2016
DOI: 10.1248/cpb.c16-00247
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Chemical Synthesis of Uncommon Natural Bile Acids: The 9α-Hydroxy Derivatives of Chenodeoxycholic and Lithocholic Acids

Abstract: The chemical synthesis of the 9α-hydroxy derivatives of chenodeoxycholic and lithocholic acids is reported. For initiating the synthesis of the 9α-hydroxy derivative of chenodeoxycholic acid, cholic acid was used; for the synthesis of the 9α-hydroxy derivative of lithocholic acid, deoxycholic acid was used. The principal reactions involved were (1) decarbonylation of conjugated 12-oxo-Δ 9(11) -derivatives using in situ generated monochloroalane (AlH 2 Cl) prepared from LiAlH 4 and AlCl 3 , (2) epoxidation of t… Show more

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Cited by 4 publications
(4 citation statements)
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References 33 publications
(32 reference statements)
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“…Nussim, Mazur, and Sondheimer () reported that the hydroxylation of △ 9(11) ‐5α‐steroids with A/B‐ trans junction yielded almost exclusively the corresponding 11α‐alcohols; however, the reaction did not proceed at all for △ 9(11) ‐5β‐steroids with A/B‐ cis junction; on the other hand, the reaction of △ 11 ‐5α‐steroids yielded the corresponding 11α‐ and 12α‐alcohols in a ratio of 1:1. In preliminary experiments, we found that 11α‐hydroxylation of △ 9(11) ‐5β‐cholen‐3α,24‐diol (Iida et al, ) was unsuccessful under various conditions, in analogy with the previous finding of other △ 9(11) ‐5β‐steroids (Nussim et al, ). Furthermore, an attempted reductive cleavage with AlH 2 Cl (Iida et al, ) of methyl 3α‐acetoxy‐11α,12α‐epoxy‐5β‐cholan‐24‐oate, which was easily prepared from 6a intermediate, failed to afford 5β‐cholan‐3α,12α,24‐triol as the major product.…”
Section: Resultssupporting
confidence: 65%
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“…Nussim, Mazur, and Sondheimer () reported that the hydroxylation of △ 9(11) ‐5α‐steroids with A/B‐ trans junction yielded almost exclusively the corresponding 11α‐alcohols; however, the reaction did not proceed at all for △ 9(11) ‐5β‐steroids with A/B‐ cis junction; on the other hand, the reaction of △ 11 ‐5α‐steroids yielded the corresponding 11α‐ and 12α‐alcohols in a ratio of 1:1. In preliminary experiments, we found that 11α‐hydroxylation of △ 9(11) ‐5β‐cholen‐3α,24‐diol (Iida et al, ) was unsuccessful under various conditions, in analogy with the previous finding of other △ 9(11) ‐5β‐steroids (Nussim et al, ). Furthermore, an attempted reductive cleavage with AlH 2 Cl (Iida et al, ) of methyl 3α‐acetoxy‐11α,12α‐epoxy‐5β‐cholan‐24‐oate, which was easily prepared from 6a intermediate, failed to afford 5β‐cholan‐3α,12α,24‐triol as the major product.…”
Section: Resultssupporting
confidence: 65%
“…In preliminary experiments, we found that 11α‐hydroxylation of △ 9(11) ‐5β‐cholen‐3α,24‐diol (Iida et al, ) was unsuccessful under various conditions, in analogy with the previous finding of other △ 9(11) ‐5β‐steroids (Nussim et al, ). Furthermore, an attempted reductive cleavage with AlH 2 Cl (Iida et al, ) of methyl 3α‐acetoxy‐11α,12α‐epoxy‐5β‐cholan‐24‐oate, which was easily prepared from 6a intermediate, failed to afford 5β‐cholan‐3α,12α,24‐triol as the major product. Hydroxylation of 6a , instead of 7a , was also unsatisfactory, yielding a complex mixture of products, probably because of the simultaneous formation of partially hydrolyzed products at C‐3/C‐7 and C‐24 by the alkaline reagent.…”
Section: Resultssupporting
confidence: 65%
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“…These results indicate that KSHs could be efficient biocatalysts for steroidal 9α‐hydroxylation. In contrast to the previously reported eight‐step chemical synthesis of related 9α‐hydroxylated steroids (<5% overall yield), [7c] this biocatalytic approach allows for an efficient one‐step enzymatic installation of the 9α‐hydroxyl group with excellent regio‐ and stereospecificity.…”
Section: Resultsmentioning
confidence: 82%