10-epi-Colletodiol
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Overview
Description
10-epi-Colletodiol is a natural product found in Diplogelasinospora grovesii, Colletotrichum truncatum, and Dichotomopilus funicola with data available.
Scientific Research Applications
Immunosuppressive Properties
10-epi-Colletodiol, a stereoisomer of colletodiol, has been identified for its immunosuppressive properties. Isolated from the Ascomycete, Diplogelasinospora grovesii, it showed potential in suppressing immune responses. Macrophin, another compound isolated alongside 10-epi-colletodiol, exhibited significant immunosuppressive activity, suggesting potential research avenues in immunology and pharmacology (Fujimoto et al., 1998).
Chemical Characterization and Derivatives
The study of 10-epi-Colletodiol also extends to its chemical characterization and synthesis. Research on colletodiol, of which 10-epi-colletodiol is a stereoisomer, involved understanding its stereochemistry and the structures of related metabolites. This fundamental research aids in comprehending the molecular architecture and potential reactivity of 10-epi-colletodiol (Macmillan & Simpson, 1973).
properties
Product Name |
10-epi-Colletodiol |
---|---|
Molecular Formula |
C14H20O6 |
Molecular Weight |
284.3 g/mol |
IUPAC Name |
(3E,6R,9E,11S,12R,14R)-11,12-dihydroxy-6,14-dimethyl-1,7-dioxacyclotetradeca-3,9-diene-2,8-dione |
InChI |
InChI=1S/C14H20O6/c1-9-4-3-5-13(17)20-10(2)8-12(16)11(15)6-7-14(18)19-9/h3,5-7,9-12,15-16H,4,8H2,1-2H3/b5-3+,7-6+/t9-,10-,11+,12-/m1/s1 |
InChI Key |
SHQHOHRUGBYJBS-DACQJQBYSA-N |
Isomeric SMILES |
C[C@@H]1C/C=C/C(=O)O[C@@H](C[C@H]([C@H](/C=C/C(=O)O1)O)O)C |
Canonical SMILES |
CC1CC=CC(=O)OC(CC(C(C=CC(=O)O1)O)O)C |
synonyms |
10-epi-colletodiol colletodiol |
Origin of Product |
United States |
Retrosynthesis Analysis
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Strategy Settings
Precursor scoring | Relevance Heuristic |
---|---|
Min. plausibility | 0.01 |
Model | Template_relevance |
Template Set | Pistachio/Bkms_metabolic/Pistachio_ringbreaker/Reaxys/Reaxys_biocatalysis |
Top-N result to add to graph | 6 |
Feasible Synthetic Routes
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