NCBI Taxonomy: 98711

Pittocaulon (ncbi_taxid: 98711)

found 104 associated metabolites at genus taxonomy rank level.

Ancestor: Tussilagininae

Child Taxonomies: Pittocaulon filare, Pittocaulon praecox, Pittocaulon velatum, Pittocaulon bombycophole

Naringenin

4H-1-Benzopyran-4-one, 2,3-dihydro-5,7-dihydroxy-2-(4-hydroxyphenyl)-, (2S)-

C15H12O5 (272.0685)


Naringenin is a flavorless, colorless flavanone, a type of flavonoid. It is the predominant flavanone in grapefruit, and is found in a variety of fruits and herbs. Naringenin has the skeleton structure of a flavanone with three hydroxy groups at the 4, 5, and 7 carbons. It may be found both in the aglycol form, naringenin, or in its glycosidic form, naringin, which has the addition of the disaccharide neohesperidose attached via a glycosidic linkage at carbon 7. Naringenin (not to be confused with naringin) is a flavanone that is considered to have a bioactive effect on human health as antioxidant, free radical scavenger, antiinflammatory, carbohydrate metabolism promoter, immunity system modulater. This substance has also been shown to repair DNA. Scientists exposed cells to 80 micomoles of naringenin per liter, for 24 hours, and found that the amount of hydroxyl damage to the DNA was reduced by 24 percent in that very short period of time. Unfortunately, this bioflavonoid is difficult to absorb on oral ingestion. Only 15\\\\\\\% of ingested naringenin will get absorbed, in the human gastrointestinal tract, in the best case scenario. A full glass of orange juice will supply about enough naringenin to achieve a concentration of about 0.5 micromoles per liter. Naringenin is a biomarker for the consumption of citrus fruits. (S)-naringenin is the (S)-enantiomer of naringenin. It has a role as an expectorant and a plant metabolite. It is a naringenin and a (2S)-flavan-4-one. It is a conjugate acid of a (S)-naringenin(1-). It is an enantiomer of a (R)-naringenin. Naringenin is a natural product found in Elaeodendron croceum, Garcinia multiflora, and other organisms with data available. See also: Naringin (related). Most widely distributed flavanone. Citrus fruits (grapefruit, oranges and pummelos) are especially good sources. Glycosides also widely distributed The (S)-enantiomer of naringenin. [Raw Data] CB070_Naringenin_pos_20eV_CB000030.txt [Raw Data] CB070_Naringenin_pos_10eV_CB000030.txt [Raw Data] CB070_Naringenin_pos_40eV_CB000030.txt [Raw Data] CB070_Naringenin_pos_30eV_CB000030.txt [Raw Data] CB070_Naringenin_pos_50eV_CB000030.txt [Raw Data] CB070_Naringenin_neg_10eV_000021.txt [Raw Data] CB070_Naringenin_neg_30eV_000021.txt [Raw Data] CB070_Naringenin_neg_50eV_000021.txt [Raw Data] CB070_Naringenin_neg_20eV_000021.txt [Raw Data] CB070_Naringenin_neg_40eV_000021.txt (±)-Naringenin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=67604-48-2 (retrieved 2024-07-09) (CAS RN: 67604-48-2). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity.

   

Rutin

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-(((2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-((((2R,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyltetrahydro-2H-pyran-2-yl)oxy)methyl)tetrahydro-2H-pyran-2-yl)oxy)-4H-chromen-4-one;Rutin

C27H30O16 (610.1534)


Rutin is a flavonoid known to have a variety of biological activities including antiallergic, anti-inflammatory, antiproliferative, and anticarcinogenic properties. A large number of flavonoids, mostly O-glycosides, are polyphenolic compounds of natural origin that are present in most fruits and vegetables. The average intake of the compounds by humans on a normal diet is more than 1 g per day. Although flavonoids are devoid of classical nutritional value, they are increasingly viewed as beneficial dietary components that act as potential protectors against human diseases such as coronary heart disease, cancers, and inflammatory bowel disease. Rutin acts as a quercetin deliverer to the large intestine; moreover, quercetin is extensively metabolized in the large intestine, which suggests that quercetin liberated from rutin and/or its colonic metabolites may play a role. Rutins anti-inflammatory actions are mediated through a molecular mechanism that underlies the quercetin-mediated therapeutic effects: quercetin-mediated inhibition of tumor necrosis factor-alpha (TNF-alpha)-induced nuclear factor kappa B (NFkB) activation. TNF-alpha-induced NFkB activity plays a central role in the production of pro-inflammatory mediators involved in progression of gut inflammation. (PMID:16132362). Rutin is a rutinoside that is quercetin with the hydroxy group at position C-3 substituted with glucose and rhamnose sugar groups. It has a role as a metabolite and an antioxidant. It is a disaccharide derivative, a quercetin O-glucoside, a tetrahydroxyflavone and a rutinoside. A flavonol glycoside found in many plants, including buckwheat; tobacco; forsythia; hydrangea; viola, etc. It has been used therapeutically to decrease capillary fragility. Rutin is a natural product found in Ficus virens, Visnea mocanera, and other organisms with data available. A flavonol glycoside found in many plants, including BUCKWHEAT; TOBACCO; FORSYTHIA; HYDRANGEA; VIOLA, etc. It has been used therapeutically to decrease capillary fragility. See also: Quercetin (related); Ginkgo (part of); Chamomile (part of) ... View More ... First isolated from Ruta graveolens (rue). Bioflavanoid. Quercetin 3-rutinoside is found in many foods, some of which are tea, bilberry, common oregano, and lemon grass. A rutinoside that is quercetin with the hydroxy group at position C-3 substituted with glucose and rhamnose sugar groups. C - Cardiovascular system > C05 - Vasoprotectives > C05C - Capillary stabilizing agents > C05CA - Bioflavonoids IPB_RECORD: 541; CONFIDENCE confident structure [Raw Data] CBA04_Rutin_neg_50eV.txt [Raw Data] CBA04_Rutin_pos_50eV.txt [Raw Data] CBA04_Rutin_neg_40eV.txt [Raw Data] CBA04_Rutin_pos_10eV.txt [Raw Data] CBA04_Rutin_neg_20eV.txt [Raw Data] CBA04_Rutin_neg_10eV.txt [Raw Data] CBA04_Rutin_neg_30eV.txt [Raw Data] CBA04_Rutin_pos_40eV.txt [Raw Data] CBA04_Rutin_pos_30eV.txt [Raw Data] CBA04_Rutin_pos_20eV.txt Rutin (Rutoside) is a flavonoid found in many plants and shows a wide range of biological activities including anti-inflammatory, antidiabetic, antioxidant, neuroprotective, nephroprotective, hepatoprotective and reducing Aβ oligomer activities. Rutin can cross the blood brain barrier. Rutin attenuates vancomycin-induced renal tubular cell apoptosis via suppression of apoptosis, mitochondrial dysfunction, and oxidative stress[1][2][3]. Rutin (Rutoside) is a flavonoid found in many plants and shows a wide range of biological activities including anti-inflammatory, antidiabetic, antioxidant, neuroprotective, nephroprotective, hepatoprotective and reducing Aβ oligomer activities. Rutin can cross the blood brain barrier. Rutin attenuates vancomycin-induced renal tubular cell apoptosis via suppression of apoptosis, mitochondrial dysfunction, and oxidative stress[1][2][3].

   

Kaempferol

3,5,7-trihydroxy-2-(4-hydroxyphenyl)-4H-chromen-4-one

C15H10O6 (286.0477)


Kaempferol is a tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Acting as an antioxidant by reducing oxidative stress, it is currently under consideration as a possible cancer treatment. It has a role as an antibacterial agent, a plant metabolite, a human xenobiotic metabolite, a human urinary metabolite, a human blood serum metabolite and a geroprotector. It is a member of flavonols, a 7-hydroxyflavonol and a tetrahydroxyflavone. It is a conjugate acid of a kaempferol oxoanion. Kaempferol is a natural product found in Lotus ucrainicus, Visnea mocanera, and other organisms with data available. Kaempferol is a natural flavonoid which has been isolated from Delphinium, Witch-hazel, grapefruit, and other plant sources. Kaempferol is a yellow crystalline solid with a melting point of 276-278 degree centigrade. It is slightly soluble in water, and well soluble in hot ethanol and diethyl ether. Kaempferol is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Cannabis sativa subsp. indica top (part of); Tussilago farfara flower (part of). Kaempferol, also known as rhamnolutein or c.i. 75640, belongs to the class of organic compounds known as flavonols. Flavonols are compounds that contain a flavone (2-phenyl-1-benzopyran-4-one) backbone carrying a hydroxyl group at the 3-position. Thus, kaempferol is considered to be a flavonoid molecule. A tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Kaempferol is a very hydrophobic molecule, practically insoluble in water, and relatively neutral. Kaempferol exists in all eukaryotes, ranging from yeast to humans. Kaempferol is a bitter tasting compound. Kaempferol is found, on average, in the highest concentration within a few different foods, such as saffrons, capers, and cumins and in a lower concentration in lovages, endives, and cloves. Kaempferol has also been detected, but not quantified, in several different foods, such as shallots, pine nuts, feijoa, kombus, and chicory leaves. This could make kaempferol a potential biomarker for the consumption of these foods. Kaempferol is a potentially toxic compound. Very widespread in the plant world, e.g. in Brassicaceae, Apocynaceae, Dilleniaceae, Ranunculaceae, Leguminosae, etc. Found especies in broccoli, capers, chives, kale, garden cress, fennel, lovage, dill weed and tarragon [CCD] A tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Acting as an antioxidant by reducing oxidative stress, it is currently under consideration as a possible cancer treatment. CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3906; ORIGINAL_PRECURSOR_SCAN_NO 3905 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3916; ORIGINAL_PRECURSOR_SCAN_NO 3915 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3928; ORIGINAL_PRECURSOR_SCAN_NO 3927 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX508; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4291; ORIGINAL_PRECURSOR_SCAN_NO 4290 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3918; ORIGINAL_PRECURSOR_SCAN_NO 3917 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3915; ORIGINAL_PRECURSOR_SCAN_NO 3914 Acquisition and generation of the data is financially supported in part by CREST/JST. INTERNAL_ID 2358; CONFIDENCE Reference Standard (Level 1) CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 2358 CONFIDENCE standard compound; INTERNAL_ID 47 CONFIDENCE standard compound; ML_ID 45 Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4]. Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4].

   

(+)-taxifolin

(2R,3R)-2-(3,4-dihydroxyphenyl)-3,5,7-trihydroxy-3,4-dihydro-2H-1-benzopyran-4-one

C15H12O7 (304.0583)


Taxifolin, also known as dihydroquercetin or (+)-taxifolin, is a member of the class of compounds known as flavanonols. Flavanonols are compounds containing a flavan-3-one moiety, with a structure characterized by a 2-phenyl-3,4-dihydro-2H-1-benzopyran bearing a hydroxyl group and a ketone at the carbon C2 and C3, respectively. Taxifolin is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Taxifolin can be found in a number of food items such as sweet rowanberry, arrowroot, evening primrose, and walnut, which makes taxifolin a potential biomarker for the consumption of these food products. Taxifolin is a flavanonol, a type of flavonoid . D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2]. Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2].

   

Senecionine

(1,6)Dioxacyclododecino(2,3,4-gh)pyrrolizine-2,7-dione, 3-ethylidene-3,4,5,6,9,11,13,14,14a,14b-decahydro-6-hydroxy-5,6-dimethyl-, (3Z,5R,6R,14aR,14bR)-

C18H25NO5 (335.1733)


Senecionine is a pyrrolizidine alkaloid isolated from the plant species of the genus Senecio. It has a role as a plant metabolite. It is a lactone, a pyrrolizidine alkaloid and a tertiary alcohol. It is functionally related to a senecionan. It is a conjugate base of a senecionine(1+). Senecionine is a natural product found in Dorobaea pimpinellifolia, Crotalaria micans, and other organisms with data available. Senecionine is an organic compound with the chemical formula C18H25NO5. It is classified as a pyrrolizidine alkaloid. See also: Petasites hybridus root (part of); Tussilago farfara flower (part of); Tussilago farfara leaf (part of). A pyrrolizidine alkaloid isolated from the plant species of the genus Senecio. D000970 - Antineoplastic Agents Annotation level-1 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 2251 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 122 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 102 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 142 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 152 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 162 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 172 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 132 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 112 [Raw Data] CB082a_Senecionine_pos_40eV_CB000034.txt [Raw Data] CB082a_Senecionine_pos_10eV_CB000034.txt [Raw Data] CB082a_Senecionine_pos_30eV_CB000034.txt [Raw Data] CB082a_Senecionine_pos_20eV_CB000034.txt [Raw Data] CB082a_Senecionine_pos_50eV_CB000034.txt Senecionine (Senecionan-11,16-dione, 12-hydroxy-) is a pyrrolizidine alkaloid could be isolated from Senecio vulgaris. Senecionine decreases the activities of glutathione S-transferase, aminopyrine demethylase and arylhydrocarbon hydroxylase (AHH)[1][2][3]. Senecionine (Senecionan-11,16-dione, 12-hydroxy-) is a pyrrolizidine alkaloid could be isolated from Senecio vulgaris. Senecionine decreases the activities of glutathione S-transferase, aminopyrine demethylase and arylhydrocarbon hydroxylase (AHH)[1][2][3].

   

Aromadendrin

4H-1-Benzopyran-4-one, 2,3-dihydro-3,5,7-trihydroxy-2-(4-hydroxyphenyl)-, (2R-trans)-

C15H12O6 (288.0634)


(+)-dihydrokaempferol is a tetrahydroxyflavanone having hydroxy groupa at the 3-, 4-, 5- and 7-positions. It has a role as a metabolite. It is a tetrahydroxyflavanone, a member of dihydroflavonols, a secondary alpha-hydroxy ketone and a member of 4-hydroxyflavanones. It is functionally related to a kaempferol. It is a conjugate acid of a (+)-dihydrokaempferol 7-oxoanion. Aromadendrin is a natural product found in Smilax corbularia, Ventilago leiocarpa, and other organisms with data available. See also: Acai fruit pulp (part of). Isolated from Citrus subspecies and many other plants. Aromadendrin is found in many foods, some of which are thistle, coriander, adzuki bean, and almond. Aromadendrin is found in citrus. Aromadendrin is isolated from Citrus species and many other plant A tetrahydroxyflavanone having hydroxy groupa at the 3-, 4-, 5- and 7-positions. Dihydrokaempferol is isolated from Bauhinia championii (Benth). Dihydrokaempferol induces apoptosis and inhibits Bcl-2 and Bcl-xL expression. Dihydrokaempferol is a good candidate for new antiarthritic agents[1]. Dihydrokaempferol. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=480-20-6 (retrieved 2024-09-18) (CAS RN: 480-20-6). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

   

Ligularinine

Platyphylline

C18H27NO5 (337.1889)


   

Senkirkin

Senkirkine

C19H27NO6 (365.1838)


CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 178 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 168 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 158 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 148 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 138 INTERNAL_ID 138; CONFIDENCE Reference Standard (Level 1) CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 128 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 118 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 108 INTERNAL_ID 2283; CONFIDENCE Reference Standard (Level 1) CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 2283

   

Rivularine

Retronecine 7-(2-methylcrotonate)

C13H19NO3 (237.1365)


   

Petasitenine

(1R,3R,4R,6R,7R,11Z)-7-hydroxy-3,6,7,14-tetramethyl-2,9-dioxa-14-azaspiro[bicyclo[9.5.1]heptadecane-4,2-oxiran]-11-ene-3,8,17-trione

C19H27NO7 (381.1787)


Alkaloid from Petasites japonicus (sweet coltsfoot). Petasitenine is found in giant butterbur and green vegetables. Petasitenine is found in giant butterbur. Petasitenine is an alkaloid from Petasites japonicus (sweet coltsfoot

   

Taxifolin

4H-1-Benzopyran-4-one, 2-(3,4-dihydroxyphenyl)-2,3-dihydro-3,5,7-trihydroxy-, trans-(+/-)-

C15H12O7 (304.0583)


(+)-taxifolin is a taxifolin that has (2R,3R)-configuration. It has a role as a metabolite. It is a conjugate acid of a (+)-taxifolin(1-). It is an enantiomer of a (-)-taxifolin. Taxifolin is a natural product found in Austrocedrus chilensis, Smilax corbularia, and other organisms with data available. See also: Milk Thistle (part of); Maritime Pine (part of). D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics A taxifolin that has (2R,3R)-configuration. D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2]. Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2].

   

Naringenin

5,7-dihydroxy-2-(4-hydroxyphenyl)-3,4-dihydro-2H-1-benzopyran-4-one

C15H12O5 (272.0685)


Naringenin is a trihydroxyflavanone that is flavanone substituted by hydroxy groups at positions 5, 6 and 4. It is a trihydroxyflavanone and a member of 4-hydroxyflavanones. 5,7-Dihydroxy-2-(4-hydroxyphenyl)chroman-4-one is a natural product found in Prunus mume, Helichrysum cephaloideum, and other organisms with data available. D006730 - Hormones, Hormone Substitutes, and Hormone Antagonists > D006727 - Hormone Antagonists > D004965 - Estrogen Antagonists A trihydroxyflavanone that is flavanone substituted by hydroxy groups at positions 5, 6 and 4. D005765 - Gastrointestinal Agents > D000897 - Anti-Ulcer Agents (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity.

   

Taxifolin

dihydroquercetin

C15H12O7 (304.0583)


D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2]. Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2].

   

(2R)-2-(3,4-Dihydroxyphenyl)-3,5,7-trihydroxy-2,3-dihydrochromen-4-one

2-(3,4-dihydroxyphenyl)-3,5,7-trihydroxy-3,4-dihydro-2H-1-benzopyran-4-one

C15H12O7 (304.0583)


Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2]. Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2].

   

Integerrimine

4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

C18H25NO5 (335.1733)


   

Naringenin

(2S) -2,3-Dihydro-5,7-dihydroxy-2- (4-hydroxyphenyl) -4H-1-benzopyran-4-one

C15H12O5 (272.0685)


Annotation level-1 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.904 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.906 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.901 CONFIDENCE standard compound; ML_ID 50 (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity.

   

Swartziol

4H-1-Benzopyran-4-one, 3,5,7-trihydroxy-2-(4-hydroxyphenyl)-5,7,4-Trihydroxyflavonol

C15H10O6 (286.0477)


Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4]. Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4].

   

Kaempferol

Kaempferol

C15H10O6 (286.0477)


Annotation level-3 Annotation level-1 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.010 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.011 Acquisition and generation of the data is financially supported by the Max-Planck-Society IPB_RECORD: 2141; CONFIDENCE confident structure IPB_RECORD: 3341; CONFIDENCE confident structure IPB_RECORD: 3321; CONFIDENCE confident structure CONFIDENCE confident structure; IPB_RECORD: 3321 IPB_RECORD: 141; CONFIDENCE confident structure Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4]. Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4].

   

epi-velatumolide

epi-velatumolide

C15H20O4 (264.1362)


A natural product found in Pittocaulon velatum.

   

velatumin

velatumin

C15H20O5 (280.1311)


A natural product found in Pittocaulon velatum.

   

Renardin

2,9-DIOXA-14-AZABICYCLO(9.5.1)HEPTADEC-11-ENE-3,8,17-TRIONE, 4-ETHYLIDENE-7-HYDROXY-6,7,14-TRIMETHYL-, (1R,4Z,6R,7R)-

C19H27NO6 (365.1838)


Senkirkine is a macrolide. Senkirkine is a natural product found in Tussilago farfara, Senecio gallicus, and other organisms with data available. See also: Petasites hybridus root (part of); Tussilago farfara flower (part of); Tussilago farfara leaf (part of).

   

Taxifolin

(2R,3R)-2-(3,4-dihydroxyphenyl)-2,3-dihydro-3,5,7-trihydroxy-4H-1-benzopyran-4-one

C15H12O7 (304.0583)


A pentahydroxyflavanone that is the 2,3-dihydro derivative of quercetin. D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents Origin: Plant; Formula(Parent): C15H12O7; Bottle Name:(+-)-Taxifolin; PRIME Parent Name:Dihydroquercetin; PRIME in-house No.:S0088, Pyrans relative retention time with respect to 9-anthracene Carboxylic Acid is 0.594 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.596 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.590 Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2]. Taxifolin ((+)-Dihydroquercetin) exhibits important anti-tyrosinase activity. Taxifolin exhibits significant inhibitory activity against collagenase with an IC50 value of 193.3 μM[1]. Taxifolin is an important natural compound with antifibrotic activity. Taxifolin is a free radical scavenger with antioxidant capacity[2].

   
   

Asahina

4H-1-Benzopyran-4-one, 2,3-dihydro-5,7-dihydroxy-2-(4-hydroxyphenyl)-, (2S)-

C15H12O5 (272.0685)


D006730 - Hormones, Hormone Substitutes, and Hormone Antagonists > D006727 - Hormone Antagonists > D004965 - Estrogen Antagonists D005765 - Gastrointestinal Agents > D000897 - Anti-Ulcer Agents (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. (±)-Naringenin is a naturally-occurring flavonoid. (±)-Naringenin displays vasorelaxant effect on endothelium-denuded vessels via the activation of BKCa channels in myocytes[1]. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity. Naringenin is the predominant flavanone in Citrus reticulata Blanco; displays strong anti-inflammatory and antioxidant activities. Naringenin has anti-dengue virus (DENV) activity.

   

(1aR,4S,4aS,5S,9aS)-4,4a,6-Trimethyl-9-oxo-2,3,4,4a,5,9-hexahydro-1aH-oxireno[8,8a]naphtho[2,3-b]furan-5-yl 2-methylpropanoate

(1aR,4S,4aS,5S,9aS)-4,4a,6-Trimethyl-9-oxo-2,3,4,4a,5,9-hexahydro-1aH-oxireno[8,8a]naphtho[2,3-b]furan-5-yl 2-methylpropanoate

C19H24O5 (332.1624)


A natural product found in Pittocaulon velatum.

   

Velatumolide, (rel)-

Velatumolide, (rel)-

C15H20O4 (264.1362)


A natural product found in Pittocaulon velatum.

   
   

Vitamin P

Quercetin 3-O-rutinoside

C27H30O16 (610.1534)


   

6-hydroxy-4a,5-dimethyl-3-(1-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl)-3,4,5,6,7,8-hexahydronaphthalen-2-one

6-hydroxy-4a,5-dimethyl-3-(1-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl)-3,4,5,6,7,8-hexahydronaphthalen-2-one

C21H32O8 (412.2097)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (2z)-2-methylbut-2-enoate

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (2z)-2-methylbut-2-enoate

C20H26O4 (330.1831)


   

(1s,3r,8s,9s,10r,11s,13r)-11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylpropanoate

(1s,3r,8s,9s,10r,11s,13r)-11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylpropanoate

C21H28O8 (408.1784)


   

4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

7-(hydroxymethyl)-2,3,5,7a-tetrahydro-1h-pyrrolizin-1-yl 2-methylbut-2-enoate

7-(hydroxymethyl)-2,3,5,7a-tetrahydro-1h-pyrrolizin-1-yl 2-methylbut-2-enoate

C13H19NO3 (237.1365)


   

7-hydroxy-3',6,7,14-tetramethyl-2,9-dioxa-14-azaspiro[bicyclo[9.5.1]heptadecane-4,2'-oxiran]-11-ene-3,8,17-trione

7-hydroxy-3',6,7,14-tetramethyl-2,9-dioxa-14-azaspiro[bicyclo[9.5.1]heptadecane-4,2'-oxiran]-11-ene-3,8,17-trione

C19H27NO7 (381.1787)


   

(1s,4z,6r,7s,11r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

(1s,4z,6r,7s,11r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

C18H27NO5 (337.1889)


   

(1r,4e,6r,7r,11s,17r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

(1r,4e,6r,7r,11s,17r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

C18H27NO5 (337.1889)


   

(1s,3s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

(1s,3s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

C33H48O10 (604.3247)


   

1-[1-(acetyloxy)ethyl]-6-[(2-methylbutanoyl)oxy]-4-methylidene-7-(2-methyloxiran-2-yl)-2-oxo-hexahydro-1h-inden-5-yl 3-methylpent-2-enoate

1-[1-(acetyloxy)ethyl]-6-[(2-methylbutanoyl)oxy]-4-methylidene-7-(2-methyloxiran-2-yl)-2-oxo-hexahydro-1h-inden-5-yl 3-methylpent-2-enoate

C28H40O8 (504.2723)


   

(1r,4z,6s,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4z,6s,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(4e)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

(4e)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

C18H25NO5 (335.1733)


   

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbutanoate

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbutanoate

C20H28O4 (332.1987)


   

6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylbut-2-enoate

6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylbut-2-enoate

C20H26O4 (330.1831)


   

7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl 2-methylbut-2-enoate

7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl 2-methylbut-2-enoate

C13H21NO3 (239.1521)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-4-(2-methylpropoxy)-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-9-one

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-4-(2-methylpropoxy)-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-9-one

C19H28O3 (304.2038)


   

(4ar,5r,6r,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbutanoate

(4ar,5r,6r,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbutanoate

C20H28O4 (332.1987)


   

6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylbut-2-enoate

6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylbut-2-enoate

C20H24O5 (344.1624)


   

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbutanoate

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbutanoate

C20H28O4 (332.1987)


   

4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbut-2-enoate

4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbut-2-enoate

C22H28O6 (388.1886)


   

(1s,4z,6s,7s)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1s,4z,6s,7s)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(1s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-6-{[(2s)-2-methylbutanoyl]oxy}-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

(1s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-6-{[(2s)-2-methylbutanoyl]oxy}-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

C28H40O8 (504.2723)


   

[(1r,7r,7ar)-7-hydroxy-hexahydro-1h-pyrrolizin-1-yl]methyl (2z)-2-methylbut-2-enoate

[(1r,7r,7ar)-7-hydroxy-hexahydro-1h-pyrrolizin-1-yl]methyl (2z)-2-methylbut-2-enoate

C13H21NO3 (239.1521)


   

4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylpentanoate

4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylpentanoate

C23H32O6 (404.2199)


   

(4z,11s)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

(4z,11s)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

C18H27NO5 (337.1889)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (2e)-3-methylpent-2-enoate

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (2e)-3-methylpent-2-enoate

C21H28O4 (344.1987)


   

4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

C19H27NO6 (365.1838)


   

(1s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-7-isopropyl-6-{[(2s)-2-methylbutanoyl]oxy}-4-methylidene-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

(1s,3ar,5s,6r,7s,7ar)-1-[(1r)-1-(acetyloxy)ethyl]-7-isopropyl-6-{[(2s)-2-methylbutanoyl]oxy}-4-methylidene-2-oxo-hexahydro-1h-inden-5-yl (2e)-3-methylpent-2-enoate

C28H42O7 (490.293)


   

(4ar,5r,6r,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl (3s)-3-methylpentanoate

(4ar,5r,6r,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl (3s)-3-methylpentanoate

C21H30O4 (346.2144)


   

6-hydroxy-4a,5-dimethyl-3-(1-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}propan-2-ylidene)-5,6,7,8-tetrahydro-4h-naphthalen-2-one

6-hydroxy-4a,5-dimethyl-3-(1-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}propan-2-ylidene)-5,6,7,8-tetrahydro-4h-naphthalen-2-one

C21H32O8 (412.2097)


   

(4s,4ar,5r,6r,8ar)-4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbut-2-enoate

(4s,4ar,5r,6r,8ar)-4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylbut-2-enoate

C22H28O6 (388.1886)


   

(4s,4ar,5r,6r,8ar)-4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl (3s)-3-methylpentanoate

(4s,4ar,5r,6r,8ar)-4-(acetyloxy)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl (3s)-3-methylpentanoate

C23H32O6 (404.2199)


   

(4ar,5r,6r,9ar)-6,9a-dihydroxy-3,4a,5-trimethyl-4h,5h,6h,7h,8h-naphtho[2,3-b]furan-2-one

(4ar,5r,6r,9ar)-6,9a-dihydroxy-3,4a,5-trimethyl-4h,5h,6h,7h,8h-naphtho[2,3-b]furan-2-one

C15H20O4 (264.1362)


   

(3s,4ar,5s)-4a,5-dimethyl-3-(1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl)-3,4,5,6,7,8-hexahydronaphthalen-2-one

(3s,4ar,5s)-4a,5-dimethyl-3-(1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl)-3,4,5,6,7,8-hexahydronaphthalen-2-one

C21H32O7 (396.2148)


   

(1r,4z,6r,7r,11s,17r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

(1r,4z,6r,7r,11s,17r)-4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

C18H27NO5 (337.1889)


   

6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

C19H26O4 (318.1831)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbut-2-enoate

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbut-2-enoate

C20H26O4 (330.1831)


   

(1r,4e,6s,7r,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4e,6s,7r,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(3s,3ar,5s,6r,7s,7ar)-1-ethylidene-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydroinden-5-yl (2e)-3-methylpent-2-enoate

(3s,3ar,5s,6r,7s,7ar)-1-ethylidene-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydroinden-5-yl (2e)-3-methylpent-2-enoate

C31H44O8 (544.3036)


   

(1r,7r,7ar)-7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl (2z)-2-methylbut-2-enoate

(1r,7r,7ar)-7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl (2z)-2-methylbut-2-enoate

C13H21NO3 (239.1521)


   

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

C19H26O4 (318.1831)


   

3,4a,5-trimethyl-4h,5h,6h,7h,8h,9h-naphtho[2,3-b]furan-4,8,8a-triol

3,4a,5-trimethyl-4h,5h,6h,7h,8h,9h-naphtho[2,3-b]furan-4,8,8a-triol

C15H22O4 (266.1518)


   

6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

C19H24O5 (332.1624)


   

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl 2-methylpropanoate

C19H24O5 (332.1624)


   

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl (2z)-2-methylbut-2-enoate

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-2-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl (2z)-2-methylbut-2-enoate

C20H24O5 (344.1624)


   

11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylbut-2-enoate

11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylbut-2-enoate

C22H28O8 (420.1784)


   

11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylpropanoate

11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl 2-methylpropanoate

C21H28O8 (408.1784)


   

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylpentanoate

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-6-yl 3-methylpentanoate

C21H30O4 (346.2144)


   

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl (2z)-2-methylbut-2-enoate

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-8-yl (2z)-2-methylbut-2-enoate

C20H26O4 (330.1831)


   

(1z,3s,3ar,5s,6r,7s,7ar)-1-ethylidene-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydroinden-5-yl (2e)-3-methylpent-2-enoate

(1z,3s,3ar,5s,6r,7s,7ar)-1-ethylidene-3,6-bis({[(2s)-2-methylbutanoyl]oxy})-4-methylidene-7-[(2s)-2-methyloxiran-2-yl]-2-oxo-hexahydroinden-5-yl (2e)-3-methylpent-2-enoate

C31H44O8 (544.3036)


   

(1r,4z,6r,7r,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4z,6r,7r,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(7-hydroxy-hexahydro-1h-pyrrolizin-1-yl)methyl 2-methylbut-2-enoate

(7-hydroxy-hexahydro-1h-pyrrolizin-1-yl)methyl 2-methylbut-2-enoate

C13H21NO3 (239.1521)


   

4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

4-ethylidene-7-hydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecane-3,8-dione

C18H27NO5 (337.1889)


   

(1s,3r,8s,9s,10r,11s,13r)-11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl (2z)-2-methylbut-2-enoate

(1s,3r,8s,9s,10r,11s,13r)-11-(acetyloxy)-3-hydroxy-6,9,10-trimethyl-5-oxo-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradec-6-en-8-yl (2z)-2-methylbut-2-enoate

C22H28O8 (420.1784)


   

(3s,4ar,5s)-4a,5-dimethyl-3-[(1e)-1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl]-3,4,5,6,7,8-hexahydronaphthalen-2-one

(3s,4ar,5s)-4a,5-dimethyl-3-[(1e)-1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl]-3,4,5,6,7,8-hexahydronaphthalen-2-one

C21H32O7 (396.2148)


   

(1r,3'r,4r,6r,7r)-7-hydroxy-3',6,7,14-tetramethyl-2,9-dioxa-14-azaspiro[bicyclo[9.5.1]heptadecane-4,2'-oxiran]-11-ene-3,8,17-trione

(1r,3'r,4r,6r,7r)-7-hydroxy-3',6,7,14-tetramethyl-2,9-dioxa-14-azaspiro[bicyclo[9.5.1]heptadecane-4,2'-oxiran]-11-ene-3,8,17-trione

C19H27NO7 (381.1787)


   

(1r,4z,6r,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4z,6r,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-8-(2-methylpropoxy)-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-2-one

(1s,8s,9s,10s,13r)-6,9,10-trimethyl-8-(2-methylpropoxy)-4,14-dioxatetracyclo[7.5.0.0¹,¹³.0³,⁷]tetradeca-3(7),5-dien-2-one

C19H26O4 (318.1831)


   

(1s,4e,6r,7r)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

(1s,4e,6r,7r)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

C19H27NO6 (365.1838)


   

[(1s,7s,7ar)-7-hydroxy-hexahydro-1h-pyrrolizin-1-yl]methyl (2z)-2-methylbut-2-enoate

[(1s,7s,7ar)-7-hydroxy-hexahydro-1h-pyrrolizin-1-yl]methyl (2z)-2-methylbut-2-enoate

C13H21NO3 (239.1521)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylpropanoate

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylpropanoate

C19H26O4 (318.1831)


   

(1r,4e,6r,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4e,6r,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(3s,4ar,5r,6r)-6-hydroxy-4a,5-dimethyl-3-[(1e)-1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl]-3,4,5,6,7,8-hexahydronaphthalen-2-one

(3s,4ar,5r,6r)-6-hydroxy-4a,5-dimethyl-3-[(1e)-1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}prop-1-en-2-yl]-3,4,5,6,7,8-hexahydronaphthalen-2-one

C21H32O8 (412.2097)


   

(1r,4e,6s,7r)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4e,6s,7r)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylbut-2-enoate

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylbut-2-enoate

C20H26O4 (330.1831)


   

(3z,4ar,5r,6r)-6-hydroxy-4a,5-dimethyl-3-(1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}propan-2-ylidene)-5,6,7,8-tetrahydro-4h-naphthalen-2-one

(3z,4ar,5r,6r)-6-hydroxy-4a,5-dimethyl-3-(1-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}propan-2-ylidene)-5,6,7,8-tetrahydro-4h-naphthalen-2-one

C21H32O8 (412.2097)


   

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylpropanoate

3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 2-methylpropanoate

C19H26O4 (318.1831)


   

(1r,4z,6r,7r)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

(1r,4z,6r,7r)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

C19H27NO6 (365.1838)


   

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbutanoate

(4s,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl 3-methylbutanoate

C20H28O4 (332.1987)


   

(1r,4e,6r,7r,11z)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

(1r,4e,6r,7r,11z)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

C19H27NO6 (365.1838)


   

(4r,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (3r)-3-methylpentanoate

(4r,4ar,5s,8ar)-3,4a,5-trimethyl-9-oxo-4h,5h,6h,7h,8h,8ah-naphtho[2,3-b]furan-4-yl (3r)-3-methylpentanoate

C21H30O4 (346.2144)


   

6,9a-dihydroxy-3,4a,5-trimethyl-4h,5h,6h,7h,8h-naphtho[2,3-b]furan-2-one

6,9a-dihydroxy-3,4a,5-trimethyl-4h,5h,6h,7h,8h-naphtho[2,3-b]furan-2-one

C15H20O4 (264.1362)


   

(1r,4z,6s,7s)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1r,4z,6s,7s)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(1s,4z,6s,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

(1s,4z,6s,7s,11z)-4-ethylidene-6,7,14-trimethyl-3,8,17-trioxo-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-en-7-yl acetate

C21H29NO7 (407.1944)


   

(1s,4e,6r,7r,11z)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

(1s,4e,6r,7r,11z)-4-ethylidene-7-hydroxy-6,7,14-trimethyl-2,9-dioxa-14-azabicyclo[9.5.1]heptadec-11-ene-3,8,17-trione

C19H27NO6 (365.1838)


   

(1s,7s,7ar)-7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl (2z)-2-methylbut-2-enoate

(1s,7s,7ar)-7-(hydroxymethyl)-hexahydro-1h-pyrrolizin-1-yl (2z)-2-methylbut-2-enoate

C13H21NO3 (239.1521)