NCBI Taxonomy: 23028

Sedum acre (ncbi_taxid: 23028)

found 247 associated metabolites at species taxonomy rank level.

Ancestor: Sedum

Child Taxonomies: none taxonomy data.

Isoquercitrin

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

C21H20O12 (464.09547200000003)


Quercetin 3-O-beta-D-glucopyranoside is a quercetin O-glucoside that is quercetin with a beta-D-glucosyl residue attached at position 3. Isolated from Lepisorus contortus, it exhibits antineoplastic activityand has been found to decrease the rate of polymerization and sickling of red blood cells It has a role as an antineoplastic agent, a plant metabolite, a bone density conservation agent, an osteogenesis regulator, an antioxidant, a histamine antagonist, an antipruritic drug and a geroprotector. It is a quercetin O-glucoside, a tetrahydroxyflavone, a beta-D-glucoside and a monosaccharide derivative. It is functionally related to a beta-D-glucose. It is a conjugate acid of a quercetin 3-O-beta-D-glucopyranoside(1-). Isoquercetin has been used in trials studying the treatment of Kidney Cancer, Renal cell carcinoma, Advanced Renal Cell Carcinoma, Thromboembolism of Vein in Pancreatic Cancer, and Thromboembolism of Vein VTE in Colorectal Cancer, among others. Isoquercitrin is a natural product found in Ficus auriculata, Lotus ucrainicus, and other organisms with data available. Isoquercetin is an orally bioavailable, glucoside derivative of the flavonoid quercetin and protein disulfide isomerase (PDI) inhibitor, with antioxidant and potential antithrombotic activity. As an antioxidant, isoquercetin scavenges free radicals and inhibits oxidative damage to cells. As a PDI inhibitor, this agent blocks PDI-mediated platelet activation, and fibrin generation, which prevents thrombus formation after vascular injury. In addition, isoquercetin is an alpha-glucosidase inhibitor. PDI, an oxidoreductase secreted by activated endothelial cells and platelets, plays a key role in the initiation of the coagulation cascade. Cancer, in addition to other thrombotic disorders, increases the risk of thrombus formation. Isoquercitrin is found in alcoholic beverages. Isoquercitrin occurs widely in plants. Isoquercitrin is present in red wine.Isoquercitin can be isolated from mangoes and from Rheum nobile, the Noble rhubarb or Sikkim rhubarb, a giant herbaceous plant native to the Himalaya. Quercetin glycosides are also present in tea. (Wikipedia A quercetin O-glucoside that is quercetin with a beta-D-glucosyl residue attached at position 3. Isolated from Lepisorus contortus, it exhibits antineoplastic activityand has been found to decrease the rate of polymerization and sickling of red blood cells [Raw Data] CB053_Isoquercitrin_pos_10eV_CB000025.txt [Raw Data] CB053_Isoquercitrin_pos_30eV_CB000025.txt [Raw Data] CB053_Isoquercitrin_pos_50eV_CB000025.txt [Raw Data] CB053_Isoquercitrin_pos_40eV_CB000025.txt [Raw Data] CB053_Isoquercitrin_pos_20eV_CB000025.txt [Raw Data] CB053_Isoquercitrin_neg_40eV_000017.txt [Raw Data] CB053_Isoquercitrin_neg_20eV_000017.txt [Raw Data] CB053_Isoquercitrin_neg_50eV_000017.txt [Raw Data] CB053_Isoquercitrin_neg_30eV_000017.txt [Raw Data] CB053_Isoquercitrin_neg_10eV_000017.txt Quercetin 3-glucoside. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=482-35-9 (retrieved 2024-07-09) (CAS RN: 482-35-9). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). 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.

   

Quercetin

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

C15H10O7 (302.042651)


Quercetin appears as yellow needles or yellow powder. Converts to anhydrous form at 203-207 °F. Alcoholic solutions taste very bitter. (NTP, 1992) Quercetin is a pentahydroxyflavone having the five hydroxy groups placed at the 3-, 3-, 4-, 5- and 7-positions. It is one of the most abundant flavonoids in edible vegetables, fruit and wine. It has a role as an antibacterial agent, an antioxidant, a protein kinase inhibitor, an antineoplastic agent, an EC 1.10.99.2 [ribosyldihydronicotinamide dehydrogenase (quinone)] inhibitor, a plant metabolite, a phytoestrogen, a radical scavenger, a chelator, an Aurora kinase inhibitor and a geroprotector. It is a pentahydroxyflavone and a 7-hydroxyflavonol. It is a conjugate acid of a quercetin-7-olate. Quercetin is a flavonol widely distributed in plants. It is an antioxidant, like many other phenolic heterocyclic compounds. Glycosylated forms include RUTIN and quercetrin. Quercetin is a metabolite found in or produced by Escherichia coli (strain K12, MG1655). Quercetin is a flavonoid found in many foods and herbs and is a regular component of a normal diet. Extracts of quercetin have been used to treat or prevent diverse conditions including cardiovascular disease, hypercholesterolemia, rheumatic diseases, infections and cancer but have not been shown to be effective in clinical trials for any medical condition. Quercetin as a nutritional supplement is well tolerated and has not been linked to serum enzyme elevations or to episodes of clinically apparent liver injury. Quercetin is a natural product found in Lotus ucrainicus, Visnea mocanera, and other organisms with data available. Quercetin is a polyphenolic flavonoid with potential chemopreventive activity. Quercetin, ubiquitous in plant food sources and a major bioflavonoid in the human diet, may produce antiproliferative effects resulting from the modulation of either EGFR or estrogen-receptor mediated signal transduction pathways. Although the mechanism of action of action is not fully known, the following effects have been described with this agent in vitro: decreased expression of mutant p53 protein and p21-ras oncogene, induction of cell cycle arrest at the G1 phase and inhibition of heat shock protein synthesis. This compound also demonstrates synergy and reversal of the multidrug resistance phenotype, when combined with chemotherapeutic drugs, in vitro. Quercetin also produces anti-inflammatory and anti-allergy effects mediated through the inhibition of the lipoxygenase and cyclooxygenase pathways, thereby preventing the production of pro-inflammatory mediators. Quercetin is a flavonoid widely distributed in many plants and fruits including red grapes, citrus fruit, tomato, broccoli and other leafy green vegetables, and a number of berries, including raspberries and cranberries. Quercetin itself (aglycone quercetin), as opposed to quercetin glycosides, is not a normal dietary component. Quercitin glycosides are converted to phenolic acids as they pass through the gastrointestinal tract. Quercetin has neither been confirmed scientifically as a specific therapeutic for any condition nor been approved by any regulatory agency. The U.S. Food and Drug Administration has not approved any health claims for quercetin. Nevertheless, the interest in dietary flavonoids has grown after the publication of several epidemiological studies showing an inverse correlation between dietary consumption of flavonols and flavones and reduced incidence and mortality from cardiovascular disease and cancer. In recent years, a large amount of experimental and some clinical data have accumulated regarding the effects of flavonoids on the endothelium under physiological and pathological conditions. The meta-analysis of seven prospective cohort studies concluded that the individuals in the top third of dietary flavonol intake are associated with a reduced risk of mortality from coronary heart disease as compared with those in the bottom third, after adju... Quercetin is a flavonoid widely distributed in many plants and fruits including red grapes, citrus fruit, tomato, broccoli and other leafy green vegetables, and a number of berries, including raspberries and cranberries. Quercetin itself (aglycone quercetin), as opposed to quercetin glycosides, is not a normal dietary component. Quercetin glycosides are converted to phenolic acids as they pass through the gastrointestinal tract. Quercetin has neither been confirmed scientifically as a specific therapeutic for any condition nor been approved by any regulatory agency. The U.S. Food and Drug Administration has not approved any health claims for quercetin. Nevertheless, the interest in dietary flavonoids has grown after the publication of several epidemiological studies showing an inverse correlation between dietary consumption of flavonols and flavones and reduced incidence and mortality from cardiovascular disease and cancer. In recent years, a large amount of experimental and some clinical data have accumulated regarding the effects of flavonoids on the endothelium under physiological and pathological conditions. The meta-analysis of seven prospective cohort studies concluded that the individuals in the top third of dietary flavonol intake are associated with a reduced risk of mortality from coronary heart disease as compared with those in the bottom third, after adjustment for known risk factors and other dietary components. A limited number of intervention studies with flavonoids and flavonoid containing foods and extracts has been performed in several pathological conditions (PMID:17015250). Quercetin is isolated from many plants, especially fruits, such as Helichrysum, Euphorbia and Karwinskia spp. Present in the Solanaceae, Rhamnaceae, Passifloraceae and many other families. For example detected in almost all studied Umbelliferae. Nutriceutical with antiinflammatory props. and a positive influence on the blood lipid profile. Found in a wide variety of foods especially apples, bee pollen, blackcurrants, capers, cocoa, cranberries, dock leaves, elderberries, fennel, lovage, red onions, ancho peppers, dill weed and tarragon. A pentahydroxyflavone having the five hydroxy groups placed at the 3-, 3-, 4-, 5- and 7-positions. It is one of the most abundant flavonoids in edible vegetables, fruit and wine. COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials D020011 - Protective Agents > D000975 - Antioxidants Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4014; ORIGINAL_PRECURSOR_SCAN_NO 4012 INTERNAL_ID 298; CONFIDENCE standard compound; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4011; ORIGINAL_PRECURSOR_SCAN_NO 4010 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4019; ORIGINAL_PRECURSOR_SCAN_NO 4018 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4017; ORIGINAL_PRECURSOR_SCAN_NO 4016 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4011; ORIGINAL_PRECURSOR_SCAN_NO 4010 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4096; ORIGINAL_PRECURSOR_SCAN_NO 4094 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4024; ORIGINAL_PRECURSOR_SCAN_NO 4023 Acquisition and generation of the data is financially supported in part by CREST/JST. [Raw Data] CB109_Quercetin_pos_30eV_CB000041.txt IPB_RECORD: 1761; CONFIDENCE confident structure [Raw Data] CB109_Quercetin_pos_10eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_20eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_40eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_50eV_CB000041.txt IPB_RECORD: 161; CONFIDENCE confident structure [Raw Data] CB109_Quercetin_neg_40eV_000027.txt [Raw Data] CB109_Quercetin_neg_50eV_000027.txt [Raw Data] CB109_Quercetin_neg_20eV_000027.txt [Raw Data] CB109_Quercetin_neg_30eV_000027.txt [Raw Data] CB109_Quercetin_neg_10eV_000027.txt CONFIDENCE standard compound; INTERNAL_ID 124 CONFIDENCE standard compound; ML_ID 54 Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1]. Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1].

   

Isorhamnetin

4H-1-Benzopyran-4-one, 2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-methoxy-

C16H12O7 (316.05830019999996)


3,4,5,7-tetrahydroxy-3-methoxyflavone is a tetrahydroxyflavone having the 4-hydroxy groups located at the 3- 4- 5- and 7-positions as well as a methoxy group at the 2-position. It has a role as a metabolite and an antimicrobial agent. It is a tetrahydroxyflavone and a monomethoxyflavone. It is functionally related to a quercetin. It is a conjugate acid of a 3,4,5-trihydroxy-3-methoxyflavon-7-olate. 3-O-Methylquercetin is a natural product found in Lotus ucrainicus, Wollastonia biflora, and other organisms with data available. See also: Tobacco Leaf (part of). 3-O-Methylquercetin (3-MQ), a main constituent of Rhamnus nakaharai, inhibits total cAMP and cGMP-phosphodiesterase (PDE) of guinea pig trachealis. 3-O-Methylquercetin (3-MQ) exhibits IC50 values ranging from 1.6-86.9 μM for PDE isozymes (PDE1-5)[1]. 3-O-Methylquercetin (3-MQ), a main constituent of Rhamnus nakaharai, inhibits total cAMP and cGMP-phosphodiesterase (PDE) of guinea pig trachealis. 3-O-Methylquercetin (3-MQ) exhibits IC50 values ranging from 1.6-86.9 μM for PDE isozymes (PDE1-5)[1].

   

Isorhamnetin

4H-1-Benzopyran-4-one, 3,5,7-trihydroxy-2-(4-hydroxy-3-methoxyphenyl)-

C16H12O7 (316.05830019999996)


Isorhamnetin is the methylated metabolite of quercetin. Quercetin is an important dietary flavonoid with in vitro antioxidant activity. However, it is found in human plasma as conjugates with glucuronic acid, sulfate or methyl groups, with no significant amounts of free quercetin present. Isorhamnetin prevents endothelial cell injuries from oxidized LDL via inhibition of lectin-like ox-LDL receptor-1 upregulation, interference of ox-LDL-mediated intracellular signaling pathway (p38MAPK activation, NF-kappaB nuclear translocation, eNOS expression) and the antioxidant activity of isorhamnetin. Isorhamnetin prevents endothelial dysfunction, superoxide production, and overexpression of p47phox induced by angiotensin II. Isorhamnetin appears to be a potent drug against esophageal cancer due to its in vitro potential to not only inhibit proliferation but also induce apoptosis of Eca-109 cells. (PMID: 15493462, 17368593, 17374653, 16963021). Isorhamnetin is a monomethoxyflavone that is quercetin in which the hydroxy group at position 3 is replaced by a methoxy group. It has a role as an EC 1.14.18.1 (tyrosinase) inhibitor, an anticoagulant and a metabolite. It is a 7-hydroxyflavonol, a tetrahydroxyflavone and a monomethoxyflavone. It is functionally related to a quercetin. It is a conjugate acid of an isorhamnetin(1-). Isorhamnetin is a natural product found in Lotus ucrainicus, Strychnos pseudoquina, and other organisms with data available. Isorhamnetin is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Peumus boldus leaf (part of). Widespread flavonol found especially in bee pollen, chives, corn poppy leaves, garden cress, fennel, hartwort, red onions, pears, dillweed, parsley and tarragon. Isorhamnetin is found in many foods, some of which are italian sweet red pepper, carrot, yellow wax bean, and lemon balm. A monomethoxyflavone that is quercetin in which the hydroxy group at position 3 is replaced by a methoxy group. Acquisition and generation of the data is financially supported in part by CREST/JST. Isorhamnetin is a flavonoid compound extracted from the Chinese herb Hippophae rhamnoides L.. Isorhamnetin suppresses skin cancer through direct inhibition of MEK1 and PI3K. Isorhamnetin is a flavonoid compound extracted from the Chinese herb Hippophae rhamnoides L.. Isorhamnetin suppresses skin cancer through direct inhibition of MEK1 and PI3K.

   

Corniculatusin

3,5,7,3,4-Pentahydroxy-8-methoxyflavone

C16H12O8 (332.0532152)


   

(±)-Pelletierine

2-Propanone, 1-(2-piperidinyl)-, (+-) (9ci)

C8H15NO (141.115358)


(±)-pelletierine, also known as (-)-isomer of isopelletierine or (+-)-1-(2-piperidinyl)-2-propanone, is a member of the class of compounds known as piperidines. Piperidines are compounds containing a piperidine ring, which is a saturated aliphatic six-member ring with one nitrogen atom and five carbon atoms (±)-pelletierine is soluble (in water) and an extremely weak acidic compound (based on its pKa). (±)-pelletierine can be found in pomegranate, which makes (±)-pelletierine a potential biomarker for the consumption of this food product. (±)-Pelletierine is found in fruits. (±)-Pelletierine is an alkaloid from pomegranat

   
   
   

Isorhamnetin 3-galactoside

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-{[(2S,3R,4S,5R,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-4H-chromen-4-one

C22H22O12 (478.1111212)


Isorhamnetin 3-galactoside is a member of the class of compounds known as flavonoid-3-o-glycosides. Flavonoid-3-o-glycosides are phenolic compounds containing a flavonoid moiety which is O-glycosidically linked to carbohydrate moiety at the C3-position. Isorhamnetin 3-galactoside is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Isorhamnetin 3-galactoside can be synthesized from beta-D-galactose. Isorhamnetin 3-galactoside can also be synthesized into isorhamnetin. Isorhamnetin 3-galactoside can be found in a number of food items such as caraway, common bean, almond, and green bean, which makes isorhamnetin 3-galactoside a potential biomarker for the consumption of these food products. Isorhamnetin 3-O-beta-D-galactopyranoside is a glycosyloxyflavone that is isorhamnetin substituted at position 3 by a beta-D-galactosyl residue. It has a role as a metabolite. It is a beta-D-galactoside, a monosaccharide derivative, a glycosyloxyflavone, a monomethoxyflavone and a trihydroxyflavone. It is functionally related to an isorhamnetin and a beta-D-galactose. Cacticin is a natural product found in Lysimachia patungensis, Artemisia igniaria, and other organisms with data available. A glycosyloxyflavone that is isorhamnetin substituted at position 3 by a beta-D-galactosyl residue.

   

Limocitrin

3,5,7-Trihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-4H-1-benzopyran-4-one, 9CI

C17H14O8 (346.0688644)


Limocitrin is a hydroxyflavan. Limocitrin is a natural product found in Sedum anglicum, Sedum forsterianum, and other organisms with data available. Limocitrin is found in citrus. Limocitrin is a constituent of citrus fruit peels Constituent of citrus fruit peels. Limocitrin is found in lemon and citrus.

   

Isorhamnetin 3-galactoside

Isorhamnetin 3-O-galactoside

C22H22O12 (478.1111212)


   

Limocitrin 3-glucoside

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-4H-chromen-4-one

C23H24O13 (508.1216854)


Limocitrin 3-glucoside is found in citrus. Limocitrin 3-glucoside is a constituent of Citrus species fruit peels Constituent of Citrus subspecies fruit peels. Limocitrin 3-glucoside is found in lemon and citrus.

   

(R)-Pelletierine

1-[(2R)-piperidin-2-yl]propan-2-one

C8H15NO (141.115358)


(R)-Pelletierine is found in fruits. (R)-Pelletierine is an alkaloid from pomegranat Alkaloid from pomegranate. (R)-Pelletierine is found in fruits and pomegranate.

   

Isorhamnetin 7-glucoside

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-4H-chromen-4-one

C22H22O12 (478.1111212)


Isolated from various plants inc. Brassica napus (oilseed rape). Isorhamnetin 7-glucoside is found in sea-buckthornberry, german camomile, and brassicas. Isorhamnetin 7-glucoside is found in brassicas. Isorhamnetin 7-glucoside is isolated from various plants including Brassica napus (oilseed rape Brassicin, a natural Flavonoid, possesses radical scavenging activity[1]. Brassicin, a natural Flavonoid, possesses radical scavenging activity[1].

   

7-Glucosyl-luteolin

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-4H-chromen-4-one

C21H20O12 (464.09547200000003)


   

Isorhamnetin 3-beta-D-glucoside

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-{[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-4H-chromen-4-one

C22H22O12 (478.1111212)


Isorhamnetin 3-beta-d-glucoside, also known as isorhamnetin-3-glu, is a member of the class of compounds known as flavonoid-3-o-glycosides. Flavonoid-3-o-glycosides are phenolic compounds containing a flavonoid moiety which is O-glycosidically linked to carbohydrate moiety at the C3-position. Isorhamnetin 3-beta-d-glucoside is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Isorhamnetin 3-beta-d-glucoside can be synthesized from beta-D-glucose. Isorhamnetin 3-beta-d-glucoside can also be synthesized into isorhamnetin. Isorhamnetin 3-beta-d-glucoside can be found in sea-buckthornberry, which makes isorhamnetin 3-beta-d-glucoside a potential biomarker for the consumption of this food product. Isorhamnetin 3-beta-d-glucoside may be a unique S.cerevisiae (yeast) metabolite. Isorhamnetin-3-O-glucoside, a natural compound widely contained in many vegetables and rice, could be metabolized in intestinal microbiota after digestion[1]. Isorhamnetin-3-O-glucoside, a natural compound widely contained in many vegetables and rice, could be metabolized in intestinal microbiota after digestion[1].

   

Isorhamnetin 3,7-beta-D-diglucoside

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-3,7-bis({[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})-4H-chromen-4-one

C28H32O17 (640.1639422000001)


Isorhamnetin 3,7-beta-d-diglucoside is a member of the class of compounds known as flavonoid-7-o-glycosides. Flavonoid-7-o-glycosides are phenolic compounds containing a flavonoid moiety which is O-glycosidically linked to carbohydrate moiety at the C7-position. Isorhamnetin 3,7-beta-d-diglucoside is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Isorhamnetin 3,7-beta-d-diglucoside can be found in dandelion, which makes isorhamnetin 3,7-beta-d-diglucoside a potential biomarker for the consumption of this food product.

   

Quercetin 3,7-diglucoside

2-(3,4-dihydroxyphenyl)-5-hydroxy-3,7-bis({[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})-4H-chromen-4-one

C27H30O17 (626.148293)


Quercetin 3,7-diglucoside, also known as quercetin-3,7-O-beta-diglucopyranoside or 3,7-diglucosylquercetin, is a member of the class of compounds known as flavonoid-7-o-glycosides. Flavonoid-7-o-glycosides are phenolic compounds containing a flavonoid moiety which is O-glycosidically linked to carbohydrate moiety at the C7-position. Quercetin 3,7-diglucoside is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Quercetin 3,7-diglucoside can be found in a number of food items such as fenugreek, grape, safflower, and hedge mustard, which makes quercetin 3,7-diglucoside a potential biomarker for the consumption of these food products.

   

Isorhamnetin 3,7-diglucoside

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-3,7-bis({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})-4H-chromen-4-one

C28H32O17 (640.1639422000001)


Isolated from Argemone mexicana, Brassica juncea, Solanum species and other plants [CCD]. Isorhamnetin 3,7-diglucoside is found in parsley, radish, and dandelion.

   

Hirsutrin

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

C21H20O12 (464.09547200000003)


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.

   

Isorhamnetin 3-galactoside

3- (beta-D-Galactopyranosyloxy) -5,7-dihydroxy-2- (4-hydroxy-3-methoxyphenyl) -4H-1-benzopyran-4-one

C22H22O12 (478.1111212)


   

Quercetin 3,7-diglucoside

2- (3,4-Dihydroxyphenyl) -3,7-bis (beta-D-glucopyranosyloxy) -5-hydroxy-4H-1-benzopyran-4-one

C27H30O17 (626.148293)


   

Quercetin

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

C15H10O7 (302.042651)


Annotation level-1 COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials relative retention time with respect to 9-anthracene Carboxylic Acid is 0.898 D020011 - Protective Agents > D000975 - Antioxidants Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS relative retention time with respect to 9-anthracene Carboxylic Acid is 0.902 Acquisition and generation of the data is financially supported by the Max-Planck-Society IPB_RECORD: 1981; CONFIDENCE confident structure IPB_RECORD: 3301; CONFIDENCE confident structure IPB_RECORD: 3283; CONFIDENCE confident structure Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1]. Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1].

   

Isorhamnetin

4H-1-Benzopyran-4-one, 3,5,7-trihydroxy-2-(3-hydroxy-4-methoxyphenyl)- (9CI)

C16H12O7 (316.05830019999996)


Glucoside present in the leaves of Peumus boldus (boldo). Isorhamnetin 3-dirhamnoside is found in fruits. Annotation level-1 Isorhamnetin is a flavonoid compound extracted from the Chinese herb Hippophae rhamnoides L.. Isorhamnetin suppresses skin cancer through direct inhibition of MEK1 and PI3K. Isorhamnetin is a flavonoid compound extracted from the Chinese herb Hippophae rhamnoides L.. Isorhamnetin suppresses skin cancer through direct inhibition of MEK1 and PI3K.

   

Limocitrin

3,5,7-Trihydroxy-2- (4-hydroxy-3-methoxyphenyl) -8-methoxy-4H-1-benzopyran-4-one

C17H14O8 (346.0688644)


relative retention time with respect to 9-anthracene Carboxylic Acid is 1.074 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.078 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.072

   

Isoquercetin

3,3,4,5,7-Pentahydroxyflavone 3-β-glucoside

C21H20O12 (464.09547200000003)


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.

   

isorhamnetin 3-O-glucoside

Isorhamnetin 3-O-galactoside

C22H22O12 (478.1111212)


Acquisition and generation of the data is financially supported in part by CREST/JST. Isorhamnetin-3-O-glucoside, a natural compound widely contained in many vegetables and rice, could be metabolized in intestinal microbiota after digestion[1]. Isorhamnetin-3-O-glucoside, a natural compound widely contained in many vegetables and rice, could be metabolized in intestinal microbiota after digestion[1].

   

Quertin

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

C15H10O7 (302.042651)


COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials D020011 - Protective Agents > D000975 - Antioxidants Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1]. Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1].

   

497-88-1

(1S)-2-[(2S)-1-methylpiperidin-2-yl]-1-phenyl-ethanol

C14H21NO (219.1623056)


   

Pelletierine

1-(2-Piperidinyl)acetone

C8H15NO (141.115358)


   
   

(2s,3r,4s,5s,6r)-2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

(2s,3r,4s,5s,6r)-2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

C24H24O13 (520.1216853999999)


   

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C22H22O12 (478.1111212)


   

(2s,3r)-2-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-3-ol

(2s,3r)-2-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-3-ol

C14H21NO2 (235.15722060000002)


   

(2r)-1-[(2s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-ol

(2r)-1-[(2s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-ol

C17H27NO2 (277.20416819999997)


   

(2r,4r)-2-[(2r)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-4-ol

(2r,4r)-2-[(2r)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-4-ol

C14H21NO2 (235.15722060000002)


   

1-[(2r,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]pentan-2-one

1-[(2r,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]pentan-2-one

C19H29NO2 (303.2198174)


   

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C23H24O13 (508.1216854)


   

1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-one

1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-one

C17H23NO2 (273.1728698)


   

2-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-3-ol

2-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-3-ol

C14H21NO2 (235.15722060000002)


   

1-phenyl-2-(piperidin-2-yl)ethanol

1-phenyl-2-(piperidin-2-yl)ethanol

C13H19NO (205.14665639999998)


   

2-[6-(2-hydroxypropyl)-1-methylpiperidin-2-yl]-1-phenylethanone

2-[6-(2-hydroxypropyl)-1-methylpiperidin-2-yl]-1-phenylethanone

C17H25NO2 (275.188519)


   

2-[(2r,6s)-6-[(2s)-2-hydroxypropyl]-1-methylpiperidin-2-yl]-1-phenylethanone

2-[(2r,6s)-6-[(2s)-2-hydroxypropyl]-1-methylpiperidin-2-yl]-1-phenylethanone

C17H25NO2 (275.188519)


   

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C23H24O13 (508.1216854)


   

1-[1-methyl-6-(2-oxopropyl)-5,6-dihydro-2h-pyridin-2-yl]but-3-en-2-one

1-[1-methyl-6-(2-oxopropyl)-5,6-dihydro-2h-pyridin-2-yl]but-3-en-2-one

C13H19NO2 (221.1415714)


   

(3s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-3-ol

(3s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-3-ol

C14H21NO2 (235.15722060000002)


   

(2s,3r,4s,5s,6s)-2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

(2s,3r,4s,5s,6s)-2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

C24H24O13 (520.1216853999999)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]propan-2-one

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]propan-2-one

C17H25NO2 (275.188519)


   

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-{[(2s,3r,4r,5r,6s)-3,4,5-trihydroxy-6-(hydroxymethyl)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-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C21H20O12 (464.09547200000003)


   

(1r)-1-phenyl-2-[(2r)-piperidin-2-yl]ethanol

(1r)-1-phenyl-2-[(2r)-piperidin-2-yl]ethanol

C13H19NO (205.14665639999998)


   

(2s)-1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

(2s)-1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

C17H25NO2 (275.188519)


   

(2s,3r)-2-[(2s)-2-hydroxy-2-phenylethyl]piperidin-3-ol

(2s,3r)-2-[(2s)-2-hydroxy-2-phenylethyl]piperidin-3-ol

C13H19NO2 (221.1415714)


   

6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-3-ol

6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-3-ol

C14H21NO2 (235.15722060000002)


   

(2s)-1-[(2s)-piperidin-2-yl]propan-2-ol

(2s)-1-[(2s)-piperidin-2-yl]propan-2-ol

C8H17NO (143.1310072)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

C17H25NO2 (275.188519)


   

1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-one

1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-one

C17H25NO2 (275.188519)


   

5-(2-hydroxy-2-phenylethyl)-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

5-(2-hydroxy-2-phenylethyl)-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

C17H25NO3 (291.18343400000003)


   

(2s)-1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]butan-2-ol

(2s)-1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]butan-2-ol

C18H29NO2 (291.2198174)


   

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C23H24O13 (508.1216854)


   

(1r)-2-[(2r)-1-methylpiperidin-2-yl]-1-phenylethanol

(1r)-2-[(2r)-1-methylpiperidin-2-yl]-1-phenylethanol

C14H21NO (219.1623056)


   

2-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-4-ol

2-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-4-ol

C14H21NO2 (235.15722060000002)


   

1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-one

1-[(2s,6r)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]propan-2-one

C17H25NO2 (275.188519)


   

(1s)-2-[(2s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]-1-phenylethanol

(1s)-2-[(2s,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-2-yl]-1-phenylethanol

C22H29NO2 (339.2198174)


   

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[(2s,3s,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-7-{[(2s,3s,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C23H24O13 (508.1216854)


   

2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

2-{[5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-4-oxochromen-3-yl]oxy}-4,5-dihydroxy-6-(hydroxymethyl)oxan-3-yl acetate

C24H24O13 (520.1216853999999)


   

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3,7-bis({[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3,7-bis({[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

C29H34O18 (670.1745064)


   

2-(2-hydroxy-2-phenylethyl)piperidin-3-ol

2-(2-hydroxy-2-phenylethyl)piperidin-3-ol

C13H19NO2 (221.1415714)


   

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

5,7-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C23H24O13 (508.1216854)


   

(2s,3as,5s,7as)-5-[(2s)-2-hydroxy-2-phenylethyl]-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

(2s,3as,5s,7as)-5-[(2s)-2-hydroxy-2-phenylethyl]-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

C17H25NO3 (291.18343400000003)


   

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3,7-bis({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3,7-bis({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

C29H34O18 (670.1745064)


   

(2r,3ar,5r,7ar)-5-[(2r)-2-hydroxy-2-phenylethyl]-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

(2r,3ar,5r,7ar)-5-[(2r)-2-hydroxy-2-phenylethyl]-2,4-dimethyl-hexahydrofuro[3,2-b]pyridin-2-ol

C17H25NO3 (291.18343400000003)


   

(2s)-1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

(2s)-1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-3,6-dihydro-2h-pyridin-2-yl]propan-2-ol

C17H25NO2 (275.188519)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]butan-2-ol

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]butan-2-ol

C18H29NO2 (291.2198174)


   

(2r)-1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-ol

(2r)-1-[(2r,6s)-6-[(2s)-2-hydroxy-2-phenylethyl]-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-ol

C17H25NO2 (275.188519)


   

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C22H22O12 (478.1111212)


   

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-7-{[(2s,3s,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

5-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-8-methoxy-3-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}-7-{[(2s,3s,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}chromen-4-one

C29H34O18 (670.1745064)


   

methyl 2-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]acetate

methyl 2-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]acetate

C17H25NO3 (291.18343400000003)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]pentan-2-one

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]pentan-2-one

C19H29NO2 (303.2198174)


   

2-(3,4-dihydroxyphenyl)-5-hydroxy-3,7-bis({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

2-(3,4-dihydroxyphenyl)-5-hydroxy-3,7-bis({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy})chromen-4-one

C27H30O17 (626.148293)


   

(2r,4r)-2-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-4-ol

(2r,4r)-2-[(2s)-2-hydroxy-2-phenylethyl]-1-methylpiperidin-4-ol

C14H21NO2 (235.15722060000002)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]propan-2-ol

1-[6-(2-hydroxy-2-phenylethyl)-1-methylpiperidin-2-yl]propan-2-ol

C17H27NO2 (277.20416819999997)


   

2-(1-methylpiperidin-2-yl)-1-phenylethanol

2-(1-methylpiperidin-2-yl)-1-phenylethanol

C14H21NO (219.1623056)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-one

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-one

C17H23NO2 (273.1728698)


   

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-ol

1-[6-(2-hydroxy-2-phenylethyl)-1-methyl-5,6-dihydro-2h-pyridin-2-yl]propan-2-ol

C17H25NO2 (275.188519)