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己巴比妥对映体在体内代谢中葡糖醛酸苷的立体选择性形成:兔尿中葡糖醛酸苷的分离与定量

Stereoselective formation of glucuronides in metabolism of hexobarbital enantiomers in vivo: isolation and quantitation of glucuronides in rabbit urine.

作者信息

Miyano K, Ota T, Toki S

出版信息

Drug Metab Dispos. 1981 Jan-Feb;9(1):60-4.

PMID:6111434
Abstract

An improved column-chromatographic method was described for isolation and purification on preparative scale of a glucuronide from urine of rabbits administered (RS)-hexobarbital. The analytically pure preparation obtained was found to be a mixture of two glucuronides of diastereomeric 3'-hydroxyhexobarbitals. Rates of hydrolysis of the glucuronides were dependent on the enzyme preparations used as well as on the configuration of the substrate. For quantitative determination, the glucuronides were hydrolyzed completely by beta-glucuronidases from either Escherichia coli or abalone entrails under the conditions used. In vivo studies on the metabolism of (R)-(-)- and (S)-(+)-hexobarbital in the rabbit showed that the glucuronides excreted in 24-hr urine accounted for about 30% of the dose of each enantiomer, and that conjugation of the hydroxy isomers with glucuronic acid was so stereoselective that the isomers with S-configuration at the 3'-position were preferentially conjugated. There were almost no differences in the urinary metabolite profile between normal an PB-treated rabbits; however, a noticeable change was observed in recovery of unchanged (S)-hexobarbital after phenobarbital treatment.

摘要

描述了一种改进的柱色谱方法,用于从给予(RS)-己巴比妥的兔尿中制备规模地分离和纯化葡糖醛酸苷。所获得的分析纯制剂被发现是两种非对映体3'-羟基己巴比妥葡糖醛酸苷的混合物。葡糖醛酸苷的水解速率取决于所用的酶制剂以及底物的构型。为了进行定量测定,在所用条件下,葡糖醛酸苷可被来自大肠杆菌或鲍鱼内脏的β-葡糖醛酸酶完全水解。对兔体内(R)-(-)-和(S)-(+)-己巴比妥代谢的研究表明,24小时尿中排泄的葡糖醛酸苷约占每种对映体剂量的30%,并且羟基异构体与葡糖醛酸的结合具有立体选择性,使得在3'-位具有S-构型的异构体优先结合。正常兔和苯巴比妥处理的兔之间的尿代谢物谱几乎没有差异;然而,在苯巴比妥处理后,未变化的(S)-己巴比妥的回收率观察到明显变化。

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引用本文的文献

1
Intra-arterial administration of hexobarbital enantiomers to the rat: disposition and estimation of apparent extraction ratio.
Pharm Weekbl Sci. 1986 Apr 25;8(2):139-44. doi: 10.1007/BF02086148.