NCBI Taxonomy: 53724

Hymenopappus (ncbi_taxid: 53724)

found 175 associated metabolites at genus taxonomy rank level.

Ancestor: Bahieae

Child Taxonomies: Hymenopappus filifolius, Hymenopappus artemisiifolius, Hymenopappus tenuifolius, Hymenopappus scabiosaeus

Stigmasterol

(3S,8S,9S,10R,13R,14S,17R)-17-((2R,5S,E)-5-ethyl-6-methylhept-3-en-2-yl)-10,13-dimethyl-2,3,4,7,8,9,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H48O (412.37049579999996)


Stigmasterol is a phytosterol, meaning it is steroid derived from plants. As a food additive, phytosterols have cholesterol-lowering properties (reducing cholesterol absorption in intestines), and may act in cancer prevention. Phytosterols naturally occur in small amount in vegetable oils, especially soybean oil. One such phytosterol complex, isolated from vegetable oil, is cholestatin, composed of campesterol, stigmasterol, and brassicasterol, and is marketed as a dietary supplement. Sterols can reduce cholesterol in human subjects by up to 15\\%. The mechanism behind phytosterols and the lowering of cholesterol occurs as follows : the incorporation of cholesterol into micelles in the gastrointestinal tract is inhibited, decreasing the overall amount of cholesterol absorbed. This may in turn help to control body total cholesterol levels, as well as modify HDL, LDL and TAG levels. Many margarines, butters, breakfast cereals and spreads are now enriched with phytosterols and marketed towards people with high cholesterol and a wish to lower it. Stigmasterol is found to be associated with phytosterolemia, which is an inborn error of metabolism. Stigmasterol is a 3beta-sterol that consists of 3beta-hydroxystigmastane having double bonds at the 5,6- and 22,23-positions. It has a role as a plant metabolite. It is a 3beta-sterol, a stigmastane sterol, a 3beta-hydroxy-Delta(5)-steroid and a member of phytosterols. It derives from a hydride of a stigmastane. Stigmasterol is a natural product found in Ficus auriculata, Xylopia aromatica, and other organisms with data available. Stigmasterol is a steroid derivative characterized by the hydroxyl group in position C-3 of the steroid skeleton, and unsaturated bonds in position 5-6 of the B ring, and position 22-23 in the alkyl substituent. Stigmasterol is found in the fats and oils of soybean, calabar bean and rape seed, as well as several other vegetables, legumes, nuts, seeds, and unpasteurized milk. See also: Comfrey Root (part of); Saw Palmetto (part of); Plantago ovata seed (part of). Stigmasterol is an unsaturated plant sterol occurring in the plant fats or oils of soybean, calabar bean, and rape seed, and in a number of medicinal herbs, including the Chinese herbs Ophiopogon japonicus (Mai men dong) and American Ginseng. Stigmasterol is also found in various vegetables, legumes, nuts, seeds, and unpasteurized milk. A 3beta-sterol that consists of 3beta-hydroxystigmastane having double bonds at the 5,6- and 22,23-positions. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol

   

beta-Sitosterol

(3S,8S,9S,10R,13R,14S,17R)-17-((2R,5R)-5-ethyl-6-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,8,9,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H50O (414.386145)


beta-Sitosterol, a main dietary phytosterol found in plants, may have the potential for prevention and therapy for human cancer. Phytosterols are plant sterols found in foods such as oils, nuts, and vegetables. Phytosterols, in the same way as cholesterol, contain a double bond and are susceptible to oxidation, and are characterized by anti-carcinogenic and anti-atherogenic properties (PMID:13129445, 11432711). beta-Sitosterol is a phytopharmacological extract containing a mixture of phytosterols, with smaller amounts of other sterols, bonded with glucosides. These phytosterols are commonly derived from the South African star grass, Hypoxis rooperi, or from species of Pinus and Picea. The purported active constituent is termed beta-sitosterol. Additionally, the quantity of beta-sitosterol-beta-D-glucoside is often reported. Although the exact mechanism of action of beta-sitosterols is unknown, it may be related to cholesterol metabolism or anti-inflammatory effects (via interference with prostaglandin metabolism). Compared with placebo, beta-sitosterol improved urinary symptom scores and flow measures (PMID:10368239). A plant food-based diet modifies the serum beta-sitosterol concentration in hyperandrogenic postmenopausal women. This finding indicates that beta-sitosterol can be used as a biomarker of exposure in observational studies or as a compliance indicator in dietary intervention studies of cancer prevention (PMID:14652381). beta-Sitosterol induces apoptosis and activates key caspases in MDA-MB-231 human breast cancer cells (PMID:12579296). Sitosterol is a member of the class of phytosterols that is stigmast-5-ene substituted by a beta-hydroxy group at position 3. It has a role as a sterol methyltransferase inhibitor, an anticholesteremic drug, an antioxidant, a plant metabolite and a mouse metabolite. It is a 3beta-sterol, a stigmastane sterol, a 3beta-hydroxy-Delta(5)-steroid, a C29-steroid and a member of phytosterols. It derives from a hydride of a stigmastane. Active fraction of Solanum trilobatum; reduces side-effects of radiation-induced toxicity. Beta-Sitosterol is a natural product found in Elodea canadensis, Ophiopogon intermedius, and other organisms with data available. beta-Sitosterol is one of several phytosterols (plant sterols) with chemical structures similar to that of cholesterol. Sitosterols are white, waxy powders with a characteristic odor. They are hydrophobic and soluble in alcohols. beta-Sitosterol is found in many foods, some of which are ginseng, globe artichoke, sesbania flower, and common oregano. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

Lupeol

(1R,3aR,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-3a,5a,5b,8,8,11a-hexamethyl-1-prop-1-en-2-yl-1,2,3,4,5,6,7,7a,9,10,11,11b,12,13,13a,13b-hexadecahydrocyclopenta[a]chrysen-9-ol

C30H50O (426.386145)


Lupeol is a pentacyclic triterpenoid that is lupane in which the hydrogen at the 3beta position is substituted by a hydroxy group. It occurs in the skin of lupin seeds, as well as in the latex of fig trees and of rubber plants. It is also found in many edible fruits and vegetables. It has a role as an anti-inflammatory drug and a plant metabolite. It is a secondary alcohol and a pentacyclic triterpenoid. It derives from a hydride of a lupane. Lupeol has been investigated for the treatment of Acne. Lupeol is a natural product found in Ficus auriculata, Ficus septica, and other organisms with data available. See also: Calendula Officinalis Flower (part of). A pentacyclic triterpenoid that is lupane in which the hydrogen at the 3beta position is substituted by a hydroxy group. It occurs in the skin of lupin seeds, as well as in the latex of fig trees and of rubber plants. It is also found in many edible fruits and vegetables. D000893 - Anti-Inflammatory Agents Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1]. Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1].

   

Lupeyl acetate

[(1R,3aR,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-1-isopropenyl-3a,5a,5b,8,8,11a-hexamethyl-1,2,3,4,5,6,7,7a,9,10,11,11b,12,13,13a,13b-hexadecahydrocyclopenta[a]chrysen-9-yl] acetate

C32H52O2 (468.3967092)


Lupeol acetate is an organic molecular entity. It has a role as a metabolite. Lupeol acetate is a natural product found in Euphorbia dracunculoides, Euphorbia larica, and other organisms with data available. Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1]. Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1].

   

Taraxasterol

(3S,4aR,6aR,6aR,6bR,8aR,12S,12aS,14aR,14bR)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-1,2,3,4a,5,6,6a,7,8,9,10,12,12a,13,14,14a-hexadecahydropicen-3-ol

C30H50O (426.386145)


Constituent of dandelion roots (Taraxacum officinale), Roman chamomile flowers (Anthemis nobilis) and many other plants. Taraxasterol is found in many foods, some of which are soy bean, chicory, evening primrose, and common grape. Taraxasterol is found in alcoholic beverages. Taraxasterol is a constituent of dandelion roots (Taraxacum officinale), Roman chamomile flowers (Anthemis nobilis) and many other plants Taraxasterol is a pentacyclic triterpenoid isolated from Taraxacum mongolicum. Taraxasterol has a role as a metabolite and an anti-inflammatory agent[1]. Taraxasterol is a pentacyclic triterpenoid isolated from Taraxacum mongolicum. Taraxasterol has a role as a metabolite and an anti-inflammatory agent[1].

   

Chromolaenide

3-Epichromolaenide

C22H28O7 (404.1834938)


   
   
   

Germacrene D

(1E,6E,8S)-1-methyl-8-(1-methylethyl)-5-methylidenecyclodeca-1,6-diene

C15H24 (204.18779039999998)


Germacrene d, also known as germacrene d, (s-(e,e))-isomer, is a member of the class of compounds known as germacrane sesquiterpenoids. Germacrane sesquiterpenoids are sesquiterpenoids having the germacrane skeleton, with a structure characterized by a cyclodecane ring substituted with an isopropyl and two methyl groups. Germacrene d can be found in a number of food items such as peppermint, roman camomile, hyssop, and common walnut, which makes germacrene d a potential biomarker for the consumption of these food products.

   

Eucannabinolide

Hiyodorilactone A

C22H28O8 (420.1784088)


   

Lupeol acetate

1,2,5,14,18,18-hexamethyl-8-(prop-1-en-2-yl)pentacyclo[11.8.0.0²,¹⁰.0⁵,⁹.0¹⁴,¹⁹]henicosan-17-yl acetate

C32H52O2 (468.3967092)


   

Taraxasterol acetate

4,4,6a,6b,8a,12,14b-Heptamethyl-11-methylidene-docosahydropicen-3-yl acetic acid

C32H52O2 (468.3967092)


Taraxasterol acetate, also known as urs-20(30)-en-3-ol acetate, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Taraxasterol acetate is practically insoluble (in water) and an extremely weak basic (essentially neutral) compound (based on its pKa). Taraxasterol acetate can be found in burdock, which makes taraxasterol acetate a potential biomarker for the consumption of this food product.

   

Eucannabinolide

9-(Acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-2H,3H,3ah,4H,5H,8H,9H,11ah-cyclodeca[b]furan-4-yl (2E)-4-hydroxy-2-(hydroxymethyl)but-2-enoic acid

C22H28O8 (420.1784088)


Eucannabinolide belongs to germacranolides and derivatives class of compounds. Those are sesquiterpene lactones with a structure based on the germacranolide skeleton, characterized by a gamma lactone fused to a 1,7-dimethylcyclodec-1-ene moiety. Eucannabinolide is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Eucannabinolide can be found in roman camomile, which makes eucannabinolide a potential biomarker for the consumption of this food product.

   

Taraxasterol

(3S,4aR,6aR,6aR,6bR,8aR,12S,12aR,14aR,14bR)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-1,2,3,4a,5,6,6a,7,8,9,10,12,12a,13,14,14a-hexadecahydropicen-3-ol

C30H50O (426.386145)


Taraxasterol is a pentacyclic triterpenoid that is taraxastane with a beta-hydroxy group at position 3. It has a role as a metabolite and an anti-inflammatory agent. It is a pentacyclic triterpenoid and a secondary alcohol. It derives from a hydride of a taraxastane. Taraxasterol is a natural product found in Eupatorium altissimum, Eupatorium perfoliatum, and other organisms with data available. See also: Calendula Officinalis Flower (part of). A pentacyclic triterpenoid that is taraxastane with a beta-hydroxy group at position 3. Taraxasterol is a pentacyclic triterpenoid isolated from Taraxacum mongolicum. Taraxasterol has a role as a metabolite and an anti-inflammatory agent[1]. Taraxasterol is a pentacyclic triterpenoid isolated from Taraxacum mongolicum. Taraxasterol has a role as a metabolite and an anti-inflammatory agent[1].

   

Lupeol acetate

Acetic acid (1R,3aR,4S,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-1-isopropenyl-3a,5a,5b,8,8,11a-hexamethyl-eicosahydro-cyclopenta[a]chrysen-9-yl ester

C32H52O2 (468.3967092)


Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1]. Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1].

   

sitosterol

17-(5-ethyl-6-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H50O (414.386145)


A member of the class of phytosterols that is stigmast-5-ene substituted by a beta-hydroxy group at position 3. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

Stigmasterol

Stigmasterol

C29H48O (412.37049579999996)


Disclaimer: While authors make an effort to ensure that the content of this record is accurate, the authors make no representations or warranties in relation to the accuracy or completeness of the record. This record do not reflect any viewpoints of the affiliation and organization to which the authors belong.

   

lupeol

Lup-20(29)-en-3.beta.-ol

C30H50O (426.386145)


D000893 - Anti-Inflammatory Agents Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1]. Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1].

   

Germacrene D

1,6-Cyclodecadiene, 1-methyl-5-methylene-8-(1-methylethyl)-, [s-(E,E)]-

C15H24 (204.18779039999998)


(-)-germacrene D is a germacrene D. It is an enantiomer of a (+)-germacrene D. (-)-Germacrene D is a natural product found in Teucrium montanum, Stachys obliqua, and other organisms with data available. See also: Clary Sage Oil (part of).

   

Harzol

(3S,8S,9S,10R,13R,14S,17R)-17-[(2R,5R)-5-ethyl-6-methyl-heptan-2-yl]-10,13-dimethyl-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H50O (414.386145)


C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

Stigmasterin

(3S,8S,9S,10R,13R,14S,17R)-17-[(E,2R,5S)-5-ethyl-6-methyl-hept-3-en-2-yl]-10,13-dimethyl-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H48O (412.37049579999996)


C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol

   

Lupeol acetate

1,2,5,14,18,18-hexamethyl-8-(prop-1-en-2-yl)pentacyclo[11.8.0.0²,¹⁰.0⁵,⁹.0¹⁴,¹⁹]henicosan-17-yl acetate

C32H52O2 (468.3967092)


Lupeyl acetate, also known as lupeyl acetic acid, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Lupeyl acetate is practically insoluble (in water) and an extremely weak basic (essentially neutral) compound (based on its pKa). Lupeyl acetate can be found in burdock, date, and fig, which makes lupeyl acetate a potential biomarker for the consumption of these food products. Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1]. Lupeol acetate, a derivative of Lupeol, suppresses the progression of rheumatoid arthritis (RA) by inhibiting the activation of macrophages and osteoclastogenesis through downregulations of TNF-α, IL-1β, MCP-1, COX-2, VEGF and granzyme B[1].

   

Eucannabinolide

9-(Acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-2H,3H,3ah,4H,5H,8H,9H,11ah-cyclodeca[b]furan-4-yl (2E)-4-hydroxy-2-(hydroxymethyl)but-2-enoic acid

C22H28O8 (420.1784088)


Eucannabinolide belongs to germacranolides and derivatives class of compounds. Those are sesquiterpene lactones with a structure based on the germacranolide skeleton, characterized by a gamma lactone fused to a 1,7-dimethylcyclodec-1-ene moiety. Eucannabinolide is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Eucannabinolide can be found in roman camomile, which makes eucannabinolide a potential biomarker for the consumption of this food product.

   
   

(1r,3ar,5ar,5br,7ar,9s,11ar,11br,13as,13br)-3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-ol

(1r,3ar,5ar,5br,7ar,9s,11ar,11br,13as,13br)-3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-ol

C30H50O (426.386145)


   

(3ar,4r,6as,9ar,9bs)-6a-hydroperoxy-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,6as,9ar,9bs)-6a-hydroperoxy-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O10 (490.183888)


   

(3ar,4r,9s)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-4-hydroxy-2-methylbut-2-enoate

(3ar,4r,9s)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-4-hydroxy-2-methylbut-2-enoate

C22H28O7 (404.1834938)


   

9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O9 (474.18897300000003)


   

{14-hydroxy-5,5,9-trimethyl-6-oxotetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-14-yl}methyl acetate

{14-hydroxy-5,5,9-trimethyl-6-oxotetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-14-yl}methyl acetate

C22H34O4 (362.24569640000004)


   

(3as,11as)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

(3as,11as)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

C22H28O8 (420.1784088)


   

14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-6,14-diol

14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-6,14-diol

C20H34O3 (322.25078140000005)


   

5-methyl-2-[(2r)-2-[(2-methylpropoxy)methyl]oxiran-2-yl]phenyl 2-methylpropanoate

5-methyl-2-[(2r)-2-[(2-methylpropoxy)methyl]oxiran-2-yl]phenyl 2-methylpropanoate

C18H26O4 (306.1830996)


   

(3ar,4r,6ar,9r,9as,9bs)-9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,6ar,9r,9as,9bs)-9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O9 (474.18897300000003)


   

(1s,4s,9s,10r,13r,14r)-14-hydroxy-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-6-one

(1s,4s,9s,10r,13r,14r)-14-hydroxy-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-6-one

C20H32O3 (320.23513219999995)


   

(1r,3ar,5ar,5br,7ar,9s,11ar,11br,13as,13br)-3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-yl acetate

(1r,3ar,5ar,5br,7ar,9s,11ar,11br,13as,13br)-3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-yl acetate

C32H52O2 (468.3967092)


   

9-hydroxy-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 2-[(acetyloxy)methyl]-4-hydroxybut-2-enoate

9-hydroxy-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 2-[(acetyloxy)methyl]-4-hydroxybut-2-enoate

C22H28O8 (420.1784088)


   

(3ar,4r,6as,9s,9as,9br)-9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,6as,9s,9as,9br)-9-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O9 (474.18897300000003)


   

2-[(2r)-2-{[(2s)-butan-2-yloxy]methyl}oxiran-2-yl]-5-methylphenyl 2-methylpropanoate

2-[(2r)-2-{[(2s)-butan-2-yloxy]methyl}oxiran-2-yl]-5-methylphenyl 2-methylpropanoate

C18H26O4 (306.1830996)


   

6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O8 (458.194058)


   

(1z,6z,8s)-8-isopropyl-1-methyl-5-methylidenecyclodeca-1,6-diene

(1z,6z,8s)-8-isopropyl-1-methyl-5-methylidenecyclodeca-1,6-diene

C15H24 (204.18779039999998)


   

(6ar,6br,8ar,14br)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-hexadecahydropicen-3-ol

(6ar,6br,8ar,14br)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-hexadecahydropicen-3-ol

C30H50O (426.386145)


   

(3ar,4r,11ar)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,11ar)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H32O8 (460.20970719999997)


   

(3ar,4r,9s,11ar)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2z)-4-hydroxy-2-methylbut-2-enoate

(3ar,4r,9s,11ar)-9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2z)-4-hydroxy-2-methylbut-2-enoate

C22H28O7 (404.1834938)


   

7-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-methylidenebutanoate

7-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-methylidenebutanoate

C20H24O6 (360.1572804)


   

[(1s,4s,9s,10r,13r,14r)-14-hydroxy-5,5,9-trimethyl-6-oxotetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-14-yl]methyl acetate

[(1s,4s,9s,10r,13r,14r)-14-hydroxy-5,5,9-trimethyl-6-oxotetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-14-yl]methyl acetate

C22H34O4 (362.24569640000004)


   

(4ar,6ar,6br,8ar,12as,12bs,14as,14br)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-hexadecahydropicen-3-yl acetate

(4ar,6ar,6br,8ar,12as,12bs,14as,14br)-4,4,6a,6b,8a,12,14b-heptamethyl-11-methylidene-hexadecahydropicen-3-yl acetate

C32H52O2 (468.3967092)


   

5-methyl-2-{2-[(2-methylpropoxy)methyl]oxiran-2-yl}phenyl 2-methylpropanoate

5-methyl-2-{2-[(2-methylpropoxy)methyl]oxiran-2-yl}phenyl 2-methylpropanoate

C18H26O4 (306.1830996)


   

5-methyl-2-{2-[(2-methylbutoxy)methyl]oxiran-2-yl}phenyl 2-methylpropanoate

5-methyl-2-{2-[(2-methylbutoxy)methyl]oxiran-2-yl}phenyl 2-methylpropanoate

C19H28O4 (320.19874880000003)


   

(3ar,4r,9as,9br)-6,9-dimethyl-3-methylidene-2,7-dioxo-3ah,4h,5h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,9as,9br)-6,9-dimethyl-3-methylidene-2,7-dioxo-3ah,4h,5h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H28O9 (472.17332380000005)


   

(3ar,4r,9r,11ar)-9-hydroxy-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-2-[(acetyloxy)methyl]-4-hydroxybut-2-enoate

(3ar,4r,9r,11ar)-9-hydroxy-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl (2e)-2-[(acetyloxy)methyl]-4-hydroxybut-2-enoate

C22H28O8 (420.1784088)


   

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

C22H28O8 (420.1784088)


   

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-methylbut-2-enoate

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-methylbut-2-enoate

C22H28O7 (404.1834938)


   

(3ar,4r,9as,9br)-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,9as,9br)-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O8 (458.194058)


   

5-methyl-2-[(2r)-2-{[(2s)-2-methylbutoxy]methyl}oxiran-2-yl]phenyl 2-methylpropanoate

5-methyl-2-[(2r)-2-{[(2s)-2-methylbutoxy]methyl}oxiran-2-yl]phenyl 2-methylpropanoate

C19H28O4 (320.19874880000003)


   

stigmast-5-en-3-ol, (3β)-

stigmast-5-en-3-ol, (3β)-

C29H50O (414.386145)


   

(3ar,4r,6ar,7r,9ar,9br)-7-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-methylidenebutanoate

(3ar,4r,6ar,7r,9ar,9br)-7-hydroxy-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-methylidenebutanoate

C20H24O6 (360.1572804)


   

14-hydroxy-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-6-one

14-hydroxy-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecan-6-one

C20H32O3 (320.23513219999995)


   

6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-(hydroxymethyl)but-2-enoate

C20H26O6 (362.17292960000003)


   

3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-yl acetate

3a,5a,5b,8,8,11a-hexamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-yl acetate

C32H52O2 (468.3967092)


   

9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O8 (458.194058)


   

(3ar,4r,6ar,9ar,9br)-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

(3ar,4r,6ar,9ar,9br)-9-methyl-3,6-dimethylidene-2-oxo-3ah,4h,5h,6ah,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl (2e)-4-hydroxy-2-({[(2e)-2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O8 (458.194058)


   

6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H32O8 (460.20970719999997)


   

6,9-dimethyl-3-methylidene-2,7-dioxo-3ah,4h,5h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

6,9-dimethyl-3-methylidene-2,7-dioxo-3ah,4h,5h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H28O9 (472.17332380000005)


   

(1s,4s,6r,9s,10r,13r,14r)-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-6,14-diol

(1s,4s,6r,9s,10r,13r,14r)-14-(hydroxymethyl)-5,5,9-trimethyltetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-6,14-diol

C20H34O3 (322.25078140000005)


   

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

9-(acetyloxy)-6,10-dimethyl-3-methylidene-2-oxo-3ah,4h,5h,8h,9h,11ah-cyclodeca[b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C27H34O10 (518.2151864)


   

5-methyl-2-[2-(sec-butoxymethyl)oxiran-2-yl]phenyl 2-methylpropanoate

5-methyl-2-[2-(sec-butoxymethyl)oxiran-2-yl]phenyl 2-methylpropanoate

C18H26O4 (306.1830996)


   

6a-hydroperoxy-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

6a-hydroperoxy-6,9-dimethyl-3-methylidene-2-oxo-3ah,4h,7h,9ah,9bh-azuleno[4,5-b]furan-4-yl 4-hydroxy-2-({[2-(hydroxymethyl)but-2-enoyl]oxy}methyl)but-2-enoate

C25H30O10 (490.183888)