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[14C]戊二醛的分布、代谢及排泄

Distribution, metabolism, and excretion of [14C] glutaraldehyde.

作者信息

Ranly D M, Horn D

机构信息

University of Texas Health Science Center at San Antonio, TX.

出版信息

J Endod. 1990 Mar;16(3):135-9. doi: 10.1016/S0099-2399(06)81590-6.

Abstract

Radiolabeled glutaraldehyde (GA) was infused into rats in order to determine its distribution between cellular and humoral fractions of the blood, its potential metabolism by RBC's, its rate of excretion, and the nature of its urinary products. This study demonstrated that [14C]GA was distributed between the RBC's and plasma at a ratio greater than 1. Although the absolute counts of both fractions dropped 80% over 3 days, the percentage bound or incorporated increased over time. Despite the extensive uptake by RBC's these cells were unable to metabolize GA to CO2. Urinary excretion of the radiolabel was rapid; the predominant form in the urine was less than 1 kDa in size. All evidence suggested that it was not native GA. We conclude that the RBC's can incorporate GA, but can not metabolize it completely to CO2. Nevertheless, much of the infused GA was rapidly converted to nonreactive metabolites and eliminated by the kidney.

摘要

为了确定放射性标记的戊二醛(GA)在血液细胞成分与体液成分之间的分布、其在红细胞中的潜在代谢、排泄速率以及尿中产物的性质,将其注入大鼠体内。该研究表明,[14C]GA在红细胞与血浆之间的分布比例大于1。尽管这两种成分的绝对计数在3天内下降了80%,但结合或掺入的百分比随时间增加。尽管红细胞对GA摄取广泛,但这些细胞无法将GA代谢为二氧化碳。放射性标记物的尿排泄很快;尿液中的主要形式分子量小于1 kDa。所有证据表明它不是天然GA。我们得出结论,红细胞可以摄取GA,但不能将其完全代谢为二氧化碳。然而,注入的大部分GA迅速转化为无反应性的代谢产物并由肾脏排出。

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