NCBI Taxonomy: 124948

Ekebergia (ncbi_taxid: 124948)

found 154 associated metabolites at genus taxonomy rank level.

Ancestor: Meliaceae

Child Taxonomies: Ekebergia capensis, Ekebergia pterophylla, Ekebergia benguelensis

Scopoletin

7-hydroxy-6-methoxy-2H-chromen-2-one

C10H8O4 (192.0423)


Scopoletin is a hydroxycoumarin that is umbelliferone bearing a methoxy substituent at position 6. It has a role as a plant growth regulator and a plant metabolite. It is functionally related to an umbelliferone. Scopoletin is a natural product found in Ficus auriculata, Haplophyllum cappadocicum, and other organisms with data available. Scopoletin is a coumarin compound found in several plants including those in the genus Scopolia and the genus Brunfelsia, as well as chicory (Cichorium), redstem wormwood (Artemisia scoparia), stinging nettle (Urtica dioica), passion flower (Passiflora), noni (Morinda citrifolia fruit) and European black nightshade (Solanum nigrum) that is comprised of umbelliferone with a methoxy group substituent at position 6. Scopoletin is used to standardize and establish pharmacokinetic properties for products derived from the plants that produce it, such as noni extract. Although the mechanism(s) of action have not yet been established, this agent has potential antineoplastic, antidopaminergic, antioxidant, anti-inflammatory and anticholinesterase effects. Plant growth factor derived from the root of Scopolia carniolica or Scopolia japonica. See also: Arnica montana Flower (part of); Lycium barbarum fruit (part of); Viburnum opulus root (part of). Isolated from Angelica acutiloba (Dong Dang Gui). Scopoletin is found in many foods, some of which are lambsquarters, lemon, sunflower, and sherry. Scopoletin is found in anise. Scopoletin is isolated from Angelica acutiloba (Dong Dang Gui A hydroxycoumarin that is umbelliferone bearing a methoxy substituent at position 6. Acquisition and generation of the data is financially supported in part by CREST/JST. [Raw Data] CBA72_Scopoletin_pos_20eV.txt [Raw Data] CBA72_Scopoletin_pos_40eV.txt [Raw Data] CBA72_Scopoletin_neg_30eV.txt [Raw Data] CBA72_Scopoletin_neg_50eV.txt [Raw Data] CBA72_Scopoletin_pos_50eV.txt [Raw Data] CBA72_Scopoletin_pos_10eV.txt [Raw Data] CBA72_Scopoletin_neg_40eV.txt [Raw Data] CBA72_Scopoletin_neg_10eV.txt [Raw Data] CBA72_Scopoletin_pos_30eV.txt [Raw Data] CBA72_Scopoletin_neg_20eV.txt Scopoletin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=92-61-5 (retrieved 2024-07-12) (CAS RN: 92-61-5). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Epicatechin

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

C15H14O6 (290.079)


Epicatechin is an antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. Catechin is a tannin peculiar to green and white tea because the black tea oxidation process reduces catechins in black tea. Catechin is a powerful, water soluble polyphenol and antioxidant that is easily oxidized. Several thousand types are available in the plant world. As many as two thousand are known to have a flavon structure and are called flavonoids. Catechin is one of them. Green tea is manufactured from fresh, unfermented tea leaves; the oxidation of catechins is minimal, and hence they are able to serve as antioxidants. Researchers believe that catechin is effective because it easily sticks to proteins, blocking bacteria from adhering to cell walls and disrupting their ability to destroy them. Viruses have hooks on their surfaces and can attach to cell walls. The catechin in green tea prevents viruses from adhering and causing harm. Catechin reacts with toxins created by harmful bacteria (many of which belong to the protein family) and harmful metals such as lead, mercury, chrome, and cadmium. From its NMR espectra, there is a doubt on 2 and 3 atoms configuration. It seems to be that they are in trans position. Epicatechin, also known as (+)-cyanidanol-3 or 2,3-cis-epicatechin, is a member of the class of compounds known as catechins. Catechins are compounds containing a catechin moiety, which is a 3,4-dihydro-2-chromene-3,5.7-tiol. Thus, epicatechin is considered to be a flavonoid lipid molecule. Epicatechin is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Epicatechin can be found in cashew nut, which makes epicatechin a potential biomarker for the consumption of this food product. Epicatechin can be found primarily in blood, feces, and urine, as well as throughout most human tissues. Epicatechin is a flavan-3-ol, a type of natural phenol and antioxidant. It is a plant secondary metabolite. It belongs to the group of flavan-3-ols (or simply flavanols), part of the chemical family of flavonoids . (-)-epicatechin is a catechin with (2R,3R)-configuration. It has a role as an antioxidant. It is a polyphenol and a catechin. It is an enantiomer of a (+)-epicatechin. Epicatechin has been used in trials studying the treatment of Pre-diabetes. (-)-Epicatechin is a natural product found in Visnea mocanera, Litsea rotundifolia, and other organisms with data available. An antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. See also: Crofelemer (monomer of); Bilberry (part of); Cats Claw (part of) ... View More ... A catechin with (2R,3R)-configuration. [Raw Data] CB030_(-)-Epicatechin_pos_20eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_50eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_40eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_10eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_30eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_neg_50eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_30eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_10eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_40eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_20eV_000009.txt Epicatechin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=490-46-0 (retrieved 2024-07-09) (CAS RN: 490-46-0). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB.

   

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 (414.3861)


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 (426.3861)


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].

   

Betulinic acid

(1R,3aS,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-9-hydroxy-5a,5b,8,8,11a-pentamethyl-1-prop-1-en-2-yl-1,2,3,4,5,6,7,7a,9,10,11,11b,12,13,13a,13b-hexadecahydrocyclopenta[a]chrysene-3a-carboxylic acid

C30H48O3 (456.3603)


Betulinic acid is a pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-carboxy substituents. It is found in the bark and other plant parts of several species of plants including Syzygium claviflorum. It exhibits anti-HIV, antimalarial, antineoplastic and anti-inflammatory properties. It has a role as an EC 5.99.1.3 [DNA topoisomerase (ATP-hydrolysing)] inhibitor, an anti-HIV agent, an antimalarial, an anti-inflammatory agent, an antineoplastic agent and a plant metabolite. It is a pentacyclic triterpenoid and a hydroxy monocarboxylic acid. It derives from a hydride of a lupane. Betulinic Acid has been used in trials studying the treatment of Dysplastic Nevus Syndrome. Betulinic acid is a natural product found in Ficus auriculata, Gladiolus italicus, and other organisms with data available. Betulinic Acid is a pentacyclic lupane-type triterpene derivative of betulin (isolated from the bark of Betula alba, the common white birch) with antiinflammatory, anti-HIV and antineoplastic activities. Betulinic acid induces apoptosis through induction of changes in mitochondrial membrane potential, production of reactive oxygen species, and opening of mitochondrial permeability transition pores, resulting in the release of mitochondrial apogenic factors, activation of caspases, and DNA fragmentation. Although originally thought to exhibit specific cytotoxicity against melanoma cells, this agent has been found to be cytotoxic against non-melanoma tumor cell types including neuroectodermal and brain tumor cells. A lupane-type triterpene derivative of betulin which was originally isolated from BETULA or birch tree. It has anti-inflammatory, anti-HIV and antineoplastic activities. See also: Jujube fruit (part of); Paeonia lactiflora root (part of). Betulinic acid is found in abiyuch. Betulinic acid is a naturally occurring pentacyclic triterpenoid which has anti-retroviral, anti-malarial, and anti-inflammatory properties, as well as a more recently discovered potential as an anticancer agent, by inhibition of topoisomerase. It is found in the bark of several species of plants, principally the white birch (Betula pubescens) from which it gets its name, but also the Ber tree (Ziziphus mauritiana), the tropical carnivorous plants Triphyophyllum peltatum and Ancistrocladus heyneanus, Diospyros leucomelas a member of the persimmon family, Tetracera boiviniana, the jambul (Syzygium formosanum), flowering quince (Chaenomeles sinensis), Rosemary, and Pulsatilla chinensis. Controversial is a role of p53 in betulinic acid-induced apoptosis. Fulda suggested p53-independent mechanism of the apoptosis, basing on fact of no accumulation of wild-type p53 detected upon treatment with the betulinic acid, whereas wild-type p53 protein strongly increased after treatment with doxorubicin. The suggestion is supported by study of Raisova. On the other hand Rieber suggested that betulinic acid exerts its inhibitory effect on human metastatic melanoma partly by increasing p53 A pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-carboxy substituents. It is found in the bark and other plant parts of several species of plants including Syzygium claviflorum. It exhibits anti-HIV, antimalarial, antineoplastic and anti-inflammatory properties. C308 - Immunotherapeutic Agent > C2139 - Immunostimulant Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Epibetulinic acid exhibits potent inhibitory effects on NO and prostaglandin E2 (PGE2) production in mouse macrophages (RAW 264.7) stimulated with bacterial endotoxin with IC50s of 0.7 and 0.6 μM, respectively. Anti-inflammatory activity[1].

   

Oleanolic acid

(4aS,5S,6aS,6bR,8R,8aR,10S,12aR,12bR,14bS)-10-Hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-octadecahydro-2H-picene-4a-carboxylic acid

C30H48O3 (456.3603)


Oleanolic acid is a pentacyclic triterpene, found in the non-glyceride fraction of olive pomace oil (Olive pomace oil, also known as "orujo" olive oil, is a blend of refined-pomace oil and virgin olive oil, fit for human consumption). Pentacyclic triterpenes are natural compounds which are widely distributed in plants. These natural products have been demonstrated to possess anti-inflammatory properties. Triterpenoids have been reported to possess antioxidant properties, since they prevent lipid peroxidation and suppress superoxide anion generation. The triterpenes have a history of medicinal use in many Asian countries. Oleanolic acid exhibits both pro- and anti-inflammatory properties depending on chemical structure and dose and may be useful in modulating the immune response; further studies are required to confirm the immunomodulatory behaviour of this triterpenoid, and characterise the mechanisms underlying the biphasic nature of some aspects of the inflammatory response. Oleanolic acid is a ubiquitous triterpenoid in plant kingdom, medicinal herbs, and is an integral part of the human diet. During the last decade over 700 research articles have been published on triterpenoids research, reflecting tremendous interest and progress in our understanding of these compounds. This included the isolation and purification of these tritepernoids from various plants and herbs, the chemical modifications to make more effective and water soluble derivatives, the pharmacological research on their beneficial effects, the toxicity studies, and the clinical use of these triterpenoids in various diseases including anticancer chemotherapies. (PMID:17292619, 15522132, 15994040). Oleanolic acid is a pentacyclic triterpenoid that is olean-12-en-28-oic acid substituted by a beta-hydroxy group at position 3. It has a role as a plant metabolite. It is a pentacyclic triterpenoid and a hydroxy monocarboxylic acid. It is a conjugate acid of an oleanolate. It derives from a hydride of an oleanane. Oleanolic acid is a natural product found in Ophiopogon japonicus, Freziera, and other organisms with data available. A pentacyclic triterpene that occurs widely in many PLANTS as the free acid or the aglycone for many SAPONINS. It is biosynthesized from lupane. It can rearrange to the isomer, ursolic acid, or be oxidized to taraxasterol and amyrin. See also: Holy basil leaf (part of); Jujube fruit (part of); Paeonia lactiflora root (part of) ... View More ... Occurs as glycosides in cloves (Syzygium aromaticum), sugar beet (Beta vulgaris), olive leaves, etc. Very widely distributed aglycone A pentacyclic triterpenoid that is olean-12-en-28-oic acid substituted by a beta-hydroxy group at position 3. [Raw Data] CBA90_Oleanolic-acid_neg_50eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_20eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_10eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_30eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_40eV.txt Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities. Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities.

   

Squalene

(6E,10E,14E,18E)-2,6,10,15,19,23-hexamethyltetracosa-2,6,10,14,18,22-hexaene

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].

   

Beta-Amyrin

(3S,4aR,5R,6aR,6bR,8S,8aR,12aR,14aR,14bR)-4,4,6a,6b,8a,11,11,14b-Octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-eicosahydro-picen-3-ol

C30H50O (426.3861)


Beta-amyrin is a pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. It has a role as a plant metabolite and an Aspergillus metabolite. It is a pentacyclic triterpenoid and a secondary alcohol. It derives from a hydride of an oleanane. beta-Amyrin is a natural product found in Ficus pertusa, Ficus septica, and other organisms with data available. See also: Calendula Officinalis Flower (part of); Viburnum opulus bark (part of); Centaurium erythraea whole (part of). A pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1]. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1].

   

(+)-Gallocatechin

(2R,3S)-3,4-dihydro-2-(3,4,5-trihydroxyphenyl)-2H-1-benzopyran-3,5,7-triol

C15H14O7 (306.0739)


Widespread in plants; found especies in green tea, redcurrants, gooseberries and marrowfat peas. Potential nutriceutical. Gallocatechin is found in many foods, some of which are broad bean, broccoli, quince, and common grape. (+)-Gallocatechin is found in adzuki bean. (+)-Gallocatechin is widespread in plants; found especially in green tea, redcurrants, gooseberries and marrowfat peas. Potential nutriceutical. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1].

   

3-Epioleanolic acid

(4aS,6aS,6bR,8aR,10R,12aR,12bR,14bS)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-icosahydropicene-4a-carboxylic acid

C30H48O3 (456.3603)


3-epioleanolic acid is a triterpenoid. It has a role as a metabolite. 3-Epioleanolic acid is a natural product found in Conandron ramondioides, Gardenia ternifolia, and other organisms with data available. 3-Epioleanolic acid is found in common sage. 3-Epioleanolic acid is isolated from sage Salvia officinalis and other plants. Isolated from sage Salvia officinalis and other plants. 3-Epioleanolic acid is found in common sage. A natural product found in Radermachera boniana. 3-Epioleanolic acid is an active component of Verbena officinalis Linn, with anti-inflammatory activity[1]. 3-Epioleanolic acid is an active component of Verbena officinalis Linn, with anti-inflammatory activity[1].

   

Squalen

2,6,10,15,19,23-Hexamethyltetracosa-2,6,10,14,18,22-hexaene

C30H50 (410.3912)


   

beta-Amyrin

4,4,6a,6b,8a,11,11,14b-octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-icosahydropicen-3-ol

C30H50O (426.3861)


Beta-amryin, also known as B-amryin, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Beta-amryin is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Beta-amryin can be found in pigeon pea, which makes beta-amryin a potential biomarker for the consumption of this food product.

   

Oleanonic acid

2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-icosahydropicene-4a-carboxylic acid

C30H46O3 (454.3447)


   

beta-Amyrenone

4,4,6a,6b,8a,11,11,14b-octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-icosahydropicen-3-one

C30H48O (424.3705)


Beta-amyrenone is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Beta-amyrenone is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Beta-amyrenone can be found in rosemary and shea tree, which makes beta-amyrenone a potential biomarker for the consumption of these food products.

   

Oleoside 11-methylester

(4aS,6aS,6bR,8aR,12aR,12bR,14bS)-2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-icosahydropicene-4a-carboxylic acid

C30H46O3 (454.3447)


   

(+)-Gallocatechin

4-{1-Butyl-9-[1-(4,6-dimethyl-pyrimidine-5-carbonyl)-4-methyl-piperidin-4-yl]-2-oxo-3,0-diaza-spiro[5.5]undec-3-ylmethyl}-piperidine-1-carboxylic acid methyl ester

C15H14O7 (306.0739)


Gallocatechin is a catechin that is a flavan substituted by hydroxy groups at positions 3, 3, 4, 5, 5 and 7 (the trans isomer). It is isolated from Acacia mearnsii. It has a role as a metabolite. It is a catechin and a flavan-3,3,4,5,5,7-hexol. (+)-Gallocatechin is a natural product found in Saxifraga cuneifolia, Quercus dentata, and other organisms with data available. See also: Cianidanol (related); Crofelemer (monomer of); Green tea leaf (part of). Widespread in plants; found especies in green tea, redcurrants, gooseberries and marrowfat peas. Potential nutriceutical. Gallocatechin is found in many foods, some of which are broad bean, broccoli, quince, and common grape. (+)-Gallocatechin is found in adzuki bean. (+)-Gallocatechin is widespread in plants; found especially in green tea, redcurrants, gooseberries and marrowfat peas. Potential nutriceutical. A gallocatechin that has (2R,3S)-configuration. It is found in green tea and bananas. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1].

   

oleanonicacid

(4aS,6aR,6aS,6bR,8aR,12aR,14bS)-2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,6a,7,8,8a,11,12,13,14b-dodecahydro-1H-picene-4a-carboxylic acid

C30H46O3 (454.3447)


Oleanonic acid is a natural product found in Myrcia guianensis, Lantana montevidensis, and other organisms with data available. Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV. Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV.

   

Oleanonic

(4aS,6aR,6aS,6bR,8aR,12aR,14bS)-2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,6a,7,8,8a,11,12,13,14b-dodecahydro-1H-picene-4a-carboxylic acid

C30H46O3 (454.3447)


Oleanonic acid is a natural product found in Myrcia guianensis, Lantana montevidensis, and other organisms with data available. Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV. Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV.

   

Atraric acid

Methyl 2,4-dihydroxy-3,6-dimethylbenzoate

C10H12O4 (196.0736)


Atraric acid (Methyl atrarate) is a specific androgen receptor (AR) antagonist with anti-inflammatory and anticancer effects. Atraric acid represses the expression of the endogenous prostate specific antigen gene in both LNCaP and C4-2 cells. Atraric acid can also inhibit the synthesis of NO and cytokine, and suppress the MAPK-NFκB signaling pathway. Atraric acid can be used to research prostate diseases and inflammatory diseases[1][2]. Atraric acid (Methyl atrarate) is a specific androgen receptor (AR) antagonist with anti-inflammatory and anticancer effects. Atraric acid represses the expression of the endogenous prostate specific antigen gene in both LNCaP and C4-2 cells. Atraric acid can also inhibit the synthesis of NO and cytokine, and suppress the MAPK-NFκB signaling pathway. Atraric acid can be used to research prostate diseases and inflammatory diseases[1][2].

   

Oleanonic acid

Oleanonic acid

C30H46O3 (454.3447)


Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV. Oleanonic acid (3-Oxooleanolic acid) is a triterpenoid, inhibits infection by HIV.

   

4-Methoxy-5-methyl-2H-chromen-2-one

4-Methoxy-5-methyl-2H-chromen-2-one

C11H10O3 (190.063)


   

Pterophyllin 2

Pterophyllin 2

C15H12O3 (240.0786)


   

β-Amyrin

beta-amyrin-H2O

C30H50O (426.3861)


Beta-amyrin, also known as amyrin or (3beta)-olean-12-en-3-ol, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Thus, beta-amyrin is considered to be an isoprenoid lipid molecule. Beta-amyrin is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Beta-amyrin can be synthesized from oleanane. Beta-amyrin is also a parent compound for other transformation products, including but not limited to, erythrodiol, glycyrrhetaldehyde, and 24-hydroxy-beta-amyrin. Beta-amyrin can be found in a number of food items such as thistle, pepper (c. baccatum), wakame, and endive, which makes beta-amyrin a potential biomarker for the consumption of these food products. The amyrins are three closely related natural chemical compounds of the triterpene class. They are designated α-amyrin (ursane skeleton), β-amyrin (oleanane skeleton) and δ-amyrin. Each is a pentacyclic triterpenol with the chemical formula C30H50O. They are widely distributed in nature and have been isolated from a variety of plant sources such as epicuticular wax. In plant biosynthesis, α-amyrin is the precursor of ursolic acid and β-amyrin is the precursor of oleanolic acid. All three amyrins occur in the surface wax of tomato fruit. α-Amyrin is found in dandelion coffee . β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1]. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[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 (414.3861)


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].

   

gallocatechol

2H-1-Benzopyran-3,5,7-triol, 3,4-dihydro-2-(3,4,5-trihydroxyphenyl)-, (2R,3S)-rel-

C15H14O7 (306.0739)


(-)-Gallocatechin, an epimer of (-)-Epigallocatechin (EGC), is contained in various tea products. (-)-Gallocatechin has antioxidant activities[1][2][3]. (-)-Gallocatechin, an epimer of (-)-Epigallocatechin (EGC), is contained in various tea products. (-)-Gallocatechin has antioxidant activities[1][2][3]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (-)-Gallocatechin, an epimer of (-)-Epigallocatechin (EGC), is contained in various tea products. (-)-Gallocatechin has antioxidant activities[1][2][3]. (-)-Gallocatechin, an epimer of (-)-Epigallocatechin (EGC), is contained in various tea products. (-)-Gallocatechin has antioxidant activities[1][2][3]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1]. (+)-Gallocatechin is a polyphenol compound from green tea, possesses anticancer activity[1].

   

lupeol

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

C30H50O (426.3861)


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].

   

Spinacene

(6E,10E,14E,18E)-2,6,10,15,19,23-hexamethyltetracosa-2,6,10,14,18,22-hexaene

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].

   

betulinic acid

betulinic acid

C30H48O3 (456.3603)


Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4].

   

Oleanolic Acid

Oleanolic Acid

C30H48O3 (456.3603)


   

Angolensic acid|methyl angolensate

Angolensic acid|methyl angolensate

C26H32O7 (456.2148)


   

Ekersenin

4-methoxy-5-methylchromen-2-one

C11H10O3 (190.063)


4-Methoxy-5-methyl-2H-chromen-2-one is a natural product found in Clutia abyssinica, Ekebergia capensis, and Bergia capensis with data available.

   

Scopoletin

7-hydroxy-6-methoxychromen-2-one

C10H8O4 (192.0423)


relative retention time with respect to 9-anthracene Carboxylic Acid is 0.636 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.637 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.629 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.631 IPB_RECORD: 1582; CONFIDENCE confident structure Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Catechol

(+)-Catechin Hydrate

C15H14O6 (290.079)


Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM. Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM.

   

Epigallocatechin

(-)-Epigallocatechin

C15H14O7 (306.0739)


CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 28 INTERNAL_ID 28; CONFIDENCE Reference Standard (Level 1) (-)-Epigallocatechin (Epigallocatechin) is the most abundant flavonoid in green tea, can bind to unfolded native polypeptides and prevent conversion to amyloid fibrils. (-)-Epigallocatechin (Epigallocatechin) is the most abundant flavonoid in green tea, can bind to unfolded native polypeptides and prevent conversion to amyloid fibrils. (-)-Epigallocatechin (Epigallocatechin) is the most abundant flavonoid in green tea, can bind to unfolded native polypeptides and prevent conversion to amyloid fibrils. (-)-Epigallocatechin (Epigallocatechin) is the most abundant flavonoid in green tea, can bind to unfolded native polypeptides and prevent conversion to amyloid fibrils.

   

Methyl 2,4-dihydroxy-3,6-dimethylbenzoate

methyl 2,4-dihydroxy-3,6-dimethylbenzoate

C10H12O4 (196.0736)


CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX507; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4243; ORIGINAL_PRECURSOR_SCAN_NO 4241 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4554; ORIGINAL_PRECURSOR_SCAN_NO 4552 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX507; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4219; ORIGINAL_PRECURSOR_SCAN_NO 4216 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4573; ORIGINAL_PRECURSOR_SCAN_NO 4572 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX507; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3741; ORIGINAL_PRECURSOR_SCAN_NO 3740 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4554; ORIGINAL_PRECURSOR_SCAN_NO 4550 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7363; ORIGINAL_PRECURSOR_SCAN_NO 7360 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7378; ORIGINAL_PRECURSOR_SCAN_NO 7376 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX507; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7361; ORIGINAL_PRECURSOR_SCAN_NO 7359 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7404; ORIGINAL_PRECURSOR_SCAN_NO 7400 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7394; ORIGINAL_PRECURSOR_SCAN_NO 7391 CONFIDENCE standard compound; INTERNAL_ID 1194; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 7418; ORIGINAL_PRECURSOR_SCAN_NO 7416 Atraric acid (Methyl atrarate) is a specific androgen receptor (AR) antagonist with anti-inflammatory and anticancer effects. Atraric acid represses the expression of the endogenous prostate specific antigen gene in both LNCaP and C4-2 cells. Atraric acid can also inhibit the synthesis of NO and cytokine, and suppress the MAPK-NFκB signaling pathway. Atraric acid can be used to research prostate diseases and inflammatory diseases[1][2]. Atraric acid (Methyl atrarate) is a specific androgen receptor (AR) antagonist with anti-inflammatory and anticancer effects. Atraric acid represses the expression of the endogenous prostate specific antigen gene in both LNCaP and C4-2 cells. Atraric acid can also inhibit the synthesis of NO and cytokine, and suppress the MAPK-NFκB signaling pathway. Atraric acid can be used to research prostate diseases and inflammatory diseases[1][2].

   

Epi-Oleanolic Acid

(4aS,6aS,6bR,8aR,10R,12aR,12bR,14bS)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-icosahydropicene-4a-carboxylic acid

C30H48O3 (456.3603)


3-Epioleanolic acid is an active component of Verbena officinalis Linn, with anti-inflammatory activity[1]. 3-Epioleanolic acid is an active component of Verbena officinalis Linn, with anti-inflammatory activity[1].

   

proceranolide

proceranolide

C27H34O7 (470.2304)


A natural product found in Chisocheton ceramicus.

   

Scopoletol

2H-1-Benzopyran-2-one, 7-hydroxy-6-methoxy- (9CI)

C10H8O4 (192.0423)


Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Caryophyllin

(4aS,5S,6aS,6bR,8R,8aR,10S,12aR,12bR,14bS)-10-Hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-octadecahydro-2H-picene-4a-carboxylic acid

C30H48O3 (456.3603)


Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities. Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities.

   

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 (414.3861)


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].

   

methyl (2r)-2-[(1r,2s,5r,6r,13s,14r,16s)-6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]-2-hydroxyacetate

methyl (2r)-2-[(1r,2s,5r,6r,13s,14r,16s)-6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]-2-hydroxyacetate

C27H34O8 (486.2254)


   

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C27H34O7 (470.2304)


   

1-{2-hydroxy-6-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4-methoxyphenyl}-2-methylpropan-1-one

1-{2-hydroxy-6-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4-methoxyphenyl}-2-methylpropan-1-one

C19H20O4 (312.1362)


   

methyl 2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]propanoate

methyl 2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]propanoate

C28H34O7 (482.2304)


   

(1s,3r,4s,5s,7r,8s,9r,12s,13s,16s)-16-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-4-yl 3-methylbutanoate

(1s,3r,4s,5s,7r,8s,9r,12s,13s,16s)-16-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-4-yl 3-methylbutanoate

C34H46O11 (630.304)


   

methyl 2-[(1s,3r,4s,5s,7s,8s,9r,12s,13s)-4-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1s,3r,4s,5s,7s,8s,9r,12s,13s)-4-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C29H38O9 (530.2516)


   

4,7-dimethoxy-3-methyl-5-[(1e)-2-(4-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}phenyl)ethenyl]chromen-2-one

4,7-dimethoxy-3-methyl-5-[(1e)-2-(4-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}phenyl)ethenyl]chromen-2-one

C26H28O10 (500.1682)


   

17-(furan-3-yl)-2,6,6,10,14-pentamethyl-18,23-dioxahexacyclo[12.9.0.0¹,²².0²,¹¹.0⁵,¹⁰.0¹⁵,²⁰]tricosane-3,7,19-trione

17-(furan-3-yl)-2,6,6,10,14-pentamethyl-18,23-dioxahexacyclo[12.9.0.0¹,²².0²,¹¹.0⁵,¹⁰.0¹⁵,²⁰]tricosane-3,7,19-trione

C30H38O6 (494.2668)


   

11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-5-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-4-yl pyridine-3-carboxylate

11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-5-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-4-yl pyridine-3-carboxylate

C41H47NO15 (793.2946)


   

2,2,6a,6b,9,9,12a-heptamethyl-10,13-dioxo-1,3,4,5,6,7,8,8a,11,12,12b,14b-dodecahydropicene-4a-carboxylic acid

2,2,6a,6b,9,9,12a-heptamethyl-10,13-dioxo-1,3,4,5,6,7,8,8a,11,12,12b,14b-dodecahydropicene-4a-carboxylic acid

C30H44O4 (468.3239)


   

1-ethylidene-6,7-dihydroxy-11a-methyl-3h,3ah,3bh,4h,6h,7h,8h,9h,9ah,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

1-ethylidene-6,7-dihydroxy-11a-methyl-3h,3ah,3bh,4h,6h,7h,8h,9h,9ah,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

C20H28O3 (316.2038)


   

methyl 2-[(1s,3r,4s,5s,7s,8s,9r,12s,13s,16s)-4,16-bis(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1s,3r,4s,5s,7s,8s,9r,12s,13s,16s)-4,16-bis(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C31H40O11 (588.257)


   

methyl (2r)-2-(acetyloxy)-2-[(1r,2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl (2r)-2-(acetyloxy)-2-[(1r,2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C29H34O9 (526.2203)


   

2,6,10,15,19,23-hexamethyl-1-(methylperoxy)tetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

2,6,10,15,19,23-hexamethyl-1-(methylperoxy)tetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C31H56O6 (524.4077)


   

(2r,3r,6e,10e,14e,18e,22r)-2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

(2r,3r,6e,10e,14e,18e,22r)-2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

C32H56O6 (536.4077)


   

2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

C32H56O5 (520.4128)


   

1-{2-hydroxy-6-[2-(4-hydroxyphenyl)ethenyl]-4-methoxyphenyl}-2-methylpropan-1-one

1-{2-hydroxy-6-[2-(4-hydroxyphenyl)ethenyl]-4-methoxyphenyl}-2-methylpropan-1-one

C19H20O4 (312.1362)


   

1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-1h,2h,3h,3ah,4h,5h,5ah,7h,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-1h,2h,3h,3ah,4h,5h,5ah,7h,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

C28H40O3 (424.2977)


   

(4as,6as,6br,8ar,12as,12br)-2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,7,8,8a,11,12,12b-decahydro-1h-picene-4a-carboxylic acid

(4as,6as,6br,8ar,12as,12br)-2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,7,8,8a,11,12,12b-decahydro-1h-picene-4a-carboxylic acid

C30H44O3 (452.329)


   

(1s,3r,4r,5s,7s,8r,10r,11s,12s,13s,16s)-11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-5-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-4-yl pyridine-3-carboxylate

(1s,3r,4r,5s,7s,8r,10r,11s,12s,13s,16s)-11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-5-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-4-yl pyridine-3-carboxylate

C41H47NO15 (793.2946)


   

(1r,4e,8e,12e,16r)-1-[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

(1r,4e,8e,12e,16r)-1-[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

C30H54O5 (494.3971)


   

4,6-dimethoxy-5-methylchromen-2-one

4,6-dimethoxy-5-methylchromen-2-one

C12H12O4 (220.0736)


   

(2s,3s,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

(2s,3s,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

C30H54O5 (494.3971)


   

methyl 2-[5,16-bis(acetyloxy)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[5,16-bis(acetyloxy)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C31H40O10 (572.2621)


   

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-4'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-5'-yl pyridine-3-carboxylate

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-4'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-5'-yl pyridine-3-carboxylate

C42H49NO17 (839.3)


   

(1s,3r,4r,5s,7s,8r,10r,11s,12s,13s,16s)-11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-4-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-5-yl pyridine-3-carboxylate

(1s,3r,4r,5s,7s,8r,10r,11s,12s,13s,16s)-11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-4-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-5-yl pyridine-3-carboxylate

C41H47NO15 (793.2946)


   

(3s,4as,6ar,6br,8ar,12as,12br,14ar,14bs)-4,4,6a,6b,8a,11,11,14b-octamethyl-1,2,3,4a,5,6,7,8,9,10,12,12a,12b,14a-tetradecahydropicen-3-ol

(3s,4as,6ar,6br,8ar,12as,12br,14ar,14bs)-4,4,6a,6b,8a,11,11,14b-octamethyl-1,2,3,4a,5,6,7,8,9,10,12,12a,12b,14a-tetradecahydropicen-3-ol

C30H50O (426.3861)


   

(4as,6as)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,7,8,8a,10,11,12,12b,13,14b-tetradecahydropicene-4a-carboxylic acid

(4as,6as)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,7,8,8a,10,11,12,12b,13,14b-tetradecahydropicene-4a-carboxylic acid

C30H48O3 (456.3603)


   

13-(furan-3-yl)-5,16-dihydroxy-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-4-yl 2-methylbut-2-enoate

13-(furan-3-yl)-5,16-dihydroxy-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-4-yl 2-methylbut-2-enoate

C32H42O10 (586.2778)


   

(1r,2r,4s,7r,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

(1r,2r,4s,7r,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

C26H30O6 (438.2042)


   

(2r)-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

(2r)-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

C15H14O3 (242.0943)


   

6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl 2-methylbut-2-enoate

6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl 2-methylbut-2-enoate

C32H40O8 (552.2723)


   

20-isopropyl-4,5,9,9,13-pentamethyl-19,21-dioxahexacyclo[18.2.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracosan-10-one

20-isopropyl-4,5,9,9,13-pentamethyl-19,21-dioxahexacyclo[18.2.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracosan-10-one

C30H48O3 (456.3603)


   

(2s,3r,6e,10e,14e,18e,22r)-1-(acetyloxy)-2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

(2s,3r,6e,10e,14e,18e,22r)-1-(acetyloxy)-2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

C34H58O7 (578.4182)


   

(2s,3r,6e,10e,14e,18e,22r)-2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

(2s,3r,6e,10e,14e,18e,22r)-2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

C32H56O6 (536.4077)


   

16'-(acetyloxy)-13'-(furan-3-yl)-5',10',11'-trihydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl 2-methylpropanoate

16'-(acetyloxy)-13'-(furan-3-yl)-5',10',11'-trihydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl 2-methylpropanoate

C33H42O15 (678.2524)


   

(1r,3ar,3br,4r,5as,9ar,9br,11as)-1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-3,7-dioxo-1h,2h,3ah,4h,5h,5ah,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

(1r,3ar,3br,4r,5as,9ar,9br,11as)-1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-3,7-dioxo-1h,2h,3ah,4h,5h,5ah,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

C28H36O5 (452.2563)


   

(1r,4e,8e,12e,16r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

(1r,4e,8e,12e,16r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

C30H54O5 (494.3971)


   

(1r,3as,3bs,6r,7s,9ar,9bs,11ar)-1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

(1r,3as,3bs,6r,7s,9ar,9bs,11ar)-1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

C21H32O3 (332.2351)


   

1-{2,4-dihydroxy-6-[2-(4-hydroxyphenyl)ethenyl]phenyl}-2-methylpropan-1-one

1-{2,4-dihydroxy-6-[2-(4-hydroxyphenyl)ethenyl]phenyl}-2-methylpropan-1-one

C18H18O4 (298.1205)


   

4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

C30H44O3 (452.329)


   

(1's,2s,3'r,4'r,5's,7'r,8'r,10'r,11'r,12'r,13's,16's)-11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-{[(2r)-2-methylbutanoyl]oxy}-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

(1's,2s,3'r,4'r,5's,7'r,8'r,10'r,11'r,12'r,13's,16's)-11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-{[(2r)-2-methylbutanoyl]oxy}-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

C42H49NO17 (839.3)


   

1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

C21H32O3 (332.2351)


   

5-[2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methylchromen-2-one

5-[2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methylchromen-2-one

C20H18O5 (338.1154)


   

2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C30H54O4 (478.4022)


   

7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

C26H30O6 (438.2042)


   

methyl 2-[(1r,2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[(1r,2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C27H32O7 (468.2148)


   

(2s)-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

(2s)-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

C15H14O3 (242.0943)


   

methyl 2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C27H32O7 (468.2148)


   

5-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxychromen-2-one

5-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxychromen-2-one

C19H16O5 (324.0998)


   

methyl 2-[14-(furan-3-yl)-7,7,9,13-tetramethyl-6,16-dioxo-15,17-dioxatetracyclo[7.7.1.0²,¹³.0³,¹⁰]heptadec-2-en-8-yl]acetate

methyl 2-[14-(furan-3-yl)-7,7,9,13-tetramethyl-6,16-dioxo-15,17-dioxatetracyclo[7.7.1.0²,¹³.0³,¹⁰]heptadec-2-en-8-yl]acetate

C26H32O7 (456.2148)


   

11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-4-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-5-yl pyridine-3-carboxylate

11,16-bis(acetyloxy)-13-(furan-3-yl)-7-(2-methoxy-2-oxoethyl)-6,6,8,12-tetramethyl-17-methylidene-4-[(2-methylpropanoyl)oxy]-9,15-dioxo-2,14-dioxatetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan-5-yl pyridine-3-carboxylate

C41H47NO15 (793.2946)


   

methyl 2-(acetyloxy)-2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-(acetyloxy)-2-[6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C29H34O9 (526.2203)


   

(3r,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

(3r,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C30H54O4 (478.4022)


   

1-[5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

1-[5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

C30H54O5 (494.3971)


   

2,6,10,15,19,22,23-heptamethyltetracosa-6,10,14,18-tetraene-2,3,23-triol

2,6,10,15,19,22,23-heptamethyltetracosa-6,10,14,18-tetraene-2,3,23-triol

C31H56O3 (476.4229)


   

4,7-dimethoxy-3-methyl-5-[2-(4-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}phenyl)ethenyl]chromen-2-one

4,7-dimethoxy-3-methyl-5-[2-(4-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}phenyl)ethenyl]chromen-2-one

C26H28O10 (500.1682)


   

(1r,3as,3bs,6r,7s,9ar,9bs,11as)-1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

(1r,3as,3bs,6r,7s,9ar,9bs,11as)-1-ethyl-6,7-dihydroxy-9a,11a-dimethyl-1h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-2-one

C21H32O3 (332.2351)


   

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]-2-hydroxyacetate

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]-2-hydroxyacetate

C27H34O8 (486.2254)


   

methyl 2-[(1r,3r,5r,7r,8r,9s,12r,13r)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1r,3r,5r,7r,8r,9s,12r,13r)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C27H36O7 (472.2461)


   

(1r,2r,4s,7s,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

(1r,2r,4s,7s,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

C26H30O6 (438.2042)


   

methyl 2-[(1r,2s,5r,6r,13s,14s,16s)-6-(furan-3-yl)-14-hydroxy-1,5,13,15,15-pentamethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[(1r,2s,5r,6r,13s,14s,16s)-6-(furan-3-yl)-14-hydroxy-1,5,13,15,15-pentamethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C28H36O7 (484.2461)


   

9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

C15H14O3 (242.0943)


   

methyl 2-[(1s,3s,5r,7s,8s,9r,12s,13s,16s)-5,16-bis(acetyloxy)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1s,3s,5r,7s,8s,9r,12s,13s,16s)-5,16-bis(acetyloxy)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C31H40O10 (572.2621)


   

methyl 2-[(1s,8s,9s,10s,13r,14r)-14-(furan-3-yl)-7,7,9,13-tetramethyl-6,16-dioxo-15,17-dioxatetracyclo[7.7.1.0²,¹³.0³,¹⁰]heptadec-2-en-8-yl]acetate

methyl 2-[(1s,8s,9s,10s,13r,14r)-14-(furan-3-yl)-7,7,9,13-tetramethyl-6,16-dioxo-15,17-dioxatetracyclo[7.7.1.0²,¹³.0³,¹⁰]heptadec-2-en-8-yl]acetate

C26H32O7 (456.2148)


   

1,12-bis[5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

1,12-bis[5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

C30H54O6 (510.392)


   

methyl 2-[13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C27H36O7 (472.2461)


   

2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

C30H54O5 (494.3971)


   

(1s,4e,8e,12e,16r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

(1s,4e,8e,12e,16r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9,13,17-tetramethyloctadeca-4,8,12-triene-1,16,17-triol

C30H54O5 (494.3971)


   

(1s,4r,5r,8r,13r,14r,17s,18s,20s)-20-isopropyl-4,5,9,9,13-pentamethyl-19,21-dioxahexacyclo[18.2.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracosan-10-one

(1s,4r,5r,8r,13r,14r,17s,18s,20s)-20-isopropyl-4,5,9,9,13-pentamethyl-19,21-dioxahexacyclo[18.2.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracosan-10-one

C30H48O3 (456.3603)


   

(1r,4s,5r,8r,13r,14s,17r,18r)-4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

(1r,4s,5r,8r,13r,14s,17r,18r)-4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

C30H44O3 (452.329)


   

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,13,15,15-pentamethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[6-(furan-3-yl)-14-hydroxy-1,5,13,15,15-pentamethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C28H36O7 (484.2461)


   

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

C42H49NO17 (839.3)


   

(1r,2r,4s,7s,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadecane-5,15,19-trione

(1r,2r,4s,7s,8s,11r,12s,17r)-7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadecane-5,15,19-trione

C26H32O6 (440.2199)


   

(3r,6e,10e,14e,18e,22r)-2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

(3r,6e,10e,14e,18e,22r)-2,22,23-trihydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-3-yl acetate

C32H56O5 (520.4128)


   

(1s,4s,5r,8r,13s,14r,17s,18r)-4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

(1s,4s,5r,8r,13s,14r,17s,18r)-4,5,9,9,13,20,20-heptamethyl-24-oxahexacyclo[15.5.2.0¹,¹⁸.0⁴,¹⁷.0⁵,¹⁴.0⁸,¹³]tetracos-15-ene-10,23-dione

C30H44O3 (452.329)


   

5-(hydroxymethyl)-4-methoxychromen-2-one

5-(hydroxymethyl)-4-methoxychromen-2-one

C11H10O4 (206.0579)


   

(1r,4e,8e,12r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-12-[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

(1r,4e,8e,12r)-1-[(2r,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-12-[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

C30H54O6 (510.392)


   

6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-5,15,15-trimethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl 2-methylbut-2-enoate

6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-5,15,15-trimethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl 2-methylbut-2-enoate

C31H38O8 (538.2567)


   

methyl 2-[(1s,3s,7r,8r,9r,12s,13s)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1s,3s,7r,8r,9r,12s,13s)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C27H34O7 (470.2304)


   

methyl 2-[(2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

methyl 2-[(2s,5r,6r,13s,16s)-6-(furan-3-yl)-1,5,15,15-tetramethyl-8,14,17-trioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-16-yl]acetate

C27H32O7 (468.2148)


   

2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,7,8,8a,11,12,12b-decahydro-1h-picene-4a-carboxylic acid

2,2,6a,6b,9,9,12a-heptamethyl-10-oxo-3,4,5,6,7,8,8a,11,12,12b-decahydro-1h-picene-4a-carboxylic acid

C30H44O3 (452.329)


   

stigmast-5-en-3-ol, (3β)-

stigmast-5-en-3-ol, (3β)-

C29H50O (414.3861)


   

(1z,3as,3br,5as,6r,7s,9ar,9bs,11as)-1-ethylidene-6,7-dihydroxy-9a,11a-dimethyl-dodecahydro-3h-cyclopenta[a]phenanthren-2-one

(1z,3as,3br,5as,6r,7s,9ar,9bs,11as)-1-ethylidene-6,7-dihydroxy-9a,11a-dimethyl-dodecahydro-3h-cyclopenta[a]phenanthren-2-one

C21H32O3 (332.2351)


   

(4ar,6ar,6bs,8ar,12ar,14ar,14br)-4,4,6a,6b,8a,11,11,14b-octamethyl-2,4a,5,6,7,8,9,10,12,12a,14,14a-dodecahydro-1h-picen-3-one

(4ar,6ar,6bs,8ar,12ar,14ar,14br)-4,4,6a,6b,8a,11,11,14b-octamethyl-2,4a,5,6,7,8,9,10,12,12a,14,14a-dodecahydro-1h-picen-3-one

C30H48O (424.3705)


   

(3s,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

(3s,6e,10e,14e,18e,22s)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C30H54O4 (478.4022)


   

(1r,2s,5r,6r,13s,14r,16s)-6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl (2z)-2-methylbut-2-enoate

(1r,2s,5r,6r,13s,14r,16s)-6-(furan-3-yl)-16-(2-methoxy-2-oxoethyl)-1,5,15,15-tetramethyl-8,17-dioxo-7-oxatetracyclo[11.3.1.0²,¹¹.0⁵,¹⁰]heptadec-10-en-14-yl (2z)-2-methylbut-2-enoate

C32H40O8 (552.2723)


   

1-ethylidene-6,7-dihydroxy-9a,11a-dimethyl-dodecahydro-3h-cyclopenta[a]phenanthren-2-one

1-ethylidene-6,7-dihydroxy-9a,11a-dimethyl-dodecahydro-3h-cyclopenta[a]phenanthren-2-one

C21H32O3 (332.2351)


   

(1s,3ar,3bs,4r,5as,9as,9br,11ar)-1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-1h,2h,3h,3ah,4h,5h,5ah,7h,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

(1s,3ar,3bs,4r,5as,9as,9br,11ar)-1-(furan-3-yl)-3b,6,6,9a,11a-pentamethyl-1h,2h,3h,3ah,4h,5h,5ah,7h,9bh,10h,11h-cyclopenta[a]phenanthren-4-yl acetate

C28H40O3 (424.2977)


   

(1r,2r,4s,7r,8s,11r,12s,17r)-7-(furan-2-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

(1r,2r,4s,7r,8s,11r,12s,17r)-7-(furan-2-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadec-13-ene-5,15,19-trione

C26H30O6 (438.2042)


   

5-[2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxychromen-2-one

5-[2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxychromen-2-one

C19H16O5 (324.0998)


   

2-acetyl-9-methylfuro[3,2-c]chromen-4-one

2-acetyl-9-methylfuro[3,2-c]chromen-4-one

C14H10O4 (242.0579)


   

3-hydroxy-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

3-hydroxy-9-methyl-2-(prop-1-en-2-yl)-2h,3h-furo[3,2-c]chromen-4-one

C15H14O4 (258.0892)


   

2-methoxy-6,10,15,19,23-pentamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

2-methoxy-6,10,15,19,23-pentamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C30H54O5 (494.3971)


   

(4as,6as,6br,8ar,12as,12br,14bs)-2,2,6a,6b,9,9,12a-heptamethyl-10,13-dioxo-1,3,4,5,6,7,8,8a,11,12,12b,14b-dodecahydropicene-4a-carboxylic acid

(4as,6as,6br,8ar,12as,12br,14bs)-2,2,6a,6b,9,9,12a-heptamethyl-10,13-dioxo-1,3,4,5,6,7,8,8a,11,12,12b,14b-dodecahydropicene-4a-carboxylic acid

C30H44O4 (468.3239)


   

2,2,10-trimethyl-3h,4h-pyrano[3,2-c]chromen-5-one

2,2,10-trimethyl-3h,4h-pyrano[3,2-c]chromen-5-one

C15H16O3 (244.1099)


   

9-methyl-2-(prop-1-en-2-yl)furo[3,2-c]chromen-4-one

9-methyl-2-(prop-1-en-2-yl)furo[3,2-c]chromen-4-one

C15H12O3 (240.0786)


   

[13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetic acid

[13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetic acid

C26H32O7 (456.2148)


   

β-sitosteryl acetate

β-sitosteryl acetate

C31H52O2 (456.3967)


   

(3r,6e,10e,14e,18e,22r)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

(3r,6e,10e,14e,18e,22r)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-2,3,22,23-tetrol

C30H54O4 (478.4022)


   

methyl 2-[4-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[4-(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C29H38O9 (530.2516)


   

2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

2,3,22,23-tetrahydroxy-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraen-1-yl acetate

C32H56O6 (536.4077)


   

(4as,6as,6br,8as,10s,12ar,12bs,14br)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,7,8,8a,10,11,12,12b,13,14b-tetradecahydropicene-4a-carboxylic acid

(4as,6as,6br,8as,10s,12ar,12bs,14br)-10-hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,7,8,8a,10,11,12,12b,13,14b-tetradecahydropicene-4a-carboxylic acid

C30H48O3 (456.3603)


   

1-{2,4-dihydroxy-6-[(1e)-2-(4-hydroxyphenyl)ethenyl]phenyl}-2-methylpropan-1-one

1-{2,4-dihydroxy-6-[(1e)-2-(4-hydroxyphenyl)ethenyl]phenyl}-2-methylpropan-1-one

C18H18O4 (298.1205)


   

methyl 2-[4,16-bis(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[4,16-bis(acetyloxy)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C31H40O11 (588.257)


   

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-4'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-5'-yl pyridine-3-carboxylate; 11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-4'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-5'-yl pyridine-3-carboxylate; 11',16'-bis(acetyloxy)-13'-(furan-3-yl)-10'-hydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-5'-[(2-methylbutanoyl)oxy]-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl pyridine-3-carboxylate

C84H98N2O34 (1678.6001)


   

(1r,4e,8e,12r)-1,12-bis[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

(1r,4e,8e,12r)-1,12-bis[(2s,5r)-5-(2-hydroxypropan-2-yl)-2-methyloxolan-2-yl]-4,9-dimethyldodeca-4,8-diene-1,12-diol

C30H54O6 (510.392)


   

5-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methylchromen-2-one

5-[(1e)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methylchromen-2-one

C20H18O5 (338.1154)


   

[(1s,3s,7r,8r,9r,12s,13s)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetic acid

[(1s,3s,7r,8r,9r,12s,13s)-13-(furan-3-yl)-6,6,8,12-tetramethyl-17-methylidene-5,15-dioxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetic acid

C26H32O7 (456.2148)


   

(1's,2s,3'r,4's,5's,7's,8'r,10'r,11'r,12's,13's,16's)-16'-(acetyloxy)-13'-(furan-3-yl)-5',10',11'-trihydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl 2-methylpropanoate

(1's,2s,3'r,4's,5's,7's,8'r,10'r,11'r,12's,13's,16's)-16'-(acetyloxy)-13'-(furan-3-yl)-5',10',11'-trihydroxy-7'-(2-methoxy-2-oxoethyl)-6',6',8',12'-tetramethyl-9',15'-dioxo-2',14'-dioxaspiro[oxirane-2,17'-tetracyclo[8.6.1.0¹,¹².0³,⁸]heptadecan]-4'-yl 2-methylpropanoate

C33H42O15 (678.2524)


   

(2s,3r,6e,10e,14e,18e,22r)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

(2s,3r,6e,10e,14e,18e,22r)-2,6,10,15,19,23-hexamethyltetracosa-6,10,14,18-tetraene-1,2,3,22,23-pentol

C30H54O5 (494.3971)


   

7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadecane-5,15,19-trione

7-(furan-3-yl)-1,8,12,16,16-pentamethyl-3,6-dioxapentacyclo[9.8.0.0²,⁴.0²,⁸.0¹²,¹⁷]nonadecane-5,15,19-trione

C26H32O6 (440.2199)


   

methyl 2-[(1s,3s,5r,7s,8s,9r,12s,13s)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

methyl 2-[(1s,3s,5r,7s,8s,9r,12s,13s)-13-(furan-3-yl)-5-hydroxy-6,6,8,12-tetramethyl-17-methylidene-15-oxo-2,14-dioxatetracyclo[7.7.1.0¹,¹².0³,⁸]heptadecan-7-yl]acetate

C27H36O7 (472.2461)