米索前列醇(一种前列腺素E1类似物)单独或与WR-2721联合使用对小鼠肠道的辐射保护具有立体特异性。

IF 2.9 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
W R Hanson, K A Houseman, A K Nelson, P W Collins
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引用次数: 0

摘要

米索前列醇是一种前列腺素E1类似物,是迄今为止研究的前列腺素中最有效的辐射保护剂之一。米索前列醇诱导的保护也是广泛研究的硫醇化合物WR-2721的保护的添加剂。pg诱导的辐射防护机制及其与WR-2721的相互作用尚不清楚。研究其机制的一个重要步骤是确定PG诱导的保护及其与WR-2721的相互作用是否通过PG受体位点介导。不能直接测定小鼠肠致克隆细胞的受体位置;不过,间接的办法是可能的。米索前列醇由四种立体异构体组成,其中只有一种具有抗胃分泌和细胞保护作用。这里报道的研究比较了这种活性异构体与三种非活性异构体中的一种的辐射防护作用。此外,研究了WR-2721对这两种异构体的额外保护作用。结果表明,只有活性异构体对辐射损伤具有保护作用,且该异构体是WR-2721唯一具有额外保护作用的异构体。这些数据表明pg诱导的辐射保护是受体位点依赖和立体特异性的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radiation protection of the murine intestine by misoprostol, a prostaglandin E1 analogue, given alone or with WR-2721, is stereospecific.

Misoprostol, a prostaglandin (PG) E1 analogue, is one of the most effective radiation protectors of the PGs investigated to date. Misoprostol-induced protection is also additive to protection by the widely studied thiol compound, WR-2721. The mechanism of PG-induced radiation protection and its interaction with WR-2721 is unknown. One important step in the investigation of the mechanism is to determine if PG-induced protection and its interaction with WR-2721 is mediated through PG receptor sites. A direct determination of receptor sites on murine intestinal clonogenic cells could not be made; however an indirect approach was possible. Misoprostol is composed of four stereoisomers of about equal proportions of which only one is gastric antisecretory and cytoprotective. Studies reported here compared radiation protection by this active isomer with that of one of the three inactive isomers. Furthermore, the additional protection of the two isomers when administered with WR-2721 was investigated. Results showed that only the active isomer was protective from radiation injury and this isomer was the only one which afforded additional protection with WR-2721. These data show that PG-induced radiation protection is receptor site dependent and stereospecific.

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来源期刊
CiteScore
6.40
自引率
6.70%
发文量
60
审稿时长
13.2 weeks
期刊介绍: The role of lipids, including essential fatty acids and their prostaglandin, leukotriene and other derivatives, is now evident in almost all areas of biomedical science. Cell membrane behaviour and cell signalling in all tissues are highly dependent on the lipid constituents of cells. Prostaglandins, Leukotrienes & Essential Fatty Acids aims to cover all aspects of the roles of lipids in cellular, organ and whole organism function, and places a particular emphasis on human studies. Papers concerning all medical specialties are published. Much of the material is particularly relevant to the development of novel treatments for disease.
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