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大鼠体内全反式-[11-³H]视黄醇β-葡萄糖醛酸苷的合成与代谢

Synthesis and metabolism of all-trans-[11-3H]retinyl beta-glucuronide in rats in vivo.

作者信息

Barua A B, Batres R O, Olson J A

机构信息

Department of Biochemistry and Biophysics, Iowa State University, Ames 50011.

出版信息

Biochem J. 1988 Jun 1;252(2):415-20. doi: 10.1042/bj2520415.

Abstract

All-trans-[11-3H]retinyl beta-glucuronide (all-trans-[11-3H]ROG) was synthesized from [3H]retinol by an improved synthetic procedure. After its intraperitoneal injection into rats, ROG is initially found as the predominant labelled component in the serum, but then is distributed to the liver, intestine, kidney and other organs of the body. Esters of vitamin A, which constituted the major metabolite of ROG, were detected in the liver as well as in other tissues. Of the labelled vitamin A esters derived from tritiated ROG in the liver and intestine, about 50% contained 5,6-epoxyretinol, which was characterized by its chromatographic behaviour, formation of an acetyl ester and lack of reactivity with diazomethane. Thus ROG, although converted to retinol in vivo, might also act physiologically in an intact form.

摘要

全反式-[11-³H]视黄醇β-葡萄糖醛酸苷(全反式-[11-³H]ROG)通过改进的合成方法由[³H]视黄醇合成。将其腹腔注射到大鼠体内后,ROG最初是血清中主要的标记成分,但随后分布到肝脏、肠道、肾脏和身体的其他器官。维生素A酯是ROG的主要代谢产物,在肝脏以及其他组织中均被检测到。在肝脏和肠道中,源自氚化ROG的标记维生素A酯中约50%含有5,6-环氧视黄醇,其通过色谱行为、乙酰酯的形成以及与重氮甲烷缺乏反应性来表征。因此,ROG尽管在体内会转化为视黄醇,但也可能以完整形式发挥生理作用。

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本文引用的文献

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The biological activity of 5,6-epoxyretinoic acid.
J Nutr. 1980 Nov;110(11):2225-30. doi: 10.1093/jn/110.11.2225.

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