Quercitrin (BioDeep_00000270677)

Main id: BioDeep_00000000015

 

natural product PANOMIX_OTCML-2023


代谢物信息卡片


2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-2-tetrahydropyranyl]oxy]-4-chromenone

化学式: C21H20O11 (448.1006)
中文名称: 槲皮苷
谱图信息: 最多检出来源 () 0%

分子结构信息

SMILES: C(C(=O)3)(=C(Oc(c4)c3c(cc(O)4)O)c(c2)cc(c(O)c2)O)OC(O1)C(O)C(O)C(O)C(C)1
InChI: InChI=1/C21H20O11/c1-7-15(26)17(28)18(29)21(30-7)32-20-16(27)14-12(25)5-9(22)6-13(14)31-19(20)8-2-3-10(23)11(24)4-8/h2-7,15,17-18,21-26,28-29H,1H3/t7-,15-,17+,18+,21-/m0/s1

描述信息

Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2].
Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2].
Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2].

同义名列表

39 个代谢物同义名

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-2-tetrahydropyranyl]oxy]-4-chromenone; 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-tetrahydropyran-2-yl]oxy-chromen-4-one; 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-tetrahydropyran-2-yl]oxy-chromone; 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-oxan-2-yl]oxy-chromen-4-one; 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyloxan-2-yl]oxychromen-4-one; 4H-1-Benzopyran-4-one, 3-((6-deoxy-.alpha.-L-mannopyranosyl)oxy)-2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-; 3-((6-Deoxy-alpha-L-mannopyranosyl)-oxy)-2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-4H-1-benzopyran-4-one; 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-4-oxo-4H-chromen-3-yl 6-deoxy-alpha-L-mannopyranoside; luteolin 6-deoxy-alpha-L-mannopyranoside; MEGxp0_000185; ACon1_000189; SMP1_000253; AIDS-001408; CHEBI:17558; AIDS001408; Quercitrin; 522-12-3; C01750; quercetin 3-O-rhamnopyranoside; quercetrin; quercetin-3-O-alpha-rhamnoside; quercetin 3-O-rhamnoside; Taxifolin-3-alpha-L-rhamnopyranoside; Quercetin 3/4-rhamnose; Quercetin-3-rhamnoside; quercetin 3-O-alpha-rhamnopyranoside; Quercetin-3-O-rhamnose; Quercetin 3-a-L-rhamnopyranoside; Quercetin-3-O-alpha-L-rhamnopyranoside; quercimelin; 3,5,7,3,4-Pentahydroxyflavone 3-rhamnoside; Quercetin3-O-alpha-rhamnopyranoside; quercetin 3-O-L-rhamnoside; Quercetin-3-O-rhamnoside; quercetin 3-rhamnoside; 3-O-RHAMNOSYLQUERCETIN; Quercetin rhamnoside; quercitroside; Quercitrin



数据库引用编号

78 个数据库交叉引用编号

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)

2371 个相关的物种来源信息

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。

亚细胞结构定位 关联基因列表
Cytoplasm 11 AKT1, CASP3, CAT, MAPK14, MAPK8, NFE2L2, NOS2, PIK3CA, PTGS2, TNFSF11, XDH
Peripheral membrane protein 1 PTGS2
Endoplasmic reticulum membrane 2 HMOX1, PTGS2
Nucleus 8 AKT1, CASP3, HMOX1, MAPK14, MAPK8, MPO, NFE2L2, NOS2
cytosol 12 AKT1, CASP3, CAT, GPT, HMOX1, IL1B, MAPK14, MAPK8, NFE2L2, NOS2, PIK3CA, XDH
centrosome 1 NFE2L2
nucleoplasm 8 AKT1, CASP3, HMOX1, MAPK14, MAPK8, MPO, NFE2L2, NOS2
RNA polymerase II transcription regulator complex 1 NFE2L2
Cell membrane 3 AKT1, TNF, TNFSF11
Cytoplasmic side 1 HMOX1
lamellipodium 2 AKT1, PIK3CA
Synapse 1 MAPK8
cell cortex 1 AKT1
cell surface 1 TNF
glutamatergic synapse 3 AKT1, CASP3, MAPK14
Golgi apparatus 1 NFE2L2
Golgi membrane 1 INS
neuronal cell body 2 CASP3, TNF
postsynapse 1 AKT1
Cytoplasm, cytosol 3 IL1B, NFE2L2, NOS2
Lysosome 2 IL1B, MPO
plasma membrane 6 AKT1, NFE2L2, NOS2, PIK3CA, TNF, TNFSF11
Membrane 4 AKT1, CAT, HMOX1, TNFSF11
axon 1 MAPK8
caveola 1 PTGS2
extracellular exosome 3 CAT, GPT, MPO
endoplasmic reticulum 2 HMOX1, PTGS2
extracellular space 10 CXCL8, HMOX1, IL10, IL1B, IL6, INS, MPO, TNF, TNFSF11, XDH
perinuclear region of cytoplasm 3 HMOX1, NOS2, PIK3CA
intercalated disc 1 PIK3CA
mitochondrion 2 CAT, MAPK14
protein-containing complex 3 AKT1, CAT, PTGS2
intracellular membrane-bounded organelle 2 CAT, MPO
Microsome membrane 1 PTGS2
postsynaptic density 1 CASP3
Secreted 6 CXCL8, IL10, IL1B, IL6, INS, TNFSF11
extracellular region 10 CAT, CXCL8, IL10, IL1B, IL6, INS, MAPK14, MPO, TNF, TNFSF11
mitochondrial outer membrane 1 HMOX1
mitochondrial matrix 1 CAT
external side of plasma membrane 1 TNF
microtubule cytoskeleton 1 AKT1
Cytoplasm, P-body 1 NOS2
P-body 1 NOS2
cell-cell junction 1 AKT1
recycling endosome 1 TNF
Single-pass type II membrane protein 2 TNF, TNFSF11
vesicle 1 AKT1
Cytoplasm, perinuclear region 1 NOS2
Membrane raft 1 TNF
focal adhesion 1 CAT
spindle 1 AKT1
Peroxisome 3 CAT, NOS2, XDH
sarcoplasmic reticulum 1 XDH
Peroxisome matrix 1 CAT
peroxisomal matrix 2 CAT, NOS2
peroxisomal membrane 1 CAT
Mitochondrion intermembrane space 1 AKT1
mitochondrial intermembrane space 1 AKT1
secretory granule 2 IL1B, MPO
nuclear speck 1 MAPK14
Nucleus inner membrane 1 PTGS2
Nucleus outer membrane 1 PTGS2
nuclear inner membrane 1 PTGS2
nuclear outer membrane 1 PTGS2
neuron projection 1 PTGS2
ciliary basal body 1 AKT1
chromatin 1 NFE2L2
mediator complex 1 NFE2L2
phagocytic cup 1 TNF
spindle pole 1 MAPK14
endosome lumen 1 INS
azurophil granule 1 MPO
ficolin-1-rich granule lumen 2 CAT, MAPK14
secretory granule lumen 3 CAT, INS, MAPK14
Golgi lumen 1 INS
endoplasmic reticulum lumen 3 IL6, INS, PTGS2
phosphatidylinositol 3-kinase complex 1 PIK3CA
phosphatidylinositol 3-kinase complex, class IA 1 PIK3CA
transport vesicle 1 INS
Secreted, extracellular exosome 1 IL1B
azurophil granule lumen 1 MPO
Endoplasmic reticulum-Golgi intermediate compartment membrane 1 INS
Single-pass type IV membrane protein 1 HMOX1
[Isoform 2]: Cytoplasm 1 TNFSF11
[Tumor necrosis factor ligand superfamily member 11, soluble form]: Secreted 1 TNFSF11
phagocytic vesicle lumen 1 MPO
protein-DNA complex 1 NFE2L2
basal dendrite 1 MAPK8
death-inducing signaling complex 1 CASP3
[Tumor necrosis factor, soluble form]: Secreted 1 TNF
cortical cytoskeleton 1 NOS2
catalase complex 1 CAT
interleukin-6 receptor complex 1 IL6
phosphatidylinositol 3-kinase complex, class IB 1 PIK3CA
[C-domain 2]: Secreted 1 TNF
[Tumor necrosis factor, membrane form]: Membrane 1 TNF
[C-domain 1]: Secreted 1 TNF


文献列表

  • Meihe Li, Shan Gao, Minchao Kang, Xuan Zhang, Ping Lan, Xiaoling Wu, Xiaofei Yan, Huimin Dang, Jin Zheng. Quercitrin alleviates lipid metabolism disorder in polycystic ovary syndrome-insulin resistance by upregulating PM20D1 in the PI3K/Akt pathway. Phytomedicine : international journal of phytotherapy and phytopharmacology. 2023 Aug; 117(?):154908. doi: 10.1016/j.phymed.2023.154908. [PMID: 37321077]
  • Qingjie Li, Lianping Wang, Jingwen Xu, Shuang Liu, Zeyu Song, Tingting Chen, Xuming Deng, Jianfeng Wang, Qianghua Lv. Quercitrin Is a Novel Inhibitor of Salmonella enterica Serovar Typhimurium Type III Secretion System. Molecules (Basel, Switzerland). 2023 Jul; 28(14):. doi: 10.3390/molecules28145455. [PMID: 37513327]
  • Lixin Wang, Jinxia Sun, Zhulei Miao, Xin Jiang, Yuejuan Zheng, Guizhen Yang. Quercitrin improved cognitive impairment through inhibiting inflammation induced by microglia in Alzheimer's disease mice. Neuroreport. 2022 05; 33(8):327-335. doi: 10.1097/wnr.0000000000001783. [PMID: 35594435]
  • Junren Chen, Gangmin Li, Chen Sun, Fu Peng, Lei Yu, Yan Chen, Yuzhu Tan, Xiaoyu Cao, Yunli Tang, Xiaofang Xie, Cheng Peng. Chemistry, pharmacokinetics, pharmacological activities, and toxicity of Quercitrin. Phytotherapy research : PTR. 2022 Apr; 36(4):1545-1575. doi: 10.1002/ptr.7397. [PMID: 35253930]
  • Yi Zhou, Zhanqiang Li, Dejun Zhang, Benyin Zhang. Screening of bioactive ingredients of Tsantan Sumtang in ameliorating H9c2 cells injury. Journal of ethnopharmacology. 2022 Mar; 285(?):114854. doi: 10.1016/j.jep.2021.114854. [PMID: 34808301]
  • Wiem Elloumi, Asma Mahmoudi, Sergio Ortiz, Sabrina Boutefnouchet, Mohamed Chamkha, Sami Sayadi. Wound healing potential of quercetin-3-O-rhamnoside and myricetin-3-O-rhamnoside isolated from Pistacia lentiscus distilled leaves in rats model. Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie. 2022 Feb; 146(?):112574. doi: 10.1016/j.biopha.2021.112574. [PMID: 35062055]
  • Shi-Tang Ma, Xin-Yuan Zhang, Ning Zhang, Xiao-Lin Bi, Cheng-Tao Feng. Quantitative Determination of Quercitrin Levels in Rat Plasma Using UHPLC-MS/MS and its Application in a Pharmacokinetic Study after the Oral Administration of Polygoni cuspidati Folium Capsules. Current pharmaceutical biotechnology. 2022; 23(3):457-465. doi: 10.2174/1389201022666210519114647. [PMID: 34011255]
  • Norliza Abdul Latiff, Pei Ying Ong, Siti Nor Azlina Abd Rashid, Luqman Chuah Abdullah, Nor Amaiza Mohd Amin, Noor Akhmazillah Mohd Fauzi. Enhancing recovery of bioactive compounds from Cosmos caudatus leaves via ultrasonic extraction. Scientific reports. 2021 08; 11(1):17297. doi: 10.1038/s41598-021-96623-x. [PMID: 34453075]
  • Saulo Duarte Ozelin, Juliana Marques Senedese, Jacqueline Morais Alves, Carla Carolina Munari, Juliana De Carvalho Da Costa, Flávia Aparecida Resende, Débora Leite Campos, Ildercílio Mota De Souza Lima, Augusto Faria Andrade, Eliana Aparecida Varanda, Jairo Kenupp Bastos, Denise Crispim Tavares. Preventive activity of Copaifera langsdorffii Desf. leaves extract and its major compounds, afzelin and quercitrin, on DNA damage in in vitro and in vivo models. Journal of toxicology and environmental health. Part A. 2021 07; 84(14):569-581. doi: 10.1080/15287394.2021.1898505. [PMID: 33730993]
  • Dimas Rahadian Aji Muhammad, Emmy Tuenter, Graha Darma Patria, Kenn Foubert, Luc Pieters, Koen Dewettinck. Phytochemical composition and antioxidant activity of Cinnamomum burmannii Blume extracts and their potential application in white chocolate. Food chemistry. 2021 Mar; 340(?):127983. doi: 10.1016/j.foodchem.2020.127983. [PMID: 32919354]
  • Hafssa El Cadi, Hajar El Bouzidi, Ginane Selama, Asmae El Cadi, Btissam Ramdan, Yassine Oulad El Majdoub, Filippo Alibrando, Paola Dugo, Luigi Mondello, Asmae Fakih Lanjri, Jamal Brigui, Francesco Cacciola. Physico-Chemical and Phytochemical Characterization of Moroccan Wild Jujube "Zizyphus lotus (L.)" Fruit Crude Extract and Fractions. Molecules (Basel, Switzerland). 2020 Nov; 25(22):. doi: 10.3390/molecules25225237. [PMID: 33182717]
  • Jennyfer Andrea Aldana, Rone Aparecido De Grandis, Heloiza Nicolella, Ana Paula Prado Guissoni, Iara Squarisi, Caroline Arruda, Victor Pena Ribeiro, Denise Crispim Tavares, Gustavo Rafael Mazzaron Barcelos, Lusânia Maria Greggi Antunes, Jairo Kenupp Bastos. Evaluation of cytoprotective effects of compounds isolated from Copaifera langsdorffii Desf. against induced cytotoxicity by exposure to methylmercury and lead. Natural product research. 2020 Sep; 34(17):2528-2532. doi: 10.1080/14786419.2018.1543673. [PMID: 30623721]
  • Chung Shil Kwak, Jiwon Yang, Chang-Yup Shin, Jin Ho Chung. Rosa multiflora Thunb Flower Extract Attenuates Ultraviolet-Induced Photoaging in Skin Cells and Hairless Mice. Journal of medicinal food. 2020 Sep; 23(9):988-997. doi: 10.1089/jmf.2019.4610. [PMID: 32721259]
  • Erna Karalija, Adisa Parić, Sabina Dahija, Renata Bešta-Gajević, Sanja Ćavar Zeljković. Phenolic compounds and bioactive properties of Verbascum glabratum subsp. bosnense (K. Malý) Murb., an endemic plant species. Natural product research. 2020 Aug; 34(16):2407-2411. doi: 10.1080/14786419.2018.1538221. [PMID: 30580595]
  • Lin Zheng, Yueting Li, Zuying Zhou, Wenying Xiang, Zipeng Gong, Siying Chen, Yonglin Wang, Aimin Wang, Yanyu Lan, Yongjun Li, Yong Huang. Comparative pharmacokinetics of quercitrin, astragalin, afzelin and taxifolin in plasma after oral administration of Polygonum orientale inflorescence in sham-operated and myocardial ischemia-reperfusion injury rats. Xenobiotica; the fate of foreign compounds in biological systems. 2020 Jul; 50(7):822-830. doi: 10.1080/00498254.2019.1700319. [PMID: 31791186]
  • Cezara Zagrean-Tuza, Augustin C Mot, Tomasz Chmiel, Attila Bende, Ioan Turcu. Sugar matters: sugar moieties as reactivity-tuning factors in quercetin O-glycosides. Food & function. 2020 Jun; 11(6):5293-5307. doi: 10.1039/d0fo00319k. [PMID: 32458896]
  • Stefania Cicolari, Marco Dacrema, Arold Jorel Tsetegho Sokeng, Jianbo Xiao, Achille Parfait Atchan Nwakiban, Carmen Di Giovanni, Cristina Santarcangelo, Paolo Magni, Maria Daglia. Hydromethanolic Extracts from Adansonia digitata L. Edible Parts Positively Modulate Pathophysiological Mechanisms Related to the Metabolic Syndrome. Molecules (Basel, Switzerland). 2020 Jun; 25(12):. doi: 10.3390/molecules25122858. [PMID: 32575811]
  • Wei Zhang, Zhi-Tian Fu, Yao Xie, Zhi-Wen Duan, Yu Wang, Rong-Hua Fan. High resolution UPLC-MS/MS method for simultaneous separation and determination of six flavonoids from semen cuscutae extract in rat plasma: application to comparative pharmacokinetic studies in normal and kidney-deficient rats. Natural product research. 2020 May; 34(10):1446-1451. doi: 10.1080/14786419.2018.1511556. [PMID: 30375249]
  • Youjiao Wu, Zhifeng Zhang, Tingbo Chen, Chunsong Cheng, Ziling Zhang, Hua Zhou, Pei Luo. Comparison of two Polygonum chinense varieties used in Chinese cool tea in terms of chemical profiles and antioxidant/anti-inflammatory activities. Food chemistry. 2020 Apr; 310(?):125840. doi: 10.1016/j.foodchem.2019.125840. [PMID: 31806390]
  • 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]
  • Luciana Arantes Dantas, Márcio Rosa, Erika Crispim Resende, Fabiano Guimarães Silva, Paulo Sérgio Pereira, Ana Cristina Lourenço Souza, Fernando Higino de Lima E Silva, Aurélio Rubio Neto. Spectral quality as an elicitor of bioactive compound production in Solanum aculeatissimum JACQ cell suspension. Journal of photochemistry and photobiology. B, Biology. 2020 Mar; 204(?):111819. doi: 10.1016/j.jphotobiol.2020.111819. [PMID: 32062388]
  • Yong Huang, Zuying Zhou, Wu Yang, Zipeng Gong, Yueting Li, Siying Chen, Yonglin Wang, Aimin Wang, Yanyu Lan, Ting Liu, Lin Zheng. Comparative Pharmacokinetics of Gallic Acid, Protocatechuic Acid, and Quercitrin in Normal and Pyelonephritis Rats after Oral Administration of a Polygonum capitatum Extract. Molecules (Basel, Switzerland). 2019 Oct; 24(21):. doi: 10.3390/molecules24213873. [PMID: 31717895]
  • Andrezza S Ramos, Josiana M Mar, Laiane S da Silva, Leonard D R Acho, Bárbara Janaína P Silva, Emerson S Lima, Pedro H Campelo, Edgar A Sanches, Jaqueline A Bezerra, Francisco Célio M Chaves, Francinete R Campos, Marcos B Machado. Pedra-ume caá fruit: An Amazon cherry rich in phenolic compounds with antiglycant and antioxidant properties. Food research international (Ottawa, Ont.). 2019 09; 123(?):674-683. doi: 10.1016/j.foodres.2019.05.042. [PMID: 31285017]
  • Marina Santos, Renée H Fortunato, Viviana G Spotorno. Analysis of flavonoid glycosides with potential medicinal properties on Bauhinia uruguayensis and Bauhinia forficata subspecies pruinosa. Natural product research. 2019 Sep; 33(17):2574-2578. doi: 10.1080/14786419.2018.1460826. [PMID: 29620448]
  • Anca Toiu, Laurian Vlase, Dan Cristian Vodnar, Ana-Maria Gheldiu, Ilioara Oniga. Solidago graminifolia L. Salisb. (Asteraceae) as a Valuable Source of Bioactive Polyphenols: HPLC Profile, In Vitro Antioxidant and Antimicrobial Potential. Molecules (Basel, Switzerland). 2019 Jul; 24(14):. doi: 10.3390/molecules24142666. [PMID: 31340530]
  • 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]
  • Satoshi Endo, Namiki Miyagi, Toshiyuki Matsunaga, Akira Ikari. Rabbit dehydrogenase/reductase SDR family member 11 (DHRS11): Its identity with acetohexamide reductase with broad substrate specificity and inhibitor sensitivity, different from human DHRS11. Chemico-biological interactions. 2019 May; 305(?):12-20. doi: 10.1016/j.cbi.2019.03.026. [PMID: 30926317]
  • Yunus Dönder, Türkmen B Arikan, Mehmet Baykan, Muhammet Akyüz, A Bahadır Öz. Effects of quercitrin on bacterial translocation in a rat model of experimental colitis. Asian journal of surgery. 2018 Nov; 41(6):543-550. doi: 10.1016/j.asjsur.2017.12.002. [PMID: 29371051]
  • Pietro G Signorile, Rosa Viceconte, Alfonso Baldi. Novel dietary supplement association reduces symptoms in endometriosis patients. Journal of cellular physiology. 2018 08; 233(8):5920-5925. doi: 10.1002/jcp.26401. [PMID: 29243819]
  • Zhaochen Wu, Wei Wang, Fengyuan He, Dengwu Li, Dongmei Wang. Simultaneous Enrichment and Separation of Four Flavonoids from Zanthoxylum bungeanum Leaves by Ultrasound-Assisted Extraction and Macroporous Resins with Evaluation of Antioxidant Activities. Journal of food science. 2018 Aug; 83(8):2109-2118. doi: 10.1111/1750-3841.14282. [PMID: 30080245]
  • 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]
  • Robert Lotha, Niranjana Sri Sundaramoorthy, Bhanuvalli R Shamprasad, Saisubramanian Nagarajan, Aravind Sivasubramanian. Plant nutraceuticals (Quercetrin and Afzelin) capped silver nanoparticles exert potent antibiofilm effect against food borne pathogen Salmonella enterica serovar Typhi and curtail planktonic growth in zebrafish infection model. Microbial pathogenesis. 2018 Jul; 120(?):109-118. doi: 10.1016/j.micpath.2018.04.044. [PMID: 29715535]
  • Sławomir Dresler, Jozef Kováčik, Maciej Strzemski, Ireneusz Sowa, Magdalena Wójciak-Kosior. Methodological aspects of biologically active compounds quantification in the genus Hypericum. Journal of pharmaceutical and biomedical analysis. 2018 Jun; 155(?):82-90. doi: 10.1016/j.jpba.2018.03.048. [PMID: 29621655]
  • Ana Paula Beber, Priscila de Souza, Thaise Boeing, Lincon Bordignon Somensi, Luísa Nathália Bolda Mariano, Benhur Judah Cury, Ligia Moura Burci, Cristiane Bezerra da Silva, Euclésio Simionatto, Sérgio Faloni de Andrade, Luísa Mota da Silva. Constituents of leaves from Bauhinia curvula Benth. exert gastroprotective activity in rodents: role of quercitrin and kaempferol. Inflammopharmacology. 2018 Apr; 26(2):539-550. doi: 10.1007/s10787-017-0313-8. [PMID: 28176198]
  • Desirée Magalhães Dos Santos, Camila Valesca Jardim Rocha, Elita Ferreira da Silveira, Marcelo Augusto Germani Marinho, Marisa Raquel Rodrigues, Nichole Osti Silva, Ailton da Silva Ferreira, Neusa Fernandes de Moura, Gabriel Jorge Sagrera Darelli, Elizandra Braganhol, Ana Paula Horn, Vânia Rodrigues de Lima. In Vitro Anti/Pro-oxidant Activities of R. ferruginea Extract and Its Effect on Glioma Cell Viability: Correlation with Phenolic Compound Content and Effects on Membrane Dynamics. The Journal of membrane biology. 2018 04; 251(2):247-261. doi: 10.1007/s00232-018-0017-z. [PMID: 29417170]
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