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Category: natural substances and extractives
US / EU / FDA / JECFA / FEMA / FLAVIS / Scholar / Patent Information:
Physical Properties:
| Assay: | 95.00 to 100.00 %
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| Food Chemicals Codex Listed: | No |
| Boiling Point: | 508.00 °C. @ 760.00 mm Hg (est)
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| Flash Point: | 433.00 °F. TCC ( 222.70 °C. ) (est)
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| logP (o/w): | 10.540 (est) |
| Soluble in: |
| | water, 2.124e-005 mg/L @ 25 °C (est) |
Organoleptic Properties:
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| Odor and/or flavor descriptions from others (if found). |
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Cosmetic Information:
Suppliers:
Safety Information:
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| Hazards identification |
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| Classification of the substance or mixture |
| GHS Classification in accordance with 29 CFR 1910 (OSHA HCS) |
| None found. |
| GHS Label elements, including precautionary statements |
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| Pictogram | |
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| Hazard statement(s) |
| None found. |
| Precautionary statement(s) |
| None found. |
| Oral/Parenteral Toxicity: |
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Not determined
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| Dermal Toxicity: |
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Not determined
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| Inhalation Toxicity: |
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Not determined
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Safety in Use Information:
| Category: | natural substances and extractives |
| Recommendation for cycloeucalenol usage levels up to: | | | not for fragrance use.
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| Recommendation for cycloeucalenol flavor usage levels up to: |
| | not for flavor use.
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Safety References:
References:
Other Information:
Potential Blenders and core components note
Potential Uses:
Occurrence (nature, food, other): note
Synonyms:
| 9,19- | cycloergost-24(28)-en-3-ol, 4,14-dimethyl-, (3b,4a,5a,9b)- | | | cycloleucalenol | | (3b,4a,5a,9b)-4,14- | dimethyl-9,19-cycloergost-24(28)-en-3-ol | | (3beta,4alpha,5alpha)-4,14- | dimethyl-9,19-cycloergost-24(28)-en-3-ol | | 3b,4a,5a-4,14- | dimethyl-9,19-cycloergost-24(28)-en-3-ol | | 4a,14- | dimethyl-9b,19-cyclo-5a-ergost-24(28)-en-3b-ol |
Articles:
| PubMed: | Antioxidant properties of isolated compounds from banana rhizome. |
| PubMed: | A review on phytochemical, pharmacological, and pharmacognostical profile of Wrightia tinctoria: Adulterant of kurchi. |
| PubMed: | Plant cyclopropylsterol-cycloisomerase: key amino acids affecting activity and substrate specificity. |
| PubMed: | Isolation of cycloeucalenol from Boophone disticha and evaluation of its cytotoxicity. |
| PubMed: | [Study on the chemical constituents of Chloranthus multistachys]. |
| PubMed: | Investigation of unsaponifiable matter of plant oils and isolation of eight phytosterols by means of high-speed counter-current chromatography. |
| PubMed: | Two new triterpenoids from the leaves and stems of Fritillaria hupehensis. |
| PubMed: | [A novel azo-type compound from Dendrolobium triangulare]. |
| PubMed: | [Chemical constituents from fruits of Ailanthus altissima]. |
| PubMed: | 5 alpha-reductase and aromatase inhibitory constituents from Brassica rapa L. pollen. |
| PubMed: | Two new components from Gnetum pendulum. |
| PubMed: | Sterol-dependent endocytosis mediates post-cytokinetic acquisition of PIN2 auxin efflux carrier polarity. |
| PubMed: | Biological activities of the chemical constituents of Erythrina stricta and Erythrina subumbrans. |
| PubMed: | [Chemical constituents from root barks of Periploca sepium]. |
| PubMed: | Diterpenoids and triterpenoids from Euphorbia guyoniana. |
| PubMed: | Insights into the role of specific lipids in the formation and delivery of lipid microdomains to the plasma membrane of plant cells. |
| PubMed: | [Chemical constituents from herb of Alternanthera philoxeroides]. |
| PubMed: | Biotransformation of cycloartane-type triterpenes by the fungus Glomerella fusarioides. |
| PubMed: | Mechanism involved in the spasmolytic effect of a mixture of two triterpenes, cycloartenol and cycloeucalenol, isolated from Herissanthia tiubae in the guinea-pig ileum. |
| PubMed: | Study on cardiac contractility of cycloeucalenol and cycloeucalenone isolated from Tinospora crispa. |
| PubMed: | Inhibition of the sterol pathway in leek seedlings impairs phosphatidylserine and glucosylceramide synthesis but triggers an accumulation of triacylglycerols. |
| PubMed: | Cycloartane triterpenes from Euphorbia tuckeyana. |
| PubMed: | Triterpene alcohol and sterol ferulates from rice bran and their anti-inflammatory effects. |
| PubMed: | Alkaloids and triterpenoids from Ammocharis coranica (Amaryllidaceae). |
| PubMed: | Functional cloning of an Arabidopsis thaliana cDNA encoding cycloeucalenol cycloisomerase. |
| PubMed: | Sterol biosynthesis: strong inhibition of maize delta 5,7-sterol delta 7-reductase by novel 6-aza-B-homosteroids and other analogs of a presumptive carbocationic intermediate of the reduction reaction. |
| PubMed: | Plant sterol biosynthesis. Identification and characterization of two distinct microsomal oxidative enzymatic systems involved in sterol C4-demethylation. |
| PubMed: | Oxidative C4-demethylation of 24-methylene cycloartanol by a cyanide-sensitive enzymatic system from higher plant microsomes. |
| PubMed: | Analysis of a thread used in the Kshara Sutra treatment in the Ayurvedic medicinal system. |
| PubMed: | Microsomal delta 8,14-sterol delta 14-reductase in higher plants. Characterization and inhibition by analogues of a presumptive carbocationic intermediate of the reduction reaction. |
| PubMed: | Cyclopropyl sterol and phospholipid composition of membrane fractions from maize roots treated with fenpropimorph. |
| PubMed: | Cycloeucalenol-obtusifoliol isomerase. Structural requirements for transformation or binding of substrates and inhibitors. |
| PubMed: | Paclobutrazol inhibition of sterol biosynthesis in a cell suspension culture and evidence of an essential role for 24-ethylsterol in plant cell division. |
| PubMed: | Inhibition of 2,3-oxidosqualene: beta-amyrin-cyclase, S-adenosyl-L-methionine: cycloartenol C-24-methyltransferase and cycloeucalenol: obtusifoliol isomerase by rationally designed molecules containing a tertiary amine function. |
| PubMed: | Manipulation by tridemorph, a systemic fungicide, of the sterol composition of maize leaves and roots. |
| PubMed: | [Triterpenes and steroids in seeds of Solanum dulcamara]. |
| PubMed: | Analysis of methylsterol fractions from twenty vegetable oils. |
| PubMed: | Plant sterol metabolism. Studies on the substrate specificity of an enzyme capable of opening the cyclopropane ring of cycloeucalenol. |
| PubMed: | Evidence for the presence of an enzyme capable of opening the cyclopropane ring of cycloeucalenol. |
| PubMed: | Studies on phytosterol biosynthesis. The presence of 4-alpha,14-alpha-dimethyl-delta-8,24(28)-ergostadien-3-beta-ol in grapefruit peel and its co-occurrece with cycloeucalenol in higher plant tissues. |
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