10.1016/S0031-9422(00)83843-1
- 1211590 - Persicaria lapathifolia subsp. lapathifolia: LTS0254337
- 488004 - Persicaria nodosa: 10.1002/JCCS.200300062
- 488004 - Persicaria nodosa: 10.1016/S0031-9422(00)83843-1
- 488004 - Persicaria nodosa: LTS0254337
- 56018 - Petasites: LTS0254337
- 186965 - Petasites japonicus: 10.1271/BBB.66.1571
- 186965 - Petasites japonicus: LTS0254337
- 49562 - Peucedanum: LTS0254337
- 49563 - Peucedanum japonicum: 10.1021/JF0262458
- 49563 - Peucedanum japonicum: LTS0254337
- 91118 - Phedimus: LTS0254337
- 2338973 - Phedimus stoloniferus: 10.1016/0031-9422(93)85416-O
- 2338973 - Phedimus stoloniferus: LTS0254337
- 68553 - Phellodendron: LTS0254337
- 68554 - Phellodendron amurense:
- 68554 - Phellodendron amurense: 10.1021/NP030034V
- 68554 - Phellodendron amurense: 10.1248/CPB.54.1308
- 68554 - Phellodendron amurense: LTS0254337
- 697203 - Phellodendron amurense var. wilsonii: 10.1021/NP030034V
- 697203 - Phellodendron amurense var. wilsonii: LTS0254337
- 354508 - Phellodendron chinense: LTS0254337
- 354509 - Phellodendron chinense var. glabriusculum: 10.1021/NP030034V
- 354509 - Phellodendron chinense var. glabriusculum: LTS0254337
- 23113 - Philadelphus: LTS0254337
- 1403168 - Philadelphus coronarius: 10.1007/0-387-28822-8_5
- 1403168 - Philadelphus coronarius: LTS0254337
- 316257 - Phlomis: LTS0254337
- 4719 - Phoenix: LTS0254337
- 113250 - Phoenix canariensis: 10.1248/CPB.39.2053
- 113250 - Phoenix canariensis: LTS0254337
- 233880 - Phyllanthaceae: LTS0254337
- 58880 - Phyllanthus: LTS0254337
- 293060 - Phyllanthus amarus: 10.1016/0031-9422(93)85545-3
- 296036 - Phyllanthus emblica: 10.1016/J.FOODCHEM.2011.09.063
- 296034 - Phyllanthus niruri: 10.1515/ZNB-2006-0111
- 296034 - Phyllanthus niruri: LTS0254337
- 3328 - Picea: LTS0254337
- 3329 - Picea abies: 10.1016/0031-9422(95)00383-I
- 3329 - Picea abies: LTS0254337
- 39633 - Pilularia: LTS0254337
- 49509 - Pilularia globulifera: 10.1016/0031-9422(88)80645-9
- 49509 - Pilularia globulifera: LTS0254337
- 500174 - Pilularia minuta: 10.1016/0031-9422(88)80645-9
- 500174 - Pilularia minuta: LTS0254337
- 3318 - Pinaceae: LTS0254337
- 58019 - Pinopsida: LTS0254337
- 85165 - Planchonella: LTS0254337
- 191075 - Planchonella obovata: 10.1002/HLCA.200900264
- 191075 - Planchonella obovata: LTS0254337
- 33090 - Plants: -
- 420628 - Plinia: LTS0254337
- 375264 - Plinia cauliflora: 10.1021/NP0600999
- 375264 - Plinia cauliflora: LTS0254337
- 3362 - Podocarpaceae: LTS0254337
- 3363 - Podocarpus: LTS0254337
- 120615 - Podocarpus fasciculus: 10.1248/CPB.56.585
- 120615 - Podocarpus fasciculus: LTS0254337
- 105756 - Polyalthia: LTS0254337
- 4274 - Polygalaceae: LTS0254337
- 3615 - Polygonaceae: LTS0254337
- 16195 - Polygonatum: LTS0254337
- 1769194 - Polygonatum glaberrimum: 10.1007/S10600-011-0072-5
- 1769194 - Polygonatum glaberrimum: LTS0254337
- 2259079 - Polygonatum orientale: 10.1007/S10600-011-0072-5
- 2259079 - Polygonatum orientale: LTS0254337
- 46786 - Polygonum: LTS0254337
- 83819 - Polygonum cuspidatum Sieb. et Zucc.: -
- 3275 - Polypodiaceae: LTS0254337
- 241806 - Polypodiopsida: LTS0254337
- 3689 - Populus: LTS0254337
- 73824 - Populus balsamifera: 10.1016/S0031-9422(00)97307-2
- 73824 - Populus balsamifera: LTS0254337
- 1616482 - Populus candicans: 10.1016/S0031-9422(00)97307-2
- 23204 - Potentilla: LTS0254337
- 57926 - Potentilla anserina: 10.1055/S-2006-958146
- 57926 - Potentilla anserina: LTS0254337
- 4335 - Primulaceae: LTS0254337
- 173893 - Pronephrium: LTS0254337
- 1132560 - Pronephrium penangianum: 10.1021/NP0703850
- 3754 - Prunus: LTS0254337
- 36596 - Prunus armeniaca: 10.1016/0003-9861(53)90127-1
- 36596 - Prunus armeniaca: LTS0254337
- 140311 - Prunus cerasus: 10.1021/JF0734727
- 140311 - Prunus cerasus: LTS0254337
- 102107 - Prunus mume: 10.1016/J.BMCL.2014.01.028
- 102107 - Prunus mume: LTS0254337
- 3760 - Prunus persica: 10.1021/JF0104681
- 3760 - Prunus persica: LTS0254337
- 323851 - Prunus persica var. nucipersica: 10.1021/JF0104681
- 323851 - Prunus persica var. nucipersica: LTS0254337
- 88123 - Prunus salicina: 10.1021/JA01113A529
- 88123 - Prunus salicina: LTS0254337
- 120289 - Psidium: LTS0254337
- 120290 - Psidium guajava:
- 120290 - Psidium guajava: 10.1007/S11418-010-0400-2
- 120290 - Psidium guajava: 10.3797/SCIPHARM.2007.75.179
- 120290 - Psidium guajava: LTS0254337
- 180039 - Psychotria punctata: 10.3389/FMOLB.2021.683671
- 13819 - Pteridaceae: LTS0254337
- 32100 - Pteridium: LTS0254337
- 32101 - Pteridium aquilinum: 10.1271/BBB1924.19.104
- 32101 - Pteridium aquilinum: LTS0254337
- 13820 - Pteris: LTS0254337
- 265703 - Pteris linearis: 10.1248/CPB.43.1800
- 265703 - Pteris linearis: LTS0254337
- 162889 - Pterogyne: LTS0254337
- 162890 - Pterogyne nitens: 10.1016/J.PHYTOCHEM.2008.01.006
- 162890 - Pterogyne nitens: LTS0254337
- 144561 - Pyracantha: LTS0254337
- 193309 - Pyracantha coccinea: 10.1016/0031-9422(93)85108-4
- 193309 - Pyracantha coccinea: LTS0254337
- 13650 - Pyrola: LTS0254337
- 642526 - Pyrola calliantha H.AndreS: -
- 642527 - Pyrola decorata H. Andres: -
- 93825 - Pyrola elliptica: 10.1016/S0031-9422(97)00878-9
- 93825 - Pyrola elliptica: LTS0254337
- 156491 - Pyrrosia: LTS0254337
- 187374 - Pyrrosia lingua: 10.1177/1934578X1501000714
- 187374 - Pyrrosia lingua: LTS0254337
- 187374 - Pyrrosia lingua (Thunb.) Farwell: -
- 746522 - Pyrrosia petiolosa (Christ) Ching: -
- 746523 - Pyrrosia sheareri (Bak. ) Ching: -
- 3511 - Quercus: LTS0254337
- 58334 - Quercus ilex: 10.1016/J.TETLET.2009.01.158
- 58334 - Quercus ilex: LTS0254337
- 38865 - Quercus petraea: 10.1007/BF00564461
- 38865 - Quercus petraea: LTS0254337
- 524999 - Quercus petraea subsp. iberica: 10.1007/BF00564461
- 524999 - Quercus petraea subsp. iberica: LTS0254337
- 58331 - Quercus suber: 10.1002/ARDP.2503240811
- 58331 - Quercus suber: LTS0254337
- 3440 - Ranunculaceae: LTS0254337
- 3608 - Rhamnaceae: LTS0254337
- 40029 - Rhizophoraceae: LTS0254337
- 202994 - Rhodiola: LTS0254337
- 1442767 - Rhodiola coccinea: 10.1007/BF00564357
- 1442767 - Rhodiola coccinea: LTS0254337
- 4346 - Rhododendron: LTS0254337
- 344754 - Rhododendron decorum: 10.1007/S10600-009-9245-X
- 344754 - Rhododendron decorum: LTS0254337
- 134444 - Rhododendron ellipticum: 10.1016/0031-9422(94)00905-9
- 134444 - Rhododendron ellipticum: LTS0254337
- 184576 - Rhododendron latoucheae: 10.1016/0031-9422(94)00905-9
- 49626 - Rhododendron moulmainense: 10.1016/0031-9422(94)00905-9
- 49626 - Rhododendron moulmainense: LTS0254337
- 105903 - Rhododendron mucronulatum: -
- 182159 - Rhododendron spinuliferum: 10.1007/S10600-009-9410-2
- 182159 - Rhododendron spinuliferum: LTS0254337
- 3801 - Ribes: LTS0254337
- 78511 - Ribes nigrum:
- 78511 - Ribes nigrum: 10.1016/S0031-9422(01)00441-1
- 78511 - Ribes nigrum: 10.1021/JF0347517
- 78511 - Ribes nigrum: 10.1081/JLC-100100418
- 78511 - Ribes nigrum: LTS0254337
- 175228 - Ribes rubrum: 10.1021/JF0347517
- 175228 - Ribes rubrum: LTS0254337
- 2872799 - Ripariosida: LTS0254337
- 108447 - Ripariosida hermaphrodita: 10.1007/BF00607552
- 108447 - Ripariosida hermaphrodita: LTS0254337
- 23263 - Rodgersia: LTS0254337
- 262050 - Rodgersia podophylla: 10.1248/CPB.54.234
- 262050 - Rodgersia podophylla: LTS0254337
- 3764 - Rosa: LTS0254337
- 74632 - Rosa gallica: 10.1021/JF903515F
- 74632 - Rosa gallica: LTS0254337
- 74645 - Rosa rugosa Thunb.: -
- 3765 - Rosa × damascena: 10.1021/JF903515F
- 3745 - Rosaceae: LTS0254337
- 24966 - Rubiaceae: LTS0254337
- 23216 - Rubus: 10.1002/JSFA.1885
- 23216 - Rubus: LTS0254337
- 420769 - Rubus adenotrichos: 10.1021/JF071475D
- 57936 - Rubus chamaemorus: 10.1021/JF049450R
- 57936 - Rubus chamaemorus: LTS0254337
- 190226 - Rubus glaucus: 10.1021/JF071475D
- 190226 - Rubus glaucus: LTS0254337
- 32247 - Rubus idaeus:
- 32247 - Rubus idaeus: 10.1021/JF00035A025
- 32247 - Rubus idaeus: 10.1021/JF010192X
- 32247 - Rubus idaeus: 10.1021/JF049450R
- 32247 - Rubus idaeus: LTS0254337
- 59497 - Rubus rigidus: 10.1007/S12272-011-0404-9
- 59497 - Rubus rigidus: LTS0254337
- 48209 - Rudbeckia: LTS0254337
- 52312 - Rudbeckia fulgida: 10.1016/S0031-9422(00)80813-4
- 52312 - Rudbeckia fulgida: LTS0254337
- 23513 - Rutaceae: LTS0254337
- 3688 - Salicaceae: LTS0254337
- 40685 - Salix: LTS0254337
- 151233 - Salsola: LTS0254337
- 525237 - Salsola collina:
- 525237 - Salsola collina: 10.1007/BF00598093
- 525237 - Salsola collina: 10.1007/BF00630448
- 525237 - Salsola collina: LTS0254337
- 21880 - Salvia: LTS0254337
- 933122 - Salvia blepharophylla: 10.1016/S0031-9422(99)00324-6
- 933122 - Salvia blepharophylla: LTS0254337
- 4201 - Sambucus: LTS0254337
- 4202 - Sambucus nigra: 10.1016/S0031-9422(01)00401-0
- 4202 - Sambucus nigra: LTS0254337
- 23672 - Sapindaceae: LTS0254337
- 139771 - Sapium: LTS0254337
- 316852 - Sapium haematospermum: 10.1021/NP0303411
- 316852 - Sapium haematospermum: LTS0254337
- 3737 - Sapotaceae: LTS0254337
- 54806 - Saururus chinensis (Lour.) Baill.: -
- 41629 - Saussurea: LTS0254337
- 137893 - Saussurea medusa:
- 137893 - Saussurea medusa: 10.1016/S0968-0896(02)00470-4
- 137893 - Saussurea medusa: 10.1248/CPB.53.1416
- 137893 - Saussurea medusa: LTS0254337
- 3798 - Saxifraga: LTS0254337
- 182070 - Saxifraga stolonifera: 10.1016/J.BMC.2007.10.072
- 182070 - Saxifraga stolonifera: LTS0254337
- 3792 - Saxifragaceae: LTS0254337
- 691236 - Scandosorbus intermedia: 10.1007/S10600-009-9409-8
- 289765 - Sclerocarya: LTS0254337
- 289766 - Sclerocarya birrea: 10.1021/JF030374M
- 289766 - Sclerocarya birrea: LTS0254337
- 4277 - Securidaca: LTS0254337
- 4278 - Securidaca diversifolia: 10.1016/S0031-9422(00)80695-0
- 4278 - Securidaca diversifolia: LTS0254337
- 3784 - Sedum: LTS0254337
- 23028 - Sedum acre: 10.1016/0031-9422(88)83050-4
- 23028 - Sedum acre: LTS0254337
- 91146 - Sedum sarmentosum: 10.1248/BPB.27.2035
- 91146 - Sedum sarmentosum: LTS0254337
- 4721 - Serenoa: LTS0254337
- 4722 - Serenoa repens: 10.1002/ARDP.19893220211
- 4722 - Serenoa repens: LTS0254337
- 310217 - Sibiraea: LTS0254337
- 1055022 - Sibiraea angustata: 10.1007/S11418-009-0362-4
- 1055022 - Sibiraea angustata: LTS0254337
- 77655 - Sida: LTS0254337
- 108447 - Sida hermaphrodita: 10.1007/BF00607552
- 53586 - Silphium: LTS0254337
- 53588 - Silphium perfoliatum: 10.1016/S0031-9422(02)00133-4
- 53588 - Silphium perfoliatum: LTS0254337
- 91156 - Sinocrassula: LTS0254337
- 91157 - Sinocrassula indica: 10.1248/CPB.55.1308
- 91157 - Sinocrassula indica: LTS0254337
- 4070 - Solanaceae: LTS0254337
- 4107 - Solanum: LTS0254337
- 329779 - Solanum incanum: 10.1002/JCCS.200000029
- 329779 - Solanum incanum: LTS0254337
- 4112 - Solanum nigrum L.: -
- 59293 - Solidago: LTS0254337
- 3037135 - Solidago altissima: LTS0254337
- 50190 - Sonchus: LTS0254337
- 2874835 - Sonchus erzincanicus: LTS0254337
- 3896 - Sophora: LTS0254337
- 23222 - Sorbus: LTS0254337
- 36599 - Sorbus aucuparia: 10.1007/S002170100328
- 36599 - Sorbus aucuparia: LTS0254337
- 691236 - Sorbus intermedia: 10.1007/S10600-009-9409-8
- 106574 - Sorbus torminalis: 10.1016/J.PHYTOL.2011.02.005
- 211925 - Spathodea: LTS0254337
- 211926 - Spathodea campanulata: 10.1177/1934578X0900400602
- 211926 - Spathodea campanulata: LTS0254337
- 23224 - Spiraea: LTS0254337
- 409506 - Spiraea canescens: 10.1016/J.PHYTOCHEM.2009.07.013
- 409506 - Spiraea canescens: LTS0254337
- 409510 - Spiraea formosana: 10.1248/CPB.52.1227
- 409510 - Spiraea formosana: LTS0254337
- 85275 - Stachyuraceae: LTS0254337
- 85276 - Stachyurus: LTS0254337
- 167472 - Stachyurus himalaicus: 10.1007/S10600-011-9847-Y
- 167472 - Stachyurus himalaicus: LTS0254337
- 85279 - Staphylea: LTS0254337
- 85278 - Staphyleaceae: LTS0254337
- 13274 - Stellaria media: 10.1016/J.HELIYON.2020.E04150
- 35493 - Streptophyta: LTS0254337
- 137301 - Styphnolobium: LTS0254337
- 3897 - Styphnolobium japonicum:
- 3897 - Styphnolobium japonicum: 10.1016/J.BMCL.2010.08.054
- 3897 - Styphnolobium japonicum: 10.1021/NP010081S
- 3897 - Styphnolobium japonicum: LTS0254337
- 53927 - Tachigali: LTS0254337
- 53928 - Tachigali paniculata: 10.1021/NP0200764
- 53928 - Tachigali paniculata: LTS0254337
- 47097 - Tephrosia: LTS0254337
- 1157238 - Tephrosia vogelii: 10.1016/S0031-9422(00)83511-6
- 1157238 - Tephrosia vogelii: LTS0254337
- 46968 - Thalictrum: LTS0254337
- 1084670 - Thalictrum foetidum: 10.1007/BF00595063
- 1084670 - Thalictrum foetidum: LTS0254337
- 27065 - Theaceae: LTS0254337
- 29616 - Thelypteridaceae: LTS0254337
- 39987 - Thymelaeaceae: LTS0254337
- 64580 - Tilia: LTS0254337
- 121718 - Tilia tomentosa: 10.1016/S0968-0896(01)00321-2
- 121718 - Tilia tomentosa: LTS0254337
- 193502 - Torminalis: LTS0254337
- 2914000 - Torminalis glaberrima: 10.1016/J.PHYTOL.2011.02.005
- 2914000 - Torminalis glaberrima: LTS0254337
- 58023 - Tracheophyta: LTS0254337
- 66647 - Tribulus: LTS0254337
- 1965241 - Tribulus pentandrus: LTS0254337
- 3898 - Trifolium: LTS0254337
- 361561 - Trifolium aureum: 10.1007/BF00579982
- 361561 - Trifolium aureum: LTS0254337
- 97022 - Trifolium echinatum: 10.1007/BF00630553
- 97022 - Trifolium echinatum: LTS0254337
- 13305 - Tulipa: LTS0254337
- 13306 - Tulipa gesneriana: 10.1016/0031-9422(91)84233-I
- 13306 - Tulipa gesneriana: LTS0254337
- 3474 - Ulmaceae: LTS0254337
- 24735 - Ulmus: LTS0254337
- 198266 - Ulmus pumila: 10.1007/BF00565315
- 198266 - Ulmus pumila: LTS0254337
- 91166 - Umbilicus: LTS0254337
- 91168 - Umbilicus rupestris: 10.1248/CPB.48.1768
- 91168 - Umbilicus rupestris: LTS0254337
- 13749 - Vaccinium: LTS0254337
- 69266 - Vaccinium corymbosum: 10.1002/JSFA.1885
- 69266 - Vaccinium corymbosum: LTS0254337
- 180760 - Vaccinium hirtum: LTS0254337
- 13750 - Vaccinium macrocarpon: 10.1021/JF034970S
- 13750 - Vaccinium macrocarpon: LTS0254337
- 180763 - Vaccinium myrtillus: 10.1021/JA01097A013
- 180763 - Vaccinium myrtillus: LTS0254337
- 180772 - Vaccinium vitis-idaea: 10.1021/JF0623687
- 23277 - Vahlia: LTS0254337
- 23278 - Vahlia capensis: 10.1055/S-2006-957671
- 23278 - Vahlia capensis: LTS0254337
- 91895 - Vahliaceae: LTS0254337
- 23231 - Vauquelinia: LTS0254337
- 32250 - Vauquelinia corymbosa: 10.3390/MOLECULES200815330
- 32250 - Vauquelinia corymbosa: LTS0254337
- 50241 - Veratrum: LTS0254337
- 386441 - Veratrum dahuricum: 10.1007/S10600-007-0233-8
- 386441 - Veratrum dahuricum: LTS0254337
- 4204 - Viburnum: LTS0254337
- 237933 - Viburnum dilatatum: 10.1002/HLCA.200890199
- 237933 - Viburnum dilatatum: LTS0254337
- 237959 - Viburnum tinus: 10.1016/J.PHYTOCHEM.2005.07.019
- 237959 - Viburnum tinus: LTS0254337
- 3904 - Vicia: LTS0254337
- 1276853 - Vicia subvillosa: 10.1007/S10600-007-0058-5
- 1276853 - Vicia subvillosa: LTS0254337
- 3913 - Vigna: LTS0254337
- 157791 - Vigna radiata: LTS0254337
- 3916 - Vigna radiata var. radiata: 10.1007/BF00633405
- 3916 - Vigna radiata var. radiata: LTS0254337
- 33090 - Viridiplantae: LTS0254337
- 3602 - Vitaceae: LTS0254337
- 54476 - Vitex: LTS0254337
- 167923 - Vitex quinata: 10.1007/S10600-010-9645-Y
- 167923 - Vitex quinata: LTS0254337
- 3603 - Vitis: LTS0254337
- 3605 - Vitis aestivalis:
- 3605 - Vitis aestivalis: 10.1002/JSFA.1885
- 3605 - Vitis aestivalis: 10.1016/0305-1978(87)90085-8
- 3605 - Vitis aestivalis: LTS0254337
- 226012 - Vitis cinerea: 10.1016/0305-1978(87)90085-8
- 226012 - Vitis cinerea: LTS0254337
- 96939 - Vitis riparia: 10.1016/0305-1978(87)90085-8
- 96939 - Vitis riparia: LTS0254337
- 29760 - Vitis vinifera:
- 29760 - Vitis vinifera: 10.1002/JSFA.1885
- 29760 - Vitis vinifera: 10.1007/S11306-014-0638-X
- 29760 - Vitis vinifera: 10.1016/J.FOODCHEM.2005.02.007
- 29760 - Vitis vinifera: 10.1021/JA01137A038
- 29760 - Vitis vinifera: 10.1021/JF9601628
- 29760 - Vitis vinifera: 10.21548/25-2-2143
- 29760 - Vitis vinifera: LTS0254337
- 754105 - Vitis vulpina: 10.1016/0305-1978(87)90085-8
- 754105 - Vitis vulpina: LTS0254337
- 132962 - Warburgia: LTS0254337
- 549618 - Warburgia stuhlmannii: 10.1016/S0031-9422(03)00105-5
- 549618 - Warburgia stuhlmannii: LTS0254337
- 142693 - Wikstroemia: LTS0254337
- 224084 - Wikstroemia canescens: 10.1248/CPB.58.859
- 224084 - Wikstroemia canescens: LTS0254337
- 203954 - Xylonagra: LTS0254337
- 203955 - Xylonagra arborea: 10.1016/0031-9422(83)80111-3
- 203955 - Xylonagra arborea: LTS0254337
- 43873 - Zygophyllaceae: LTS0254337
在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:
- PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
- NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
- Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
- Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。
点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。
文献列表
- Qi-Yang Wang, Hao-Yu Wang, Wei-Guo Zhang, Jian-Zhong Xu. Economical one-pot synthesis of isoquercetin and D-allulose from quercetin and sucrose using whole-cell biocatalyst.
Enzyme and microbial technology.
2024 May; 176(?):110412. doi:
10.1016/j.enzmictec.2024.110412
. [PMID: 38402828] - Tengfei Niu, Chaokang Huang, Rufeng Wang, Li Yang, Shujuan Zhao, Zhengtao Wang. Combinatorial metabolic engineering of Bacillus subtilis enables the efficient biosynthesis of isoquercitrin from quercetin.
Microbial cell factories.
2024 Apr; 23(1):114. doi:
10.1186/s12934-024-02390-5
. [PMID: 38641799] - Hong-Liu Jin, Xiao-Ying Feng, Sen-Ling Feng, Ling Dai, Wen-Ting Zhu, Zhong-Wen Yuan. Isoquercitrin attenuates the progression of non-alcoholic steatohepatitis in mice by modulating galectin-3-mediated insulin resistance and lipid metabolism.
Phytomedicine : international journal of phytotherapy and phytopharmacology.
2024 Jan; 123(?):155188. doi:
10.1016/j.phymed.2023.155188
. [PMID: 38056146] - Meijuan Yi, Opeyemi B Fasina, Yajing Li, Lan Xiang, Jianhua Qi. Mixture of Peanut Skin Extract, Geniposide, and Isoquercitrin Improves the Hepatic Lipid Accumulation of Mice via Modification of Gut Microbiota Homeostasis and the TLR4 and AMPK Signaling Pathways.
International journal of molecular sciences.
2023 Nov; 24(23):. doi:
10.3390/ijms242316684
. [PMID: 38069009] - Xinggu Luo, Yongqian Gong, Qingshan Jiang, Qin Wang, Songtao Li, Lijun Liu. Isoquercitrin promotes ferroptosis and oxidative stress in nasopharyngeal carcinoma via the AMPK/NF-κB pathway.
Journal of biochemical and molecular toxicology.
2023 Sep; ?(?):e23542. doi:
10.1002/jbt.23542
. [PMID: 37712196] - Muxin Zheng, Shenghao Chen, Yi Liu, Yang He. α-Glucosidase inhibitory activities of constituents from Psidium guajava leaves.
Natural product research.
2023 Jul; ?(?):1-4. doi:
10.1080/14786419.2023.2238113
. [PMID: 37506309] - Ye-Jin Moon, Hee-Seong Kim, Min-Ji Kim, Hyeon-Yeong Im, Yun-Hee Lee. Synergistic Effects of Heat-Treated Green Tea Extract and Enzymatically-Modified Isoquercitrin in Preventing Obesity.
Nutrients.
2023 Jun; 15(13):. doi:
10.3390/nu15132931
. [PMID: 37447257] - Mohamad Fawzi Mahomoodally, Gokhan Zengin, Seebaluck-Sandoram Roumita, Giovanni Caprioli, Ahmed M Mustafa, Diletta Piatti, Evren Yıldıztugay, Gunes Ak, Ayşe Esra Karadağ, Asaad Khalid, Ashraf N Abdalla, Abdullahi Ibrahim Uba, Fatih Demirci. Chemical Characterization and Multidirectional Biological Effects of Different Solvent Extracts of Arum elongatum: in Vitro and in Silico Approaches.
Chemistry & biodiversity.
2023 Mar; ?(?):e202201181. doi:
10.1002/cbdv.202201181
. [PMID: 36891864] - Sou Hyun Kim, Chawon Yun, Doyoung Kwon, Yun-Hee Lee, Jae-Hwan Kwak, Young-Suk Jung. Effect of Isoquercitrin on Free Fatty Acid-Induced Lipid Accumulation in HepG2 Cells.
Molecules (Basel, Switzerland).
2023 Feb; 28(3):. doi:
10.3390/molecules28031476
. [PMID: 36771140] - Jiang Liu, LiJun Ren, HaoWen Wang, Zuowei Li. Isoquercitrin Induces Endoplasmic Reticulum Stress and Immunogenic Cell Death in Gastric Cancer Cells.
Biochemical genetics.
2022 Dec; ?(?):. doi:
10.1007/s10528-022-10309-1
. [PMID: 36480095] - Majid Manzoor, Makoto Muroi, Naoko Ogawa, Hiroki Kobayashi, Haruna Nishimura, Danni Chen, Opeyemi B Fasina, Jianyu Wang, Hiroyuki Osada, Minoru Yoshida, Lan Xiang, Jianhua Qi. Isoquercitrin from Apocynum venetum L. produces an anti-obesity effect on obese mice by targeting C-1-tetrahydrofolate synthase, carbonyl reductase, and glutathione S-transferase P and modification of the AMPK/SREBP-1c/FAS/CD36 signaling pathway in mice in vivo.
Food & function.
2022 Oct; 13(21):10923-10936. doi:
10.1039/d2fo02438a
. [PMID: 36205648] - Xue Li, Dongyue Zhou, Di Yang, Yunhua Fu, Xingyu Tao, Xuan Hu, Yulin Dai, Hao Yue. Isoquercitrin Attenuates Osteogenic Injury in MC3T3 Osteoblastic Cells and the Zebrafish Model via the Keap1-Nrf2-ARE Pathway.
Molecules (Basel, Switzerland).
2022 May; 27(11):. doi:
10.3390/molecules27113459
. [PMID: 35684398] - Daisuke Takahashi, Eri Matsunaga, Tomohiro Yamashita, Jose M M Caaveiro, Yoshito Abe, Tadashi Ueda. Compound screening identified gossypetin and isoquercitrin as novel inhibitors for amyloid fibril formations of Vλ6 proteins associated with AL amyloidosis.
Biochemical and biophysical research communications.
2022 03; 596(?):22-28. doi:
10.1016/j.bbrc.2022.01.066
. [PMID: 35108650] - Fatma Kübra Ata, Fahriye Ercan, Serap Yalcin Azarkan. In vivo, in vitro and Molecular Modelling Analysis of Isoquercetin, Roseoside, Coreximine, Anonaine, and Arianacin Molecules.
Current computer-aided drug design.
2022; 18(3):168-184. doi:
10.2174/1573409918666220509213313
. [PMID: 35538817] - Shi-Chang Cai, Chuan-An Yi, Xiang-Shang Hu, Gen-Yun Tang, Li-Ming Yi, Xiu-Ping Li. Isoquercitrin Upregulates Aldolase C Through Nrf2 to Ameliorate OGD/R-Induced Damage in SH-SY5Y Cells.
Neurotoxicity research.
2021 Dec; 39(6):1959-1969. doi:
10.1007/s12640-021-00430-1
. [PMID: 34773594] - Edward Owen Norman, Stuart Hombsch, James Lever, Robert Brkljača, Jonathan White, Robin B Gasser, Aya C Taki, Sylvia Urban. Phytochemical Profiling and Biological Testing of the Constituents of the Australian Plant Haemodorum brevisepalum.
Journal of natural products.
2021 11; 84(11):2832-2844. doi:
10.1021/acs.jnatprod.1c00509
. [PMID: 34780692] - John Paul Sese Tosoc, Olga Macas Nuñeza, Thangirala Sudha, Noureldien H E Darwish, Shaker A Mousa. Anticancer Effects of the Corchorus olitorius Aqueous Extract and Its Bioactive Compounds on Human Cancer Cell Lines.
Molecules (Basel, Switzerland).
2021 Oct; 26(19):. doi:
10.3390/molecules26196033
. [PMID: 34641577] - Arti Nile, Shivraj Hariram Nile, Juhyun Shin, Gyunseok Park, Jae-Wook Oh. Quercetin-3-Glucoside Extracted from Apple Pomace Induces Cell Cycle Arrest and Apoptosis by Increasing Intracellular ROS Levels.
International journal of molecular sciences.
2021 Oct; 22(19):. doi:
10.3390/ijms221910749
. [PMID: 34639090] - Małgorzata Kikowska, Barbara Thiem, Karolina Jafernik, Marta Klimek-Szczykutowicz, Elżbieta Studzińska-Sroka, Halina Ekiert, Agnieszka Szopa. Effect of Elicitation with (+)-Usnic Acid on Accumulation of Phenolic Acids and Flavonoids in Agitated Microshoots of Eryngium alpinum L.
Molecules (Basel, Switzerland).
2021 Sep; 26(18):. doi:
10.3390/molecules26185532
. [PMID: 34577004] - Chan-Su Rha, Cheon-Seok Park, Dae-Ok Kim. Optimized enzymatic synthesis of digestive resistant anomalous isoquercitrin glucosides using amylosucrase and response surface methodology.
Applied microbiology and biotechnology.
2021 Sep; 105(18):6931-6941. doi:
10.1007/s00253-021-11532-3
. [PMID: 34477942] - Xu Pang, Mei Wang, Shuang-Yan Wang, Jie Zhang, Ya-Peng Du, Ye Zhao, Xiao-Hui Zheng, Bai-Ping Ma. Phenolic compounds from the leaves of Crataegus pinnatifida Bge. var. major N.E.Br. And their lipid-lowering effects.
Bioorganic & medicinal chemistry letters.
2021 09; 47(?):128211. doi:
10.1016/j.bmcl.2021.128211
. [PMID: 34157392] - Francesca Guzzo, Rosita Russo, Cinzia Sanna, Odeta Celaj, Alessia Caredda, Angela Corona, Enzo Tramontano, Antonio Fiorentino, Francesca Esposito, Brigida D'Abrosca. Chemical Characterization and Anti-HIV-1 Activity Assessment of Iridoids and Flavonols from Scrophularia trifoliata.
Molecules (Basel, Switzerland).
2021 Aug; 26(16):. doi:
10.3390/molecules26164777
. [PMID: 34443358] - Cong Liu, Wenjuan Wang, Hao Li, Jiangang Liu, Peng Zhang, Yong Cheng, Xiaoyan Qin, Yang Hu, Yun Wei. The neuroprotective effects of isoquercitrin purified from apple pomace by high-speed countercurrent chromatography in the MPTP acute mouse model of Parkinson's disease.
Food & function.
2021 Jul; 12(13):6091-6101. doi:
10.1039/d1fo00843a
. [PMID: 34047315] - Aphichat Trakooncharoenvit, Hiroshi Hara, Tohru Hira. Combination of α-Glycosyl-Isoquercitrin and Soybean Fiber Promotes Quercetin Bioavailability and Glucagon-like Peptide-1 Secretion and Improves Glucose Homeostasis in Rats Fed a High-Fat High-Sucrose Diet.
Journal of agricultural and food chemistry.
2021 Jun; 69(21):5907-5916. doi:
10.1021/acs.jafc.1c01388
. [PMID: 34008400] - Mahendra P Kapoor, Masamitsu Moriwaki, Derek Timm, Hiroshi Yamagata, Go Maruyama, Yoshito Nisihara, Tomomi Nakazawa, Shinro Takata, Daichi Nakamura. 13-Weeks subchronic toxicity of isoquercitrin-γ-cyclodextrin (IQC-γCD) molecular inclusion complex in Sprague-Dawley rats.
Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
2021 Jun; 152(?):112217. doi:
10.1016/j.fct.2021.112217
. [PMID: 33865935] - Edward Owen Norman, Hayden Tuohey, David Pizzi, Milane Saidah, Rachael Bell, Robert Brkljača, Jonathan M White, Robin B Gasser, Aya C Taki, Sylvia Urban. Phytochemical Profiling and Biological Activity of the Australian Carnivorous Plant, Drosera magna.
Journal of natural products.
2021 04; 84(4):964-971. doi:
10.1021/acs.jnatprod.0c00869
. [PMID: 33631073] - Gabriela Belen Martínez-Hernández, Enrique Jiménez-Ferrer, Rubén Román-Ramos, Alejandro Zamilpa, Manasés González-Cortazar, Ismael León-Rivera, Gabriela Vargas-Villa, Maribel Herrera-Ruiz. A mixture of quercetin 4'-O-rhamnoside and isoquercitrin from Tilia americana var. mexicana and its biotransformation products with antidepressant activity in mice.
Journal of ethnopharmacology.
2021 Mar; 267(?):113619. doi:
10.1016/j.jep.2020.113619
. [PMID: 33248185] - Lei Peng, Ming Zhao, Huan Li. Method Development and Validation for Simultaneous Determination of Six Flavonoids in Rat Eyes after Oral Administration of Diospyros kaki Leaves Extract by UPLC-MS/MS.
Chemical & pharmaceutical bulletin.
2021 Feb; 69(2):218-221. doi:
10.1248/cpb.c20-00562
. [PMID: 33268666] - Liyan Shui, Weina Wang, Mingjie Xie, Bingjue Ye, Xian Li, Yanning Liu, Min Zheng. Isoquercitrin induces apoptosis and autophagy in hepatocellular carcinoma cells via AMPK/mTOR/p70S6K signaling pathway.
Aging.
2020 11; 12(23):24318-24332. doi:
10.18632/aging.202237
. [PMID: 33260158] - Yingyi Wang, Jianping Li, Chenkai Chen, Jingbo Lu, Jingao Yu, Xuejun Xu, Yin Peng, Sen Zhang, Shu Jiang, Jianming Guo, Jinao Duan. Targeting the gut microbial metabolic pathway with small molecules decreases uremic toxin production.
Gut microbes.
2020 11; 12(1):1-19. doi:
10.1080/19490976.2020.1823800
. [PMID: 33016221] - Jing Chen, L Lee Hamm, Joshua D Bundy, Damodar R Kumbala, Shirisha Bodana, Sehgal Chandra, Chung-Shiuan Chen, Charlton C Starcke, Yajun Guo, Caroline M Schaefer, Eva Lustigova, Erin Mahone, Aarti M Vadalia, Terra Livingston, Katherine Obst, Jesus Hernandez, Syed Rizwan Bokhari, Myra Kleinpeter, Arnold B Alper, Ivo Lukitsch, Hua He, David C Nieman, Jiang He. Combination Treatment with Sodium Nitrite and Isoquercetin on Endothelial Dysfunction among Patients with CKD: A Randomized Phase 2 Pilot Trial.
Clinical journal of the American Society of Nephrology : CJASN.
2020 11; 15(11):1566-1575. doi:
10.2215/cjn.02020220
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Natural product research.
2020 Nov; 34(22):3295-3298. doi:
10.1080/14786419.2018.1560281
. [PMID: 30663374] - Mariem Haj Romdhane, Hassiba Chahdoura, Lillian Barros, Maria Inês Dias, Rúbia Carvalho Gomes Corrêa, Patricia Morales, Maria Flamini Hatem Ciudad-Mulero, Guido C F R Flamini, Hatem Majdoub, Isabel C F R Ferreira. Chemical Composition, Nutritional Value, and Biological Evaluation of Tunisian Okra Pods (Abelmoschus esculentus L. Moench).
Molecules (Basel, Switzerland).
2020 Oct; 25(20):. doi:
10.3390/molecules25204739
. [PMID: 33076530] - Diana Rey, Thaís Alves Fernandes, Paola Miranda Sulis, Renata Gonçalves, Michelle Sepúlveda R, Marisa Jádna Silva Frederico, Marcela Aragon, Luís Fernando Ospina, Geison M Costa, Fátima Regina Mena Barreto Silva. Cellular target of isoquercetin from Passiflora ligularis Juss for glucose uptake in rat soleus muscle.
Chemico-biological interactions.
2020 Oct; 330(?):109198. doi:
10.1016/j.cbi.2020.109198
. [PMID: 32692981] - Minsu Kim, Seowoo Im, Yoon Keun Cho, Cheoljun Choi, Yeonho Son, Doyoung Kwon, Young-Suk Jung, Yun-Hee Lee. Anti-Obesity Effects of Soybean Embryo Extract and Enzymatically-Modified Isoquercitrin.
Biomolecules.
2020 09; 10(10):. doi:
10.3390/biom10101394
. [PMID: 33008006] - Tlou Grace Manyelo, Nthabiseng Amenda Sebola, Zahra Mohammed Hassan, Monnye Mabelebele. Characterization of the Phenolic Compounds in Different Plant Parts of Amaranthus cruentus Grown under Cultivated Conditions.
Molecules (Basel, Switzerland).
2020 Sep; 25(18):. doi:
10.3390/molecules25184273
. [PMID: 32961894] - James J DiNicolantonio, Mark F McCarty. Targeting Casein kinase 2 with quercetin or enzymatically modified isoquercitrin as a strategy for boosting the type 1 interferon response to viruses and promoting cardiovascular health.
Medical hypotheses.
2020 Sep; 142(?):109800. doi:
10.1016/j.mehy.2020.109800
. [PMID: 32388479] - Lei Chen, Peimin Feng, Anjiao Peng, Xiangmiao Qiu, Wanling Lai, Lin Zhang, Wanling Li. Protective effects of isoquercitrin on streptozotocin-induced neurotoxicity.
Journal of cellular and molecular medicine.
2020 09; 24(18):10458-10467. doi:
10.1111/jcmm.15658
. [PMID: 32738031] - Sakina Bouderias, Péter Teszlák, Gábor Jakab, László Kőrösi. Age- and season-dependent pattern of flavonol glycosides in Cabernet Sauvignon grapevine leaves.
Scientific reports.
2020 08; 10(1):14241. doi:
10.1038/s41598-020-70706-7
. [PMID: 32859977] - Jae Sik Yu, Minji Park, Changhyun Pang, Luay Rashan, Won Hee Jung, Ki Hyun Kim. Antifungal Phenols from Woodfordia uniflora Collected in Oman.
Journal of natural products.
2020 07; 83(7):2261-2268. doi:
10.1021/acs.jnatprod.0c00395
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Food & function.
2020 Jun; 11(6):5293-5307. doi:
10.1039/d0fo00319k
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Food research international (Ottawa, Ont.).
2020 06; 132(?):109090. doi:
10.1016/j.foodres.2020.109090
. [PMID: 32331681] - Chae Hyun Kim, Jung-Eun Kim, Yoon-Jae Song. Antiviral Activities of Quercetin and Isoquercitrin Against Human Herpesviruses.
Molecules (Basel, Switzerland).
2020 May; 25(10):. doi:
10.3390/molecules25102379
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Nutrients.
2020 May; 12(5):. doi:
10.3390/nu12051353
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Natural product research.
2020 May; 34(10):1446-1451. doi:
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Transplantation proceedings.
2020 Apr; 52(3):1014-1019. doi:
10.1016/j.transproceed.2019.12.038
. [PMID: 32115238] - Claudio Frezza, Daniela De Vita, Giulia Spinaci, Marco Sarandrea, Alessandro Venditti, Armandodoriano Bianco. Secondary metabolites of Tilia tomentosa Moench inflorescences collected in Central Italy: chemotaxonomy relevance and phytochemical rationale of traditional use.
Natural product research.
2020 Apr; 34(8):1167-1174. doi:
10.1080/14786419.2018.1550487
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Molecules (Basel, Switzerland).
2020 Mar; 25(6):. doi:
10.3390/molecules25061276
. [PMID: 32168896] - Fatma Tuğçe Gürağaç Dereli, Mert Ilhan, Esra Küpeli Akkol. Identification of the main active antidepressant constituents in a traditional Turkish medicinal plant, Centaurea kurdica Reichardt.
Journal of ethnopharmacology.
2020 Mar; 249(?):112373. doi:
10.1016/j.jep.2019.112373
. [PMID: 31689479] - Luana Izzo, Luigi Castaldo, Alfonso Narváez, Giulia Graziani, Anna Gaspari, Yelko Rodríguez-Carrasco, Alberto Ritieni. Analysis of Phenolic Compounds in Commercial Cannabis sativa L. Inflorescences Using UHPLC-Q-Orbitrap HRMS.
Molecules (Basel, Switzerland).
2020 Jan; 25(3):. doi:
10.3390/molecules25030631
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The British journal of nutrition.
2020 01; 123(2):182-189. doi:
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. [PMID: 31870463] - Muthukumaran Jayachandran, Tongze Zhang, Ziyuan Wu, Yinhua Liu, Baojun Xu. Isoquercetin regulates SREBP-1C via AMPK pathway in skeletal muscle to exert antihyperlipidemic and anti-inflammatory effects in STZ induced diabetic rats.
Molecular biology reports.
2020 Jan; 47(1):593-602. doi:
10.1007/s11033-019-05166-y
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Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
2020 Jan; 135(?):110985. doi:
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Scientific reports.
2019 12; 9(1):19176. doi:
10.1038/s41598-019-55654-1
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Environmental science and pollution research international.
2019 Nov; 26(31):32488-32504. doi:
10.1007/s11356-019-06368-4
. [PMID: 31617137] - Zhi-Gang Wu, Wei Wei, Hai-Yan Xu, Lin-Lin Zheng, Chao-Mei Ma, Ying-Chun Wang. Constituents from the Leaves of Tetraena mongolica and Their Protective Activity in HEK 293t Cells Damaged by CdCl2.
Journal of natural products.
2019 10; 82(10):2707-2712. doi:
10.1021/acs.jnatprod.9b00212
. [PMID: 31593459] - Ji Hyun Kim, Sanghyun Lee, Eun Ju Cho. Acer okamotoanum and isoquercitrin improve cognitive function via attenuation of oxidative stress in high fat diet- and amyloid beta-induced mice.
Food & function.
2019 Oct; 10(10):6803-6814. doi:
10.1039/c9fo01694e
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Natural product research.
2019 Oct; 33(19):2851-2855. doi:
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Molecules (Basel, Switzerland).
2019 Sep; 24(19):. doi:
10.3390/molecules24193448
. [PMID: 31547535] - Gokhan Zengin, Mehmet Yavuz Paksoy, Muhammad Zakariyyah Aumeeruddy, Jasmina Glamocilja, Marina Sokovic, Alina Diuzheva, József Jekő, Zoltán Cziáky, Maria João Rodrigues, Luisa Custodio, Mohamad Fawzi Mahomoodally. New insights into the chemical profiling, cytotoxicity and bioactivity of four Bunium species.
Food research international (Ottawa, Ont.).
2019 09; 123(?):414-424. doi:
10.1016/j.foodres.2019.05.013
. [PMID: 31284993] - Tizian Klingel, Martina Hadamjetz, Anja Fischer, Daniel Wefers. Glucosylation of flavonoids and flavonoid glycosides by mutant dextransucrase from Lactobacillus reuteri TMW 1.106.
Carbohydrate research.
2019 Sep; 483(?):107741. doi:
10.1016/j.carres.2019.107741
. [PMID: 31325545] - Hao Jiang, Yasukiyo Yoshioka, Sihao Yuan, Yuko Horiuchi, Yoko Yamashita, Kevin D Croft, Hitoshi Ashida. Enzymatically modified isoquercitrin promotes energy metabolism through activating AMPKα in male C57BL/6 mice.
Food & function.
2019 Aug; 10(8):5188-5202. doi:
10.1039/c9fo01008d
. [PMID: 31380532] - Sachiko Sugimoto, Yoshi Yamano, Samar Y Desoukey, Kazuaki Katakawa, Amira S Wanas, Hideaki Otsuka, Katsuyoshi Matsunami. Isolation of Sesquiterpene-Amino Acid Conjugates, Onopornoids A-D, and a Flavonoid Glucoside from Onopordum alexandrinum.
Journal of natural products.
2019 06; 82(6):1471-1477. doi:
10.1021/acs.jnatprod.8b00948
. [PMID: 31199638] - Marcela Martínez-Busi, Florencia Arredondo, David González, Carolina Echeverry, Mauricio A Vega-Teijido, Diego Carvalho, Alejandra Rodríguez-Haralambides, Felicia Rivera, Federico Dajas, Juan A Abin-Carriquiry. Purification, structural elucidation, antioxidant capacity and neuroprotective potential of the main polyphenolic compounds contained in Achyrocline satureioides (Lam) D.C. (Compositae).
Bioorganic & medicinal chemistry.
2019 06; 27(12):2579-2591. doi:
10.1016/j.bmc.2019.03.047
. [PMID: 30935792] - Yumi Kitahiro, Hiroshi Ikeda, Hyoung-Tak Im, Eiichi Kodaira, Makio Shibano. Phytochemical characterization of Rosa multiflora Thunb. (Rosaceae) in Japan and South Korea, with a focus on the bioactive flavonol glycoside 'multiflorin A'.
Journal of natural medicines.
2019 Jun; 73(3):555-565. doi:
10.1007/s11418-019-01302-x
. [PMID: 30949951] - Fang Dong, Jianhui Hu, Yuanzhi Shi, Meiya Liu, Qunfeng Zhang, Jianyun Ruan. Effects of nitrogen supply on flavonol glycoside biosynthesis and accumulation in tea leaves (Camellia sinensis).
Plant physiology and biochemistry : PPB.
2019 May; 138(?):48-57. doi:
10.1016/j.plaphy.2019.02.017
. [PMID: 30849677] - Muthukumaran Jayachandran, Ziyuan Wu, Kumar Ganesan, Sumbul Khalid, S M Chung, Baojun Xu. Isoquercetin upregulates antioxidant genes, suppresses inflammatory cytokines and regulates AMPK pathway in streptozotocin-induced diabetic rats.
Chemico-biological interactions.
2019 Apr; 303(?):62-69. doi:
10.1016/j.cbi.2019.02.017
. [PMID: 30817903] - Magdy Kazzem, Yu-Ting Sun, Mitchell Low, Sai Wang Seto, Dennis Chang, Samiuela Lee, Harsha Suresh, Cheang S Khoo, Alan Bensoussan, Hosen Kiat. Chromatographic Analysis and Anti-Oxidative Property of Naoxinqing Tablet, a Proprietary Preparation of Diospyros Kaki Leaves.
Molecules (Basel, Switzerland).
2019 Mar; 24(6):. doi:
10.3390/molecules24061101
. [PMID: 30897753] - Zhimin Hu, Junbin He, Kuan Chen, Zilong Wang, Jiyang Liu, Xue Qiao, Min Ye. Molecular cloning and biochemical characterization of a new flavonoid glycosyltransferase from the aquatic plant lotus.
Biochemical and biophysical research communications.
2019 03; 510(2):315-321. doi:
10.1016/j.bbrc.2019.01.099
. [PMID: 30709586] - Kyung-Chul Shin, Min-Ju Seo, Deok-Kun Oh, Mi-Na Choi, Dae-Wook Kim, Yeong-Su Kim, Chang-Su Park. Cloning and characterization of α-L-rhamnosidase from Chloroflexus aurantiacus and its application in the production of isoquercitrin from rutin.
Biotechnology letters.
2019 Mar; 41(3):419-426. doi:
10.1007/s10529-019-02648-8
. [PMID: 30666483] - Jeffrey I Zwicker, Benjamin L Schlechter, Jack D Stopa, Howard A Liebman, Anita Aggarwal, Maneka Puligandla, Thomas Caughey, Kenneth A Bauer, Nancy Kuemmerle, Ellice Wong, Ted Wun, Marilyn McLaughlin, Manuel Hidalgo, Donna Neuberg, Bruce Furie, Robert Flaumenhaft. Targeting protein disulfide isomerase with the flavonoid isoquercetin to improve hypercoagulability in advanced cancer.
JCI insight.
2019 02; 4(4):. doi:
10.1172/jci.insight.125851
. [PMID: 30652973] - Guohong Qin, Ji Ma, Qiongshan Huang, Hongli Yin, Jichun Han, Maoru Li, Yang Deng, Bing Wang, Waseem Hassan, Jing Shang. Isoquercetin Improves Hepatic Lipid Accumulation by Activating AMPK Pathway and Suppressing TGF-β Signaling on an HFD-Induced Nonalcoholic Fatty Liver Disease Rat Model.
International journal of molecular sciences.
2018 Dec; 19(12):. doi:
10.3390/ijms19124126
. [PMID: 30572631] - Serena Di Francesco, Monica Savio, Nora Bloise, Giovanni Borroni, Lucia Anna Stivala, Riccardo G Borroni. Red grape (Vitis vinifera L.) flavonoids down-regulate collagen type III expression after UV-A in primary human dermal blood endothelial cells.
Experimental dermatology.
2018 09; 27(9):973-980. doi:
10.1111/exd.13682
. [PMID: 29742305] - Wei Zhou, Jinjun Shan, Minxin Meng. A two-step ultra-high-performance liquid chromatography-quadrupole/time of flight mass spectrometry with mass defect filtering method for rapid identification of analogues from known components of different chemical structure types in Fructus Gardeniae-Fructus Forsythiae herb pair extract and in rat's blood.
Journal of chromatography. A.
2018 Aug; 1563(?):99-123. doi:
10.1016/j.chroma.2018.05.067
. [PMID: 29861306] - Graziela Bragueto Escher, Jânio Sousa Santos, Neiva Deliberali Rosso, Mariza Boscacci Marques, Luciana Azevedo, Mariana Araújo Vieira do Carmo, Heitor Daguer, Luciano Molognoni, Leonardo do Prado-Silva, Anderson S Sant'Ana, Marcia Cristina da Silva, Daniel Granato. Chemical study, antioxidant, anti-hypertensive, and cytotoxic/cytoprotective activities of Centaurea cyanus L. petals aqueous extract.
Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
2018 Aug; 118(?):439-453. doi:
10.1016/j.fct.2018.05.046
. [PMID: 29787846] - Xiaoyu Zhang, Xueran Mei, Zhanguo Wang, Jing Wu, Gang Liu, Huiling Hu, Qijuan Li. Chemical Fingerprint and Quantitative Analysis for the Quality Evaluation of Docynia dcne Leaves by High-Performance Liquid Chromatography Coupled with Chemometrics Analysis.
Journal of chromatographic science.
2018 Aug; 56(7):575-581. doi:
10.1093/chromsci/bmy007
. [PMID: 29800095] - Da-Wool Jeong, Chi Heung Cho, Jong Suk Lee, Seung Hwan Lee, Taewan Kim, Dae-Ok Kim. Deastringent Peel Extracts of Persimmon (Diospyros kaki Thunb. cv. Cheongdo-Bansi) Protect Neuronal PC-12 and SH-SY5Y Cells against Oxidative Stress.
Journal of microbiology and biotechnology.
2018 Jul; 28(7):1094-1104. doi:
10.4014/jmb.1801.01013
. [PMID: 29975999] - Mingya Ding, Zhen Li, Xie-An Yu, Dong Zhang, Jin Li, Hui Wang, Jun He, Xiu-Mei Gao, Yan-Xu Chang. A network pharmacology-integrated metabolomics strategy for clarifying the difference between effective compounds of raw and processed Farfarae flos by ultra high-performance liquid chromatography-quadrupole-time of flight mass spectrometry.
Journal of pharmaceutical and biomedical analysis.
2018 Jul; 156(?):349-357. doi:
10.1016/j.jpba.2018.05.003
. [PMID: 29753281] - Si Tan, Jose A Caparros-Martin, Vance B Matthews, Henrietta Koch, Fergal O'Gara, Kevin D Croft, Natalie C Ward. Isoquercetin and inulin synergistically modulate the gut microbiome to prevent development of the metabolic syndrome in mice fed a high fat diet.
Scientific reports.
2018 07; 8(1):10100. doi:
10.1038/s41598-018-28521-8
. [PMID: 29973701] - Hirotada Murayama, Ayumi Eguchi, Misato Nakamura, Masahi Kawashima, Rei Nagahara, Sayaka Mizukami, Masayuki Kimura, Emi Makino, Naofumi Takahashi, Ryoichi Ohtsuka, Mihoko Koyanagi, Shim-Mo Hayashi, Robert R Maronpot, Makoto Shibutani, Toshinori Yoshida. Spironolactone in Combination with α-glycosyl Isoquercitrin Prevents Steatosis-related Early Hepatocarcinogenesis in Rats through the Observed NADPH Oxidase Modulation.
Toxicologic pathology.
2018 07; 46(5):530-539. doi:
10.1177/0192623318778508
. [PMID: 29843569] - Pham Thi Nhat Trinh, Nguyen Huu An, Pham Ngoc An, Mai Dinh Tri, Cao Van Du, Phan Nhat Minh, Nguyen Thi Le Thuy, Nguyen Trong Tuan, Vang Thi Kim Thoa, Nguyen Ngoc Tuan, Le Tien Dung. A new benzofuran derivative from the leaves of Ficus pumila L.
Natural product research.
2018 Jul; 32(14):1648-1652. doi:
10.1080/14786419.2017.1395427
. [PMID: 29072969] - Carmen Steinborn, Olivier Potterat, Ulrich Meyer, Rainer Trittler, Sven Stadlbauer, Roman Huber, Carsten Gründemann. In Vitro Anti-inflammatory Effects of Equisetum arvense Are Not Solely Mediated by Silica.
Planta medica.
2018 May; 84(8):519-526. doi:
10.1055/s-0043-123075
. [PMID: 29202511] - Majambu Mbikay, Janice Mayne, Francine Sirois, Olesya Fedoryak, Angela Raymond, Jennifer Noad, Michel Chrétien. Mice Fed a High-Cholesterol Diet Supplemented with Quercetin-3-Glucoside Show Attenuated Hyperlipidemia and Hyperinsulinemia Associated with Differential Regulation of PCSK9 and LDLR in their Liver and Pancreas.
Molecular nutrition & food research.
2018 05; 62(9):e1700729. doi:
10.1002/mnfr.201700729
. [PMID: 29396908] - Antonietta Cerulli, Milena Masullo, Angela Mari, Anna Balato, Rosanna Filosa, Serena Lembo, Assunta Napolitano, Sonia Piacente. Phenolics from Castanea sativa leaves and their effects on UVB-induced damage.
Natural product research.
2018 May; 32(10):1170-1175. doi:
10.1080/14786419.2017.1331225
. [PMID: 28539059] - Toshiyuki Nakamura, Chinatsu Kinjo, Yoshimasa Nakamura, Yoji Kato, Miyu Nishikawa, Masahiro Hamada, Noriyuki Nakajima, Shinichi Ikushiro, Kaeko Murota. Lymphatic metabolites of quercetin after intestinal administration of quercetin-3-glucoside and its aglycone in rats.
Archives of biochemistry and biophysics.
2018 05; 645(?):126-136. doi:
10.1016/j.abb.2018.03.024
. [PMID: 29574052] - Arnaud Gaudry, Sandra Bos, Wildriss Viranaicken, Marjolaine Roche, Pascale Krejbich-Trotot, Gilles Gadea, Philippe Desprès, Chaker El-Kalamouni. The Flavonoid Isoquercitrin Precludes Initiation of Zika Virus Infection in Human Cells.
International journal of molecular sciences.
2018 Apr; 19(4):. doi:
10.3390/ijms19041093
. [PMID: 29621184] - A Garbetta, L Nicassio, I D'Antuono, A Cardinali, V Linsalata, G Attolico, F Minervini. Influence of in vitro digestion process on polyphenolic profile of skin grape (cv. Italia) and on antioxidant activity in basal or stressed conditions of human intestinal cell line (HT-29).
Food research international (Ottawa, Ont.).
2018 04; 106(?):878-884. doi:
10.1016/j.foodres.2018.01.072
. [PMID: 29579999] - Yunjeong Kim, Kyeong-Ok Chang. Protein disulfide isomerases as potential therapeutic targets for influenza A and B viruses.
Virus research.
2018 03; 247(?):26-33. doi:
10.1016/j.virusres.2018.01.010
. [PMID: 29382552] - Fangbo Xia, Chenchen Li, Ning Zhao, He Li, Qi Chang, Xinmin Liu, Yonghong Liao, Ruile Pan. Rapid Determination of Active Compounds and Antioxidant Activity of Okra Seeds Using Fourier Transform Near Infrared (FT-NIR) Spectroscopy.
Molecules (Basel, Switzerland).
2018 Mar; 23(3):. doi:
10.3390/molecules23030550
. [PMID: 29498632] - Yang Liu, Shengzuo Fang, Wanxia Yang, Xulan Shang, Xiangxiang Fu. Light quality affects flavonoid production and related gene expression in Cyclocarya paliurus.
Journal of photochemistry and photobiology. B, Biology.
2018 Feb; 179(?):66-73. doi:
10.1016/j.jphotobiol.2018.01.002
. [PMID: 29334625] - JiEun Yun, Eun-Rhan Woo, Dong Gun Lee. Effect of isoquercitrin on membrane dynamics and apoptosis-like death in Escherichia coli.
Biochimica et biophysica acta. Biomembranes.
2018 Feb; 1860(2):357-363. doi:
10.1016/j.bbamem.2017.11.008
. [PMID: 29155212] - Rana Adhikary, Sahin Sultana, Biswadev Bishayi. Clitoria ternatea flower petals: Effect on TNFR1 neutralization via downregulation of synovial matrix metalloproteases.
Journal of ethnopharmacology.
2018 Jan; 210(?):209-222. doi:
10.1016/j.jep.2017.08.017
. [PMID: 28826781] - Misato Nakamura, Ayumi Eguchi, Mari Inohana, Rei Nagahara, Hirotada Murayama, Masashi Kawashima, Sayaka Mizukami, Mihoko Koyanagi, Shim-Mo Hayashi, Robert R Maronpot, Makoto Shibutani, Toshinori Yoshida. Differential impacts of mineralocorticoid receptor antagonist potassium canrenoate on liver and renal changes in high fat diet-mediated early hepatocarcinogenesis model rats.
The Journal of toxicological sciences.
2018; 43(10):611-621. doi:
10.2131/jts.43.611
. [PMID: 30298849] - Jun Zhou, Jiang Bing Sun, Qiao Feng Wang. Determination of isoquercitrin in rat plasma by high performance liquid chromatography coupled with a novel synergistic cloud point extraction.
Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
2018 Jan; 1072(?):136-141. doi:
10.1016/j.jchromb.2017.11.014
. [PMID: 29153998] - Ilyas Yildiz, Ozkan Sen, Ramazan Erenler, Ibrahim Demirtas, Lutfi Behcet. Bioactivity-guided isolation of flavonoids from Cynanchum acutum L. subsp. sibiricum (willd.) Rech. f. and investigation of their antiproliferative activity.
Natural product research.
2017 Nov; 31(22):2629-2633. doi:
10.1080/14786419.2017.1289201
. [PMID: 28278670] - Chang Won Lee, Jeong Yeon Seo, Jisun Lee, Ji Won Choi, Sarang Cho, Jae Youn Bae, Jae Kyung Sohng, Sung Oog Kim, Jihoon Kim, Yong Il Park. 3-O-Glucosylation of quercetin enhances inhibitory effects on the adipocyte differentiation and lipogenesis.
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
2017 Nov; 95(?):589-598. doi:
10.1016/j.biopha.2017.08.002
. [PMID: 28869898] - Elina Karhu, Janne Isojärvi, Pia Vuorela, Leena Hanski, Adyary Fallarero. Identification of Privileged Antichlamydial Natural Products by a Ligand-Based Strategy.
Journal of natural products.
2017 10; 80(10):2602-2608. doi:
10.1021/acs.jnatprod.6b01052
. [PMID: 29043803] - Ping Wu, Siyuan Liu, Jianyu Su, Jianping Chen, Lin Li, Runguang Zhang, Tianfeng Chen. Apoptosis triggered by isoquercitrin in bladder cancer cells by activating the AMPK-activated protein kinase pathway.
Food & function.
2017 Oct; 8(10):3707-3722. doi:
10.1039/c7fo00778g
. [PMID: 28948276] - Yifei Wang, Jennifer Johnson-Cicalese, Ajay P Singh, Nicholi Vorsa. Characterization and quantification of flavonoids and organic acids over fruit development in American cranberry (Vaccinium macrocarpon) cultivars using HPLC and APCI-MS/MS.
Plant science : an international journal of experimental plant biology.
2017 Sep; 262(?):91-102. doi:
10.1016/j.plantsci.2017.06.004
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