1224-78-8
Chemical Structure
all-trans-Anhydro Retinol
Synonym(s): Anhydrovitamin A
- CAS No.: 1224-78-8
- Formula:C20H28
- Molecular Weight:268.44
IUPAC Name: (E)-6-((2E,4E,6E)-3,7-dimethylnona-2,4,6,8-tetraen-1-ylidene)-1,5,5-trimethylcyclohex-1-ene
InChIKey: FWNRILWHNGFAIN-OYUWDNMLSA-N
SMILES: CC1(C)CCC=C(C)/C1=C/C=C(C)/C=C/C=C(C)/C=C
Biological Activity: all-trans-Anhydro Retinol (Anhydrovitamin A) is an orally active degradation product formed by the dehydration of vitamin A alcohol and its esters under conditions such as acidic catalysis or hydroxylic solvents, with a biological activity only 0.4% of that of Vitamin A (HY-B1342). In rats, all-trans-Anhydro Retinol can be metabolized into hydroxy derivatives and their esters, but it cannot be converted into Vitamin A (HY-B1342) and has a low storage capacity in the body[1][2].
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all-trans-Anhydro Retinol | 99.02% | all-trans-Anhydro Retinol (Anhydrovitamin A) is an orally active degradation product formed by the dehydration of vitamin A alcohol and its esters under conditions such as acidic catalysis or hydroxylic solvents, with a biological activity only 0.4% of that of Vitamin A (HY-B1342). In rats, all-trans-Anhydro Retinol can be metabolized into hydroxy derivatives and their esters, but it cannot be converted into Vitamin A (HY-B1342) and has a low storage capacity in the body. | ||||||||||||||||||||
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all-trans-Anhydro Retinol (Standard) | ≥98% | all-trans-Anhydro Retinol (Standard) (Anhydrovitamin A (Standard)) is the analytical standard of all-trans-Anhydro Retinol (HY-N7495). This product is intended for research and analytical applications. all-trans-Anhydro Retinol (Anhydrovitamin A) is an orally active degradation product formed by the dehydration of vitamin A alcohol and its esters under conditions such as acidic catalysis or hydroxylic solvents, with a biological activity only 0.4% of that of Vitamin A (HY-B1342). In rats, all-trans-Anhydro Retinol can be metabolized into hydroxy derivatives and their esters, but it cannot be converted into Vitamin A (HY-B1342) and has a low storage capacity in the body. | ||||||||||||||||||||
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- [1]. T N Varma, et al. The Utilization of Anhydrovitamin A by the Vitamin A-deficient Rat. Biochim Biophys Acta. 1965 Jun 15;104(1):71-7. [Content Brief]
- [2]. T HIGUCHI, et al. Kinetics of Formation of Anhydrovitamin A From Vitamin A Alcohol and Its Acetate. J Am Pharm Assoc Am Pharm Assoc. 1959 Mar;48(3):155-61. [Content Brief]