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首页> 外文期刊>European Journal of Drug Metabolism and Pharmacokinetics >Chemical and metabolic transformations of selected bile acids
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Chemical and metabolic transformations of selected bile acids

机译:选定胆汁酸的化学和代谢转化

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This article surveys chemical transformations of selected bile acids. Chemical transformations were initially carried out with the aim of determining the structure of bile acids. More recently they have been concerned with bile acid interconversions as well as with the synthesis of steroid hormones, vitamins and thérapeute agents. Studies of similarities and differences in the biosynthesis of bile acids from cholesterol have occupied many researches. However, this article reviews only papers dealing with the synthesis of potential intermediates in the biosynthesis of bile acids. Steroid hormones such as pregnenolone, progesterone and testosterone are synthesized from methyl thiodeoxycholate whereas cortisone is synthesized from methyl deoxycholiate. Numerous papers and patents devoted to the synthesis of ursodeoxycholic acid from cholic or chenodeoxycholic acid testify to its effectiveness in the treatment of cholelithiasis. Chenodeoxycholic acid appears to be an excellent precursor in the synthesis of steroid plant growth regulators, as well as in the synthesis of metabolites and vitamin D analogues. Chirality of bile acids has been exploited in the synthesis of cyclic and acyclic receptors and solvents. Cholic and deoxycholic acids have been used to create new macrocyclic structures which show different capacities to bind and transport other compounds. Another important trend in the chemistry of bile acids is their application in combinatorial chemistry.
机译:本文调查了选定的胆汁酸的化学转化。最初进行化学转化的目的是确定胆汁酸的结构。最近,他们一直在关注胆汁酸的相互转化以及类固醇激素,维生素和thrapeute剂的合成。从胆固醇的生物合成胆汁酸的异同研究已经进行了很多研究。但是,本文仅评论有关胆汁酸生物合成中潜在中间体的合成的论文。类固醇激素如孕烯醇酮,孕酮和睾丸激素是由硫代脱氧胆酸甲酯合成的,而可的松则是由脱氧胆酸甲酯合成的。致力于从胆酸或鹅去氧胆酸合成熊去氧胆酸的大量论文和专利证明了其在治疗胆石症中的有效性。鹅去氧胆酸在类固醇植物生长调节剂的合成以及代谢产物和维生素D类似物的合成中似乎是极好的前体。胆汁酸的手性已被用于合成环状和非环状的受体和溶剂。胆酸和脱氧胆酸已经用于产生新的大环结构,其显示出结合和运输其他化合物的不同能力。胆汁酸化学的另一个重要趋势是它们在组合化学中的应用。

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