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与肢体畸形发生相关的胚胎小鼠肢芽中假定形态发生素视黄酸的内源性水平升高。

Elevations in the endogenous levels of the putative morphogen retinoic acid in embryonic mouse limb-buds associated with limb dysmorphogenesis.

作者信息

Satre M A, Kochhar D M

机构信息

Department of Anatomy, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

Dev Biol. 1989 Jun;133(2):529-36. doi: 10.1016/0012-1606(89)90055-9.

Abstract

Retinoic acid, an endogenous metabolite of vitamin A (retinol), possesses striking biological activity akin to a morphogen in developing and regenerating vertebrate limbs. Systemic administration of retinoic acid (RA) to pregnant mammals during the period of limb organogenesis invariably results in dose-dependent dysmorphogenesis. In an attempt to uncover the mode of action of RA in the developing limb bud we analyzed, by HPLC methods, the levels of RA and its metabolic precursor, retinol, in embryonic mouse tissues prior to and following maternal exposure to a teratogenic dose of RA. Detectable levels of both RA and its isomer 13-cis-retinoic acid were found in the limb buds of Day 11 mouse embryos (40 +/- 2 somites). Although retinol was the major retinoid found in ethanolic extracts of either whole embryo or the limb buds, the latter is enriched in RA compared to the whole embryo. This indicated either a higher degree of retinol metabolism or a sequestration of RA in the limb bud compared to the rest of the embryo at this stage of development. A study of the time course of retinoid levels in treated embryos showed that changes occur rapidly, are stable for several hours, and then begin to return to pretreatment levels. After a maternal dose of 10 mg/kg RA, which resulted in a mild degree of limb anomalies, peak RA levels in the limb bud increased 50-fold over the endogenous level; a full 300-fold increase was found after a 100 mg/kg dose which results in 100% incidence of phocomelia. Interestingly, a dose-dependent depression in retinol levels was observed after RA treatment both in maternal plasma as well as the embryo. Studies are in progress to trace the intracellular disposition of both retinol and RA as well as any further active metabolite of RA in the limb buds and other embryonic tissues.

摘要

视黄酸是维生素A(视黄醇)的内源性代谢产物,在脊椎动物肢体发育和再生过程中具有类似于形态发生原的显著生物活性。在肢体器官发生期,给怀孕的哺乳动物全身施用视黄酸(RA)总会导致剂量依赖性的畸形发生。为了揭示RA在发育中的肢体芽中的作用方式,我们通过高效液相色谱法分析了母体暴露于致畸剂量的RA之前和之后胚胎小鼠组织中RA及其代谢前体视黄醇的水平。在第11天小鼠胚胎(40±2体节)的肢体芽中发现了可检测水平的RA及其异构体13 - 顺式视黄酸。虽然视黄醇是全胚胎或肢体芽乙醇提取物中发现的主要类视黄醇,但与全胚胎相比,肢体芽中RA含量更高。这表明在发育的这个阶段,与胚胎的其他部分相比,肢体芽中视黄醇的代谢程度更高或RA被隔离。对经处理胚胎中类视黄醇水平的时间进程研究表明,变化迅速,在几个小时内保持稳定,然后开始恢复到处理前的水平。母体给予10 mg/kg RA剂量后,导致轻度肢体异常,肢体芽中的RA峰值水平比内源性水平增加了50倍;给予100 mg/kg剂量后,发现增加了整整300倍,这导致短肢畸形的发生率为100%。有趣的是,RA处理后,在母体血浆和胚胎中均观察到视黄醇水平呈剂量依赖性下降。目前正在进行研究,以追踪视黄醇和RA在肢体芽及其他胚胎组织中的细胞内分布,以及RA的任何进一步的活性代谢产物。

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