Enzymatic routes for the synthesis of ursodeoxycholic acid

熊去氧胆酸 胆酸 化学 鹅去氧胆酸 胆汁酸 生物转化 生物转化 生物化学 梭菌 生物催化 有机化学 细菌 生物 催化作用 发酵 遗传学 离子液体
作者
Thorsten Eggert,Daniel Bakonyi,Werner Hummel
出处
期刊:Journal of Biotechnology [Elsevier BV]
卷期号:191: 11-21 被引量:83
标识
DOI:10.1016/j.jbiotec.2014.08.006
摘要

Ursodeoxycholic acid, a secondary bile acid, is used as a drug for the treatment of various liver diseases, the optimal dose comprises the range of 8-10mg/kg/day. For industrial syntheses, the structural complexity of this bile acid requires the use of an appropriate starting material as well as the application of regio- and enantio-selective enzymes for its derivatization. Most strategies for the synthesis start from cholic acid or chenodeoxycholic acid. The latter requires the conversion of the hydroxyl group at C-7 from α- into β-position in order to obtain ursodeoxycholic acid. Cholic acid on the other hand does not only require the same epimerization reaction at C-7 but the removal of the hydroxyl group at C-12 as well. There are several bacterial regio- and enantio-selective hydroxysteroid dehydrogenases (HSDHs) to carry out the desired reactions, for example 7α-HSDHs from strains of Clostridium, Bacteroides or Xanthomonas, 7β-HSDHs from Clostridium, Collinsella, or Ruminococcus, or 12α-HSDH from Clostridium or from Eggerthella. However, all these bioconversion reactions need additional steps for the regeneration of the coenzymes. Selected multi-step reaction systems for the synthesis of ursodeoxycholic acid are presented in this review.
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