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 (412.3705)


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-Elemene

(1S,2S,4R)-1-ethenyl-1-methyl-2,4-bis(prop-1-en-2-yl)cyclohexane

C15H24 (204.1878)


(-)-beta-elemene is the (-)-enantiomer of beta-elemene that has (1S,2S,4R)-configuration. It has a role as an antineoplastic agent. beta-Elemene is a natural product found in Xylopia sericea, Eupatorium cannabinum, and other organisms with data available. Beta-elemene is one of the isomers of elemene, a lipid soluble sesquiterpene and the active component isolated from the Chinese medicinal herb Rhizoma zedoariae with potential antineoplastic and chemopreventive activities. Although the exact mechanism of action through which beta-elemene exerts its effect has yet to be fully elucidated, this agent appears to induce apoptosis through different mechanisms of action and induces cell cycle arrest at different stages based on the tumor cell type involved. Beta-elemene may sensitize cancer cells to other chemotherapeutic agents. See also: Cannabis sativa subsp. indica top (part of). Beta-elemene, also known as B-elemen or 2,4-diisopropenyl-1-methyl-1-vinylcyclohexane, is a member of the class of compounds known as elemane sesquiterpenoids. Elemane sesquiterpenoids are sesquiterpenoids with a structure based on the elemane skeleton. Elemane is a monocyclic compound consisting of a cyclohexane ring substituted with a methyl group, an ethyl group, and two 1-methylethyl groups at the 1-, 1-, 2-, and 4-position, respectively. Beta-elemene is a fresh, herbal, and waxy tasting compound and can be found in a number of food items such as lovage, anise, spearmint, and orange mint, which makes beta-elemene a potential biomarker for the consumption of these food products. Beta-elemene can be found primarily in saliva. beta-Elemene belongs to the class of organic compounds known as elemane sesquiterpenoids. These are sesquiterpenoids with a structure based on the elemane skeleton. Elemane is a monocyclic compound consisting of a cyclohexane ring substituted with a methyl group, an ethyl group, and two 1-methylethyl groups at the 1-, 1-, 2-, and 4-position, respectively. beta-Elemene can be found in herbs, spices, and root vegetables, which makes beta-elemene a potential biomarker for the consumption of these food products. It is a constituent of sweet flag, juniper oils, and Mentha species. β-Elemene ((-)-β-Elemene; Levo-β-elemene) is isolated from natural plant Curcuma aromatica with an antitumor activity. β-Elemene can induce cell apoptosis. β-Elemene ((-)-β-Elemene; Levo-β-elemene) is isolated from natural plant Curcuma aromatica with an antitumor activity. β-Elemene can induce cell apoptosis.

   

Polygodial

1,2-Naphthalenedicarboxaldehyde, 1,4,4a,5,6,7,8,8a-octahydro-5,5,8a-trimethyl-, (1R-(1alpha,4abeta,8aalpha))-

C15H22O2 (234.162)


Polygodial is an aldehyde. Polygodial is a natural product found in Zygogynum pancheri, Zygogynum acsmithii, and other organisms with data available. D000890 - Anti-Infective Agents > D000935 - Antifungal Agents Polygodial (Poligodial) is an antifungal potentiator[1]. Polygodial is a sesquiterpene with anti-hyperalgesic properties[2].

   

Squalene

InChI=1/C30H50/c1-25(2)15-11-19-29(7)23-13-21-27(5)17-9-10-18-28(6)22-14-24-30(8)20-12-16-26(3)4/h15-18,23-24H,9-14,19-22H2,1-8H3/b27-17+,28-18+,29-23+,30-24

C30H50 (410.3912)


Squalene is an unsaturated aliphatic hydrocarbon (carotenoid) with six unconjugated double bonds found in human sebum (5\\\\%), fish liver oils, yeast lipids, and many vegetable oils (e.g. palm oil, cottonseed oil, rapeseed oil). Squalene is a volatile component of the scent material from Saguinus oedipus (cotton-top tamarin monkey) and Saguinus fuscicollis (saddle-back tamarin monkey) (Hawleys Condensed Chemical Reference). Squalene is a component of adult human sebum that is principally responsible for fixing fingerprints (ChemNetBase). It is a natural organic compound originally obtained for commercial purposes primarily from shark liver oil, though there are botanical sources as well, including rice bran, wheat germ, and olives. All higher organisms produce squalene, including humans. It is a hydrocarbon and a triterpene. Squalene is a biochemical precursor to the whole family of steroids. Oxidation of one of the terminal double bonds of squalene yields 2,3-squalene oxide which undergoes enzyme-catalyzed cyclization to afford lanosterol, which is then elaborated into cholesterol and other steroids. Squalene is a low-density compound often stored in the bodies of cartilaginous fishes such as sharks, which lack a swim bladder and must therefore reduce their body density with fats and oils. Squalene, which is stored mainly in the sharks liver, is lighter than water with a specific gravity of 0.855 (Wikipedia) Squalene is used as a bactericide. It is also an intermediate in the manufacture of pharmaceuticals, rubber chemicals, and colouring materials (Physical Constants of Chemical Substances). Trans-squalene is a clear, slightly yellow liquid with a faint odor. Density 0.858 g / cm3. Squalene is a triterpene consisting of 2,6,10,15,19,23-hexamethyltetracosane having six double bonds at the 2-, 6-, 10-, 14-, 18- and 22-positions with (all-E)-configuration. It has a role as a human metabolite, a plant metabolite, a Saccharomyces cerevisiae metabolite and a mouse metabolite. Squalene is originally obtained from shark liver oil. It is a natural 30-carbon isoprenoid compound and intermediate metabolite in the synthesis of cholesterol. It is not susceptible to lipid peroxidation and provides skin protection. It is ubiquitously distributed in human tissues where it is transported in serum generally in association with very low density lipoproteins. Squalene is investigated as an adjunctive cancer therapy. Squalene is a natural product found in Ficus septica, Garcinia multiflora, and other organisms with data available. squalene is a metabolite found in or produced by Saccharomyces cerevisiae. A natural 30-carbon triterpene. See also: Olive Oil (part of); Shark Liver Oil (part of). A triterpene consisting of 2,6,10,15,19,23-hexamethyltetracosane having six double bonds at the 2-, 6-, 10-, 14-, 18- and 22-positions with (all-E)-configuration. COVID info from COVID-19 Disease Map Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS Squalene is an intermediate product in the synthesis of cholesterol, and shows several pharmacological properties such as hypolipidemic, hepatoprotective, cardioprotective, antioxidant, and antitoxicant activity. Squalene also has anti-fungal activity and can be used for the research of Trichophyton mentagrophytes research[2]. Squalene is an intermediate product in the synthesis of cholesterol, and shows several pharmacological properties such as hypolipidemic, hepatoprotective, cardioprotective, antioxidant, and antitoxicant activity. Squalene also has anti-fungal activity and can be used for the research of Trichophyton mentagrophytes research[2].

   

Phytol

2-Hexadecen-1-ol, 3,7,11,15-tetramethyl-, (theta-(theta,theta-(E)))-

C20H40O (296.3079)


Phytol, also known as trans-phytol or 3,7,11,15-tetramethylhexadec-2-en-1-ol, is a member of the class of compounds known as acyclic diterpenoids. Acyclic diterpenoids are diterpenoids (compounds made of four consecutive isoprene units) that do not contain a cycle. Thus, phytol is considered to be an isoprenoid lipid molecule. Phytol is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Phytol can be found in a number of food items such as salmonberry, rose hip, malus (crab apple), and black raspberry, which makes phytol a potential biomarker for the consumption of these food products. Phytol can be found primarily in human fibroblasts tissue. Phytol is an acyclic diterpene alcohol that can be used as a precursor for the manufacture of synthetic forms of vitamin E and vitamin K1. In ruminants, the gut fermentation of ingested plant materials liberates phytol, a constituent of chlorophyll, which is then converted to phytanic acid and stored in fats. In shark liver it yields pristane . Phytol is a diterpenoid that is hexadec-2-en-1-ol substituted by methyl groups at positions 3, 7, 11 and 15. It has a role as a plant metabolite, a schistosomicide drug and an algal metabolite. It is a diterpenoid and a long-chain primary fatty alcohol. Phytol is a natural product found in Elodea canadensis, Wendlandia formosana, and other organisms with data available. Phytol is an acyclic diterpene alcohol and a constituent of chlorophyll. Phytol is commonly used as a precursor for the manufacture of synthetic forms of vitamin E and vitamin K1. Furthermore, phytol also was shown to modulate transcription in cells via transcription factors PPAR-alpha and retinoid X receptor (RXR). Acyclic diterpene used in making synthetic forms of vitamin E and vitamin K1. Phytol is a natural linear diterpene alcohol which is used in the preparation of vitamins E and K1. It is also a decomposition product of chlorophyll. It is an oily liquid that is nearly insoluble in water, but soluble in most organic solvents. -- Wikipedia. A diterpenoid that is hexadec-2-en-1-ol substituted by methyl groups at positions 3, 7, 11 and 15. C1907 - Drug, Natural Product > C28269 - Phytochemical Acquisition and generation of the data is financially supported in part by CREST/JST. Phytol ((E)?-?Phytol), a diterpene alcohol from chlorophyll widely used as a food additive and in medicinal fields, possesses promising antischistosomal properties. Phytol has antinociceptive and antioxidant activitiesas well as anti-inflammatory and antiallergic effects. Phytol has antimicrobial activity against Mycobacterium tuberculosis and Staphylococcus aureus[1]. Phytol ((E)?-?Phytol), a diterpene alcohol from chlorophyll widely used as a food additive and in medicinal fields, possesses promising antischistosomal properties. Phytol has antinociceptive and antioxidant activitiesas well as anti-inflammatory and antiallergic effects. Phytol has antimicrobial activity against Mycobacterium tuberculosis and Staphylococcus aureus[1].

   

Valencene

NAPHTHALENE, 1,2,3,5,6,7,8,8A-OCTAHYDRO-1,8A-DIMETHYL-7-(1-METHYLETHENYL)-, (1R-(1.ALPHA.,7.BETA.,8A.ALPHA.))-

C15H24 (204.1878)


(+)-valencene is a carbobicyclic compound and sesquiterpene that is 1,2,3,4,4a,5,6,7-octahydronaphthalene which is substituted a prop-1-en-2-yl group at position 3 and by methyl groups at positions 4a and 5 (the 3R,4aS,5R- diastereoisomer). It is a sesquiterpene, a carbobicyclic compound and a polycyclic olefin. Valencene is a natural product found in Xylopia sericea, Helichrysum odoratissimum, and other organisms with data available. Valencene is found in citrus. Valencene is a constituent of orange oil Valencene is a sesquiterpene isolated from Cyperus rotundus, possesses antiallergic, antimelanogenesis, anti-infammatory, and antioxidant activitivies. Valencene inhibits the exaggerated expression of Th2 chemokines and proinflammatory chemokines through blockade of the NF-κB pathway. Valencene is used to flavor foods and drinks[1][2][3].

   

Drimenin

SCHEMBL11031909

C15H22O2 (234.162)


   

alpha-eudesmol

2-(4a,8-dimethyl-2,3,4,5,6,8a-hexahydro-1H-naphthalen-2-yl)propan-2-ol

C15H26O (222.1984)


A eudesmane sesquiterpenoid in which the eudesmane skeleton carries a hydroxy substituent at C-11 and has a double bond between C-3 and C-4.

   

Germacrene D

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

C15H24 (204.1878)


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.

   

germacradienol

2-[(1R,2E,4S,7E)-4,8-dimethylcyclodeca-2,7-dien-1-yl]propan-2-ol

C15H26O (222.1984)


   

beta-Bisabolene

(-)-beta-bisabolene;(S)-(-)-6-methyl-2-(4-methyl-3-cyclohexen-1-yl)-1,5-heptadiene;(S)-1-methyl-4-(5-methyl-1-methylene-4-hexenyl)cyclohexene

C15H24 (204.1878)


S-beta-Bisabolene is found in anise. S-beta-Bisabolene is a constituent of the essential oils of bergamot, lemon and wild carrot Flavouring ingredient used singly or as mixed isomers. Component of FEMA 3331. See also 2,7,10-Bisabolatriene JHG85-W β-Bisabolene is a?sesquiterpene isolated from?opoponax (Commiphora guidotti). β-Bisabolene, an anti-cancer agent, can be used for the study of breast cancer[1]. β-Bisabolene is a?sesquiterpene isolated from?opoponax (Commiphora guidotti). β-Bisabolene, an anti-cancer agent, can be used for the study of breast cancer[1].

   

Gurjunene-alpha

(1aR,4R,4aR,7bS)-1,1,4,7-tetramethyl-1H,1aH,2H,3H,4H,4aH,5H,6H,7bH-cyclopropa[e]azulene

C15H24 (204.1878)


Alpha-Gurjunene or (-)-Alpha-Gurjunene, belongs to the class of organic compounds known as 5,10-cycloaromadendrane sesquiterpenoids. These are aromadendrane sesquiterpenoids that arise from the C5-C10 cyclization of the aromadendrane skeleton. It is formally classified as a polycyclic hydrocarbon although it is biochemically a sesquiterpenoid as it synthesized via isoprene units. Sesquiterpenes are terpenes that contain 15 carbon atoms and are comprised of three isoprene units. The biosynthesis of sesquiterpenes is known to occur mainly through the mevalonic acid pathway (MVA), in the cytosol. However, recent studies have found evidence of pathway crosstalk with the methyl-erythritol-phosphate (MEP) pathway in the cytosol. Farnesyl diphosphate (FPP) is a key intermediate in the biosynthesis of cyclic sesquiterpenes. FPP undergoes several cyclization reactions to yield a diverse number of cyclic arrangements. Alpha-Gurjunene is a neutral, hydrophobic molecule that is insoluble in water. It exists as a colorless clear Liquid and has a woody, balsamic odor. It is used as a perfuming agent. Alpha-gurjunene is found in many plants, essential oils and foods including allspice, bay leaf, carrot seeds, eucalyptus, guava, parsley, black papper, sage and tea tree oil.

   

Drimenol

delta7(8)-15-Hydroxyiresane

C15H26O (222.1984)


   

Bicyclogermacrene

(2Z,6Z)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

C15H24 (204.1878)


Constituent of the peel oil of Citrus junos (yuzu). Bicyclogermacrene is found in many foods, some of which are common oregano, lemon balm, hyssop, and orange mint. Bicyclogermacrene is found in citrus. Bicyclogermacrene is a constituent of the peel oil of Citrus junos (yuzu).

   

Spathulenol

1H-Cycloprop(e)azulen-7-ol, decahydro-1,1,7-trimethyl-4-methylene-, (1aR-(1aalpha,4aalpha,7beta,7abeta,7balpha))-

C15H24O (220.1827)


Spathulenol is a tricyclic sesquiterpenoid that is 4-methylidenedecahydro-1H-cyclopropa[e]azulene carrying three methyl substituents at positions 1, 1 and 7 as well as a hydroxy substituent at position 7. It has a role as a volatile oil component, a plant metabolite, an anaesthetic and a vasodilator agent. It is a sesquiterpenoid, a carbotricyclic compound, a tertiary alcohol and an olefinic compound. Spathulenol is a natural product found in Xylopia aromatica, Xylopia emarginata, and other organisms with data available. See also: Chamomile (part of). A tricyclic sesquiterpenoid that is 4-methylidenedecahydro-1H-cyclopropa[e]azulene carrying three methyl substituents at positions 1, 1 and 7 as well as a hydroxy substituent at position 7. Spathulenol is found in alcoholic beverages. Spathulenol is a constituent of Salvia sclarea (clary sage).

   

1-Epi-alpha-gurjunene

1H-Cycloprop[e]azulene, 1a,2,3,4,4a,5,6,7b-octahydro-1,1,4,7-tetramethyl-, [1aR-(1a.alpha.,4.alpha.,4a.beta.,7b.alpha.)]-

C15H24 (204.1878)


1-Epi-alpha-gurjunene is a constituent of Tolu balsam (Myroxylon balsamum var. balsamum). 1-Epi-alpha-gurjunene is a food flavouring. Constituent of Tolu balsam (Myroxylon balsamum variety balsamum). Food flavouring

   

Polygodial

5,5,8a-trimethyl-1,4,4a,5,6,7,8,8a-octahydronaphthalene-1,2-dicarbaldehyde

C15H22O2 (234.162)


   

Perhydrosqualene

2,6,10,15,19,23-hexamethyltetracosane

C30H62 (422.4851)


Squalane, found in certain fish oils (especially shark liver oil), and some vegetable oils, is a saturated derivative of Squalene. Squalane shows anticancer, antioxidant, skin hydrating, and emollient activities[1]. Squalane, found in certain fish oils (especially shark liver oil), and some vegetable oils, is a saturated derivative of Squalene. Squalane shows anticancer, antioxidant, skin hydrating, and emollient activities[1].

   

Aristolone

2H-Cyclopropa(a)naphthalen-2-one, 1,1a,4,5,6,7,7a,7b-octahydro-1,1,7,7a-tetramethyl-, (1aalpha,7alpha,7aalpha,7balpha)-

C15H22O (218.1671)


Aristolone is a natural product found in Litophyton erectum, Aristolochia clematitis, and other organisms with data available. Aristolone is a sesquiterpene isolated from Aristolochia debilis[1]. Aristolone is a sesquiterpene isolated from Aristolochia debilis[1].

   

4-Aromadendren-3-one

4-Aromadendren-3-one

C15H22O (218.1671)


   

3,7,11,11-Tetramethylbicyclo[8.1.0]undeca-2,6-diene

3,7,11,11-Tetramethylbicyclo[8.1.0]undeca-2,6-diene

C15H24 (204.1878)


   

Stigmasterol

Stigmasterol

C29H48O (412.3705)


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.

   

Anadensin

Anadensin

C20H32O2 (304.2402)


A natural product found in Porella chilensis and Anastrepta orcadensis.

   

SQUALANE

SQUALANE

C30H62 (422.4851)


Squalane, found in certain fish oils (especially shark liver oil), and some vegetable oils, is a saturated derivative of Squalene. Squalane shows anticancer, antioxidant, skin hydrating, and emollient activities[1]. Squalane, found in certain fish oils (especially shark liver oil), and some vegetable oils, is a saturated derivative of Squalene. Squalane shows anticancer, antioxidant, skin hydrating, and emollient activities[1].

   

Germacrene D

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

C15H24 (204.1878)


(-)-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).

   

Squalene

InChI=1\C30H50\c1-25(2)15-11-19-29(7)23-13-21-27(5)17-9-10-18-28(6)22-14-24-30(8)20-12-16-26(3)4\h15-18,23-24H,9-14,19-22H2,1-8H3\b27-17+,28-18+,29-23+,30-24

C30H50 (410.3912)


Squalene, also known as (e,e,e,e)-squalene or all-trans-squalene, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Squalene can be found in a number of food items such as apricot, savoy cabbage, peach (variety), and bitter gourd, which makes squalene a potential biomarker for the consumption of these food products. Squalene can be found primarily in blood, feces, and sweat, as well as throughout most human tissues. In humans, squalene is involved in several metabolic pathways, some of which include risedronate action pathway, steroid biosynthesis, alendronate action pathway, and fluvastatin action pathway. Squalene is also involved in several metabolic disorders, some of which include cholesteryl ester storage disease, CHILD syndrome, hyper-igd syndrome, and wolman disease. Squalene is a natural 30-carbon organic compound originally obtained for commercial purposes primarily from shark liver oil (hence its name, as Squalus is a genus of sharks), although plant sources (primarily vegetable oils) are now used as well, including amaranth seed, rice bran, wheat germ, and olives. Yeast cells have been genetically engineered to produce commercially useful quantities of "synthetic" squalene . COVID info from COVID-19 Disease Map Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS Window width to select the precursor ion was 3 Da.; CONE_VOLTAGE was 20 V.; This record was created by the financial support of MEXT/JSPS KAKENHI Grant Number 19HP8024 to the Mass Spectrometry Society of Japan. Squalene is an intermediate product in the synthesis of cholesterol, and shows several pharmacological properties such as hypolipidemic, hepatoprotective, cardioprotective, antioxidant, and antitoxicant activity. Squalene also has anti-fungal activity and can be used for the research of Trichophyton mentagrophytes research[2]. Squalene is an intermediate product in the synthesis of cholesterol, and shows several pharmacological properties such as hypolipidemic, hepatoprotective, cardioprotective, antioxidant, and antitoxicant activity. Squalene also has anti-fungal activity and can be used for the research of Trichophyton mentagrophytes research[2].

   

norpinguisone methyl ester

norpinguisone methyl ester

C15H18O4 (262.1205)


A natural product found particularly in Porella chilensis and Porella navicularis.

   

bicyclogermacrene

bicyclogermacrene

C15H24 (204.1878)


A sesquiterpene derived from germacrane by dehydrogenation across the C(1)-C(10) and C(4)-C(5) bonds and cyclisation across the C(8)-C(9) bond.

   

fusicoauritone

fusicoauritone

C20H32O2 (304.2402)


A natural product found in Porella chilensis.

   

norpinguisone acetate

norpinguisone acetate

C16H20O4 (276.1362)


A natural product found in Porella chilensis and Porella recurva.

   

ent-Kaur-16-en-19-oic acid

ent-Kaur-16-en-19-oic acid

C20H30O2 (302.2246)


   

β-Bisabolene

(-)-beta-bisabolene;(S)-(-)-6-methyl-2-(4-methyl-3-cyclohexen-1-yl)-1,5-heptadiene;(S)-1-methyl-4-(5-methyl-1-methylene-4-hexenyl)cyclohexene

C15H24 (204.1878)


(S)-beta-bisabolene is a beta-bisabolene which has (1S)-configuration. It is an enantiomer of a (R)-beta-bisabolene. beta-Bisabolene is a natural product found in Rattus rattus, Eupatorium cannabinum, and other organisms with data available. A beta-bisabolene which has (1S)-configuration. β-Bisabolene is a?sesquiterpene isolated from?opoponax (Commiphora guidotti). β-Bisabolene, an anti-cancer agent, can be used for the study of breast cancer[1]. β-Bisabolene is a?sesquiterpene isolated from?opoponax (Commiphora guidotti). β-Bisabolene, an anti-cancer agent, can be used for the study of breast cancer[1].

   

Phytol

2-Hexadecen-1-ol, 3,7,11,15-tetramethyl-, (theta-(theta,theta-(E)))-

C20H40O (296.3079)


Phytol is a key acyclic diterpene alcohol that is a precursor for vitamins E and K1. Phytol is an extremely common terpenoid, found in all plants esterified to Chlorophyll to confer lipid solubility[citation needed].; Phytol is a natural linear diterpene alcohol which is used in the preparation of vitamins E and K1. It is also a decomposition product of chlorophyll. It is an oily liquid that is nearly insoluble in water, but soluble in most organic solvents. -- Wikipedia C1907 - Drug, Natural Product > C28269 - Phytochemical Phytol ((E)?-?Phytol), a diterpene alcohol from chlorophyll widely used as a food additive and in medicinal fields, possesses promising antischistosomal properties. Phytol has antinociceptive and antioxidant activitiesas well as anti-inflammatory and antiallergic effects. Phytol has antimicrobial activity against Mycobacterium tuberculosis and Staphylococcus aureus[1]. Phytol ((E)?-?Phytol), a diterpene alcohol from chlorophyll widely used as a food additive and in medicinal fields, possesses promising antischistosomal properties. Phytol has antinociceptive and antioxidant activitiesas well as anti-inflammatory and antiallergic effects. Phytol has antimicrobial activity against Mycobacterium tuberculosis and Staphylococcus aureus[1].

   

(+)-alpha-Pinguisene

(+)-alpha-Pinguisene

C15H24 (204.1878)


   

4-Aromadendrene

1,1,4,7-tetramethyl-1H,1aH,2H,3H,4H,4aH,5H,6H,7bH-cyclopropa[e]azulene

C15H24 (204.1878)


   

Spatulenol

1,7,7-trimethyl-4-methylidene-decahydro-1H-cyclopropa[e]azulen-1-ol

C15H24O (220.1827)


   

ent-kaurene

(5beta,8alpha,9beta,10alpha,13alpha)-kaur-16-ene

C20H32 (272.2504)


   

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 (412.3705)


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

   

(±)-β-Elemene

(1S,2S,4R)-1-ethenyl-1-methyl-2,4-di(prop-1-en-2-yl)cyclohexane

C15H24 (204.1878)


β-Elemene ((-)-β-Elemene; Levo-β-elemene) is isolated from natural plant Curcuma aromatica with an antitumor activity. β-Elemene can induce cell apoptosis. β-Elemene ((-)-β-Elemene; Levo-β-elemene) is isolated from natural plant Curcuma aromatica with an antitumor activity. β-Elemene can induce cell apoptosis.

   

Hepanal

[1aR-(1a.alpha.,4.alpha.,4a.beta.,7b.alpha.)]-1a,2,3,4,4a,5,6,7b-octahydro-1,1,4,7-tetramethyl-1H-Cycloprop[e]azulene

C15H24 (204.1878)


   

473-16-5

2-Naphthalenemethanol, 1,2,3,4,4a,5,6,8a-octahydro-alpha,alpha,4a,8-tetramethyl-, (2R,4aR,8aR)-

C15H26O (222.1984)


   

Valencene

NAPHTHALENE, 1,2,3,5,6,7,8,8A-OCTAHYDRO-1,8A-DIMETHYL-7-(1-METHYLETHENYL)-, (1R-(1.ALPHA.,7.BETA.,8A.ALPHA.))-

C15H24 (204.1878)


(+)-valencene is a carbobicyclic compound and sesquiterpene that is 1,2,3,4,4a,5,6,7-octahydronaphthalene which is substituted a prop-1-en-2-yl group at position 3 and by methyl groups at positions 4a and 5 (the 3R,4aS,5R- diastereoisomer). It is a sesquiterpene, a carbobicyclic compound and a polycyclic olefin. Valencene is a natural product found in Xylopia sericea, Helichrysum odoratissimum, and other organisms with data available. Constituent of orange oil. Valencene is found in many foods, some of which are citrus, common oregano, rosemary, and sweet orange. Valencene is a sesquiterpene isolated from Cyperus rotundus, possesses antiallergic, antimelanogenesis, anti-infammatory, and antioxidant activitivies. Valencene inhibits the exaggerated expression of Th2 chemokines and proinflammatory chemokines through blockade of the NF-κB pathway. Valencene is used to flavor foods and drinks[1][2][3].

   

alpha-gurjunene

(-)-alpha-Gurjunene

C15H24 (204.1878)


1-epi-alpha-gurjunene is a member of the class of compounds known as 5,10-cycloaromadendrane sesquiterpenoids. 5,10-cycloaromadendrane sesquiterpenoids are aromadendrane sesquiterpenoids that arise from the C5-C10 cyclization of the aromadendrane skeleton. Within the cell, 1-epi-alpha-gurjunene is primarily located in the membrane (predicted from logP). It can also be found in the extracellular space.

   

(+)-Bicyclogermacrene

(+)-Bicyclogermacrene

C15H24 (204.1878)


   

Germacra-1(10),5-dien-4beta-ol

Germacra-1(10),5-dien-4beta-ol

C15H26O (222.1984)


A 1(10),5-germacradien-4-ol in which the hydroxy group has S-configuration

   

Pinguisenol

Pinguisenol

C15H26O (222.1984)


A natural product found in Porella chilensis and Porella acutifolia.

   

(1S,2E,10R)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

(1S,2E,10R)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

C15H24 (204.1878)


   

norpinguisone

norpinguisone

C13H16O2 (204.115)


A natural product found particularly in Porella chilensis and Porella navicularis.

   

methyl 2-{3-acetyl-1,5,5-trimethylbicyclo[5.1.0]oct-2-en-2-yl}acetate

methyl 2-{3-acetyl-1,5,5-trimethylbicyclo[5.1.0]oct-2-en-2-yl}acetate

C16H24O3 (264.1725)


   

(2e,6e)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

(2e,6e)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

C15H24 (204.1878)


   

(2r)-1,1-dimethyl-3-methylidene-2-[(2e)-3-methylpenta-2,4-dien-1-yl]cyclohexane

(2r)-1,1-dimethyl-3-methylidene-2-[(2e)-3-methylpenta-2,4-dien-1-yl]cyclohexane

C15H24 (204.1878)


   

(1as,4s,4as,7br)-1,1,4,7-tetramethyl-1ah,2h,3h,4h,4ah,5h,6h,7bh-cyclopropa[e]azulene

(1as,4s,4as,7br)-1,1,4,7-tetramethyl-1ah,2h,3h,4h,4ah,5h,6h,7bh-cyclopropa[e]azulene

C15H24 (204.1878)


   

(1as,4as,5r,7br)-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah,5h-cyclopropa[e]azulen-6-one

(1as,4as,5r,7br)-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah,5h-cyclopropa[e]azulen-6-one

C15H22O (218.1671)


   

(4as,5r,8as)-5-[(1r)-1-hydroxy-4-methylpent-3-en-1-yl]-2,5-dimethyl-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

(4as,5r,8as)-5-[(1r)-1-hydroxy-4-methylpent-3-en-1-yl]-2,5-dimethyl-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

C20H30O3 (318.2195)


   

(1as,5s,6r,7r,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h,7h-cyclopropa[e]azulen-7-yl acetate

(1as,5s,6r,7r,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h,7h-cyclopropa[e]azulen-7-yl acetate

C17H26O4 (294.1831)


   

(4as,7s,7ar)-7,7a-dimethyl-4ah,5h,6h,7h,8h-indeno[5,6-b]furan-4-one

(4as,7s,7ar)-7,7a-dimethyl-4ah,5h,6h,7h,8h-indeno[5,6-b]furan-4-one

C13H16O2 (204.115)


   

(1's,3r,3's,4r,5s,5's,6's,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

(1's,3r,3's,4r,5s,5's,6's,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

C15H22O5 (282.1467)


   

(1as,5s,7br)-5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h-cyclopropa[e]azulen-6-one

(1as,5s,7br)-5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h-cyclopropa[e]azulen-6-one

C15H20O2 (232.1463)


   

2-[(1s,2s,3ar,7as)-2-hydroxy-1,3a,4,7a-tetramethyl-6-oxo-1,2,3,7-tetrahydroinden-5-yl]acetaldehyde

2-[(1s,2s,3ar,7as)-2-hydroxy-1,3a,4,7a-tetramethyl-6-oxo-1,2,3,7-tetrahydroinden-5-yl]acetaldehyde

C15H22O3 (250.1569)


   

5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h,7h-cyclopropa[e]azulen-7-yl acetate

5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h,7h-cyclopropa[e]azulen-7-yl acetate

C17H26O4 (294.1831)


   

(1s,2s,3s,9s,11r,13r)-1,2,3,13-tetramethyl-7,10-dioxatetracyclo[7.4.0.0²,¹¹.0⁴,⁸]trideca-4(8),5-diene

(1s,2s,3s,9s,11r,13r)-1,2,3,13-tetramethyl-7,10-dioxatetracyclo[7.4.0.0²,¹¹.0⁴,⁸]trideca-4(8),5-diene

C15H20O2 (232.1463)


   

(2z,7s,10r)-10-isopropyl-3,7-dimethylcyclodec-2-ene-1,6-dione

(2z,7s,10r)-10-isopropyl-3,7-dimethylcyclodec-2-ene-1,6-dione

C15H24O2 (236.1776)


   

2,6,6,9-tetramethyl-10-oxatricyclo[6.4.0.0²,⁴]dodeca-1(12),8-dien-11-one

2,6,6,9-tetramethyl-10-oxatricyclo[6.4.0.0²,⁴]dodeca-1(12),8-dien-11-one

C15H20O2 (232.1463)


   

(1as,5s,6r,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

(1as,5s,6r,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

C15H22O3 (250.1569)


   

(1ar,4r,4ar,7bs)-1,1,4,7-tetramethyl-1ah,2h,3h,4h,4ah,5h,7bh-cyclopropa[e]azulen-6-one

(1ar,4r,4ar,7bs)-1,1,4,7-tetramethyl-1ah,2h,3h,4h,4ah,5h,7bh-cyclopropa[e]azulen-6-one

C15H22O (218.1671)


   

3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah,5h-cyclopropa[e]azulen-6-one

3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah,5h-cyclopropa[e]azulen-6-one

C15H22O (218.1671)


   

(2r,3s,3as,4r,7as)-6-ethenyl-3,3a,7,7a-tetramethyl-2,3,4,5-tetrahydro-1h-indene-2,4-diol

(2r,3s,3as,4r,7as)-6-ethenyl-3,3a,7,7a-tetramethyl-2,3,4,5-tetrahydro-1h-indene-2,4-diol

C15H24O2 (236.1776)


   

5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

C15H22O3 (250.1569)


   

(-)-β-bisabolene

(-)-β-bisabolene

C15H24 (204.1878)


   

(1r,2s,5s,6s,12r,15r)-5,14-dimethyl-3,11-dioxatetracyclo[7.5.1.0²,⁶.0¹²,¹⁵]pentadeca-8,13-diene-4,10-dione

(1r,2s,5s,6s,12r,15r)-5,14-dimethyl-3,11-dioxatetracyclo[7.5.1.0²,⁶.0¹²,¹⁵]pentadeca-8,13-diene-4,10-dione

C15H16O4 (260.1049)


   

3,7,11,11-tetramethylbicyclo[8.1.0]undec-6-en-2-ol

3,7,11,11-tetramethylbicyclo[8.1.0]undec-6-en-2-ol

C15H26O (222.1984)


   

(5,5,8a-trimethyl-2-methylidene-hexahydro-1h-naphthalen-1-yl)methanol

(5,5,8a-trimethyl-2-methylidene-hexahydro-1h-naphthalen-1-yl)methanol

C15H26O (222.1984)


   

4,4a,7,7a-tetramethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan

4,4a,7,7a-tetramethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan

C15H22O (218.1671)


   

(+)-α-pinguisene

(+)-α-pinguisene

C15H24 (204.1878)


   

2-[(1r,3as,4r,5e,7as)-1,3a,4,7a-tetramethyl-hexahydroinden-5-ylidene]ethanol

2-[(1r,3as,4r,5e,7as)-1,3a,4,7a-tetramethyl-hexahydroinden-5-ylidene]ethanol

C15H26O (222.1984)


   

2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

C20H30O2 (302.2246)


   

8a-hydroxy-5-isopropyl-3,8-dimethyl-1,3a,5,6,7,8-hexahydroazulen-4-one

8a-hydroxy-5-isopropyl-3,8-dimethyl-1,3a,5,6,7,8-hexahydroazulen-4-one

C15H24O2 (236.1776)


   

(1r,5s,7s,11r)-3,3,7,11-tetramethyl-12-oxatetracyclo[6.4.0.0¹,¹¹.0⁵,⁷]dodec-8-en-10-one

(1r,5s,7s,11r)-3,3,7,11-tetramethyl-12-oxatetracyclo[6.4.0.0¹,¹¹.0⁵,⁷]dodec-8-en-10-one

C15H20O2 (232.1463)


   

(3as,5r,8s,8as)-8a-hydroxy-5-isopropyl-8-methyl-3-methylidene-hexahydro-1h-azulen-4-one

(3as,5r,8s,8as)-8a-hydroxy-5-isopropyl-8-methyl-3-methylidene-hexahydro-1h-azulen-4-one

C15H24O2 (236.1776)


   

(4s,4as,7r,7as)-4,4a,7,7a-tetramethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan

(4s,4as,7r,7as)-4,4a,7,7a-tetramethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan

C15H22O (218.1671)


   

(4as,5s,6s,8ar)-6-hydroxy-2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

(4as,5s,6s,8ar)-6-hydroxy-2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

C20H30O3 (318.2195)


   

[(1r,2e,6z,10r)-7,11,11-trimethylbicyclo[8.1.0]undeca-2,6-dien-3-yl]methanol

[(1r,2e,6z,10r)-7,11,11-trimethylbicyclo[8.1.0]undeca-2,6-dien-3-yl]methanol

C15H24O (220.1827)


   

4-isopropyl-1,7-dimethylcyclodeca-2,7-dien-1-ol

4-isopropyl-1,7-dimethylcyclodeca-2,7-dien-1-ol

C15H26O (222.1984)


   

(1s,2s,3s,4ar,8ar)-2,5,5,8a-tetramethyl-1-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-1h-naphthalene-2,3-diol

(1s,2s,3s,4ar,8ar)-2,5,5,8a-tetramethyl-1-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-1h-naphthalene-2,3-diol

C20H34O2 (306.2559)


   

(4as,5s,8ar)-2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

(4as,5s,8ar)-2,5-dimethyl-5-(4-methylpent-3-en-1-yl)-3,4,4a,6,7,8-hexahydronaphthalene-1,8a-dicarbaldehyde

C20H30O2 (302.2246)


   

(1as,5s,6s,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

(1as,5s,6s,7br)-5,6-dihydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,6h-cyclopropa[e]azulen-7-one

C15H22O3 (250.1569)


   

(1r,4r,8s,11s,12r)-4-hydroxy-12-isopropyl-1,4,8-trimethyltricyclo[9.3.0.0³,⁷]tetradec-3(7)-en-6-one

(1r,4r,8s,11s,12r)-4-hydroxy-12-isopropyl-1,4,8-trimethyltricyclo[9.3.0.0³,⁷]tetradec-3(7)-en-6-one

C20H32O2 (304.2402)


   

5-ethenyl-1,3a,4,7a-tetramethyl-hexahydroinden-5-ol

5-ethenyl-1,3a,4,7a-tetramethyl-hexahydroinden-5-ol

C15H26O (222.1984)


   

2-[(1s,2s,3s,4s,6s,7s,8s)-4-hydroxy-2,3,6,7-tetramethyl-9-oxo-10,11-dioxatricyclo[6.2.1.0²,⁶]undecan-8-yl]acetaldehyde

2-[(1s,2s,3s,4s,6s,7s,8s)-4-hydroxy-2,3,6,7-tetramethyl-9-oxo-10,11-dioxatricyclo[6.2.1.0²,⁶]undecan-8-yl]acetaldehyde

C15H22O5 (282.1467)


   

(1s,7s,8s,10s,11s,12s)-7,8,11,12-tetramethyl-3,13-dioxatetracyclo[8.2.1.0²,⁶.0⁸,¹²]trideca-2(6),4-diene

(1s,7s,8s,10s,11s,12s)-7,8,11,12-tetramethyl-3,13-dioxatetracyclo[8.2.1.0²,⁶.0⁸,¹²]trideca-2(6),4-diene

C15H20O2 (232.1463)


   

(3as,5r,8s,8as)-8a-hydroxy-5-isopropyl-3,8-dimethyl-1,3a,5,6,7,8-hexahydroazulen-4-one

(3as,5r,8s,8as)-8a-hydroxy-5-isopropyl-3,8-dimethyl-1,3a,5,6,7,8-hexahydroazulen-4-one

C15H24O2 (236.1776)


   

(1s,3as,6as,7r,10ar)-7-[(1s)-1-hydroxy-4-methylpent-3-en-1-yl]-7-methyl-4-methylidene-octahydro-1h-naphtho[4,4a-c]furan-1-ol

(1s,3as,6as,7r,10ar)-7-[(1s)-1-hydroxy-4-methylpent-3-en-1-yl]-7-methyl-4-methylidene-octahydro-1h-naphtho[4,4a-c]furan-1-ol

C20H32O3 (320.2351)


   

(1as,4ar,5s,7br)-5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah-cyclopropa[e]azulen-6-one

(1as,4ar,5s,7br)-5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah-cyclopropa[e]azulen-6-one

C15H22O2 (234.162)


   

methyl (1s,4ar,5r,8ar)-1,4a-dimethyl-6-methylidene-5-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-2h-naphthalene-1-carboxylate

methyl (1s,4ar,5r,8ar)-1,4a-dimethyl-6-methylidene-5-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-2h-naphthalene-1-carboxylate

C21H32O2 (316.2402)


   

4a-hydroxy-1,1,4,7-tetramethyl-1ah,2h,3h,4h,5h,7bh-cyclopropa[e]azulen-6-one

4a-hydroxy-1,1,4,7-tetramethyl-1ah,2h,3h,4h,5h,7bh-cyclopropa[e]azulen-6-one

C15H22O2 (234.162)


   

(3r)-1-[(1r)-2,2-dimethyl-6-methylidenecyclohexyl]-3-methoxy-3-methylpent-4-en-2-ol

(3r)-1-[(1r)-2,2-dimethyl-6-methylidenecyclohexyl]-3-methoxy-3-methylpent-4-en-2-ol

C16H28O2 (252.2089)


   

4a,7,7a-trimethyl-5h,6h,7h,8h-indeno[5,6-b]furan-4-one

4a,7,7a-trimethyl-5h,6h,7h,8h-indeno[5,6-b]furan-4-one

C14H18O2 (218.1307)


   

(6r,10s,15r,19s)-2,6,10,15,19,23-hexamethyltetracosane

(6r,10s,15r,19s)-2,6,10,15,19,23-hexamethyltetracosane

C30H62 (422.4851)


   

7-(1-hydroxy-4-methylpent-3-en-1-yl)-7-methyl-4-methylidene-octahydro-1h-naphtho[4,4a-c]furan-1-ol

7-(1-hydroxy-4-methylpent-3-en-1-yl)-7-methyl-4-methylidene-octahydro-1h-naphtho[4,4a-c]furan-1-ol

C20H32O3 (320.2351)


   

methyl 2-[(1r,7s)-3-acetyl-1,5,5-trimethylbicyclo[5.1.0]oct-2-en-2-yl]acetate

methyl 2-[(1r,7s)-3-acetyl-1,5,5-trimethylbicyclo[5.1.0]oct-2-en-2-yl]acetate

C16H24O3 (264.1725)


   

5-ethenyl-1,3a,4,7a-tetramethyl-2,3,4,7-tetrahydro-1h-indene

5-ethenyl-1,3a,4,7a-tetramethyl-2,3,4,7-tetrahydro-1h-indene

C15H24 (204.1878)


   

(1as,7s,7as,7br)-1,1,7,7a-tetramethyl-1ah,4h,5h,6h,7h,7bh-cyclopropa[a]naphthalen-2-one

(1as,7s,7as,7br)-1,1,7,7a-tetramethyl-1ah,4h,5h,6h,7h,7bh-cyclopropa[a]naphthalen-2-one

C15H22O (218.1671)


   

8a-hydroxy-5-isopropyl-8-methyl-3-methylidene-hexahydro-1h-azulen-4-one

8a-hydroxy-5-isopropyl-8-methyl-3-methylidene-hexahydro-1h-azulen-4-one

C15H24O2 (236.1776)


   

methyl 2-(2-hydroxy-1,3a,4,7a-tetramethyl-6-oxo-hexahydroinden-5-yl)acetate

methyl 2-(2-hydroxy-1,3a,4,7a-tetramethyl-6-oxo-hexahydroinden-5-yl)acetate

C16H26O4 (282.1831)


   

(1s,4ar,5s,8ar)-1,4a-dimethyl-6-methylidene-5-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-2h-naphthalene-1-carboxylic acid

(1s,4ar,5s,8ar)-1,4a-dimethyl-6-methylidene-5-[(2e)-3-methylpenta-2,4-dien-1-yl]-hexahydro-2h-naphthalene-1-carboxylic acid

C20H30O2 (302.2246)


   

(1r,2s,3s,6e,10r)-3,7,11,11-tetramethylbicyclo[8.1.0]undec-6-en-2-ol

(1r,2s,3s,6e,10r)-3,7,11,11-tetramethylbicyclo[8.1.0]undec-6-en-2-ol

C15H26O (222.1984)


   

(1r,2e,6e,10s)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

(1r,2e,6e,10s)-3,7,11,11-tetramethylbicyclo[8.1.0]undeca-2,6-diene

C15H24 (204.1878)


   

(3e)-3-[(4e)-8-hydroxy-4,8-dimethyldeca-4,9-dien-1-ylidene]-5-(2-methylprop-1-en-1-yl)oxolan-2-one

(3e)-3-[(4e)-8-hydroxy-4,8-dimethyldeca-4,9-dien-1-ylidene]-5-(2-methylprop-1-en-1-yl)oxolan-2-one

C20H30O3 (318.2195)


   

(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 (204.1878)


   

(1's,3s,3's,4r,5r,5's,6's,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

(1's,3s,3's,4r,5r,5's,6's,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

C15H22O5 (282.1467)


   

2-[(1r,3as,4r,5z,7as)-1,3a,4,7a-tetramethyl-hexahydroinden-5-ylidene]ethanol

2-[(1r,3as,4r,5z,7as)-1,3a,4,7a-tetramethyl-hexahydroinden-5-ylidene]ethanol

C15H26O (222.1984)


   

(1as,4s,4as,7r,7ar,7bs)-1,1,4,7-tetramethyl-octahydrocyclopropa[e]azulene-4,7-diol

(1as,4s,4as,7r,7ar,7bs)-1,1,4,7-tetramethyl-octahydrocyclopropa[e]azulene-4,7-diol

C15H26O2 (238.1933)


   

(5as,9as,9br)-6,6,9a-trimethyl-1h,5h,5ah,7h,8h,9h,9bh-naphtho[1,2-c]furan-3-one

(5as,9as,9br)-6,6,9a-trimethyl-1h,5h,5ah,7h,8h,9h,9bh-naphtho[1,2-c]furan-3-one

C15H22O2 (234.162)


   

(1's,3's,5's,6'r,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

(1's,3's,5's,6'r,7's,8's)-4,5-dihydroxy-5',6',7',8'-tetramethyl-2'-oxaspiro[oxolane-3,4'-tricyclo[4.2.1.0³,⁷]nonan]-2-one

C15H22O5 (282.1467)


   

(1r,2r,5s,6s,7s)-7-ethenyl-2,5,6-trimethyl-8-oxatricyclo[5.2.2.0¹,⁵]undecane-9,10-dione

(1r,2r,5s,6s,7s)-7-ethenyl-2,5,6-trimethyl-8-oxatricyclo[5.2.2.0¹,⁵]undecane-9,10-dione

C15H20O3 (248.1412)


   

methyl (3r,3ar,7r,7as)-6-ethenyl-3,7,7a-trimethyl-4-oxo-1,2,3,7-tetrahydroindene-3a-carboxylate

methyl (3r,3ar,7r,7as)-6-ethenyl-3,7,7a-trimethyl-4-oxo-1,2,3,7-tetrahydroindene-3a-carboxylate

C16H22O3 (262.1569)


   

[(1s,4as,8as)-5,5,8a-trimethyl-2-methylidene-hexahydro-1h-naphthalen-1-yl]methanol

[(1s,4as,8as)-5,5,8a-trimethyl-2-methylidene-hexahydro-1h-naphthalen-1-yl]methanol

C15H26O (222.1984)


   

2,3,4-trimethyl-3-(3-methylidenepent-4-en-1-yl)cyclohexan-1-one

2,3,4-trimethyl-3-(3-methylidenepent-4-en-1-yl)cyclohexan-1-one

C15H24O (220.1827)


   

(2s,3s,3as,4r,7as)-6-ethenyl-3,3a,7,7a-tetramethyl-2,3,4,5-tetrahydro-1h-indene-2,4-diol

(2s,3s,3as,4r,7as)-6-ethenyl-3,3a,7,7a-tetramethyl-2,3,4,5-tetrahydro-1h-indene-2,4-diol

C15H24O2 (236.1776)


   

(1r,3s,7r,8s,11s,12r)-3-hydroxy-12-isopropyl-1,4,8-trimethyltricyclo[9.3.0.0³,⁷]tetradec-4-en-6-one

(1r,3s,7r,8s,11s,12r)-3-hydroxy-12-isopropyl-1,4,8-trimethyltricyclo[9.3.0.0³,⁷]tetradec-4-en-6-one

C20H32O2 (304.2402)


   

4,7a-dimethyl (4r,4ar,7r,7as)-4a,7-dimethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan-4,7a-dicarboxylate

4,7a-dimethyl (4r,4ar,7r,7as)-4a,7-dimethyl-4h,5h,6h,7h,8h-indeno[5,6-b]furan-4,7a-dicarboxylate

C17H22O5 (306.1467)


   

(1r,3r,7r,8r,9s,12r)-9,12-dimethyl-4,14,16-trioxapentacyclo[6.4.3.1³,⁷.0¹,⁹.0³,⁷]hexadecane-5,15-dione

(1r,3r,7r,8r,9s,12r)-9,12-dimethyl-4,14,16-trioxapentacyclo[6.4.3.1³,⁷.0¹,⁹.0³,⁷]hexadecane-5,15-dione

C15H18O5 (278.1154)


   

5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah-cyclopropa[e]azulen-6-one

5-hydroxy-3,3,5,7b-tetramethyl-1h,1ah,2h,4h,4ah-cyclopropa[e]azulen-6-one

C15H22O2 (234.162)


   

7,8,11,12-tetramethyl-3,13-dioxatetracyclo[8.2.1.0²,⁶.0⁸,¹²]trideca-2(6),4-diene

7,8,11,12-tetramethyl-3,13-dioxatetracyclo[8.2.1.0²,⁶.0⁸,¹²]trideca-2(6),4-diene

C15H20O2 (232.1463)


   

(1s,2s,5s,6s,12s,13s,15r,16r)-5,15-dimethyl-3,11,14-trioxapentacyclo[7.6.1.0²,⁶.0¹²,¹⁶.0¹³,¹⁵]hexadec-8-ene-4,10-dione

(1s,2s,5s,6s,12s,13s,15r,16r)-5,15-dimethyl-3,11,14-trioxapentacyclo[7.6.1.0²,⁶.0¹²,¹⁶.0¹³,¹⁵]hexadec-8-ene-4,10-dione

C15H16O5 (276.0998)


   

(5r,9s,13s)-5,9-dimethyl-14-methylidenetetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-5-carboxylic acid

(5r,9s,13s)-5,9-dimethyl-14-methylidenetetracyclo[11.2.1.0¹,¹⁰.0⁴,⁹]hexadecane-5-carboxylic acid

C20H30O2 (302.2246)


   

(1as,4s,4as,7as,7bs)-1,1,4-trimethyl-7-methylidene-octahydro-1ah-cyclopropa[e]azulene

(1as,4s,4as,7as,7bs)-1,1,4-trimethyl-7-methylidene-octahydro-1ah-cyclopropa[e]azulene

C15H24 (204.1878)


   

(1r,9r,11s,14s)-9,14-dimethyl-4,12-dioxatetracyclo[9.2.1.0¹,⁹.0³,⁷]tetradeca-3(7),5-diene-8,13-dione

(1r,9r,11s,14s)-9,14-dimethyl-4,12-dioxatetracyclo[9.2.1.0¹,⁹.0³,⁷]tetradeca-3(7),5-diene-8,13-dione

C14H14O4 (246.0892)