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在暴露于特定化学致畸剂的大鼠胚胎中诱导热休克反应(HSP 72)。

Induction of a heat shock response (HSP 72) in rat embryos exposed to selected chemical teratogens.

作者信息

Mirkes P E, Doggett B, Cornel L

机构信息

Department of Pediatrics, University of Washington School of Medicine, Seattle 98195.

出版信息

Teratology. 1994 Feb;49(2):135-42. doi: 10.1002/tera.1420490209.

Abstract

A monoclonal antibody to the 72 kD heat shock protein (HSP 72), Western blot analysis and 2-D gel electrophoresis/autoradiography were used to determine whether selected chemical teratogens induced the synthesis and accumulation of HSP 72 in postimplantation rat embryos exposed in vitro. The chemical teratogens studied include N-Acetoxy-2-acetylaminofluorene (N-Ac-AAF), cadmium chloride (CAD), cyclophosphamide (CP), sodium arsenite (AS), and sodium salicylate (SAL). Exposures to test chemicals were selected that produced obvious embryotoxicity characterized by abnormal development and growth retardation. Of the five chemical teratogens studied, AS and SAL induced the synthesis and accumulation of HSP 72 in day 10 rat embryos. The kinetics of HSP 72 accumulation, however, differed between AS- and SAL-treated embryos. Maximal levels of HSP 72 were observed 24 hours after AS exposure and 10 hours after SAL exposure. N-Ac-AAF, CD, and CP induced obvious embryotoxicity; however, none of these chemical teratogens induced HSP 72 at any of the timepoints assayed. Although only a small sample of chemical teratogens was studied, our results suggest that the heat shock response, characterized by the synthesis and accumulation of HSP 72, is not a general biomarker for chemical teratogens.

摘要

使用一种针对72 kD热休克蛋白(HSP 72)的单克隆抗体、蛋白质免疫印迹分析以及二维凝胶电泳/放射自显影技术,来确定所选化学致畸剂是否会在体外暴露的植入后大鼠胚胎中诱导HSP 72的合成与积累。所研究的化学致畸剂包括N-乙酰氧基-2-乙酰氨基芴(N-Ac-AAF)、氯化镉(CAD)、环磷酰胺(CP)、亚砷酸钠(AS)和水杨酸钠(SAL)。选择了能产生以发育异常和生长迟缓为特征的明显胚胎毒性的受试化学物质进行暴露实验。在所研究的五种化学致畸剂中,AS和SAL在第10天的大鼠胚胎中诱导了HSP 72的合成与积累。然而,AS和SAL处理的胚胎中HSP 72积累的动力学有所不同。AS暴露后24小时观察到HSP 72的最高水平,SAL暴露后10小时观察到最高水平。N-Ac-AAF、CD和CP诱导了明显的胚胎毒性;然而,在任何检测时间点,这些化学致畸剂均未诱导HSP 72。尽管仅研究了一小部分化学致畸剂,但我们的结果表明,以HSP 72的合成与积累为特征的热休克反应并非化学致畸剂的通用生物标志物。

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