Suppr超能文献

氨肽酶抑制剂贝司他汀对脑啡肽代谢的抑制作用及其抗伤害感受活性。

Inhibition of enkephalin metabolism by, and antinociceptive activity of, bestatin, an aminopeptidase inhibitor.

作者信息

Chaillet P, Marçais-Collado H, Costentin J, Yi C C, De La Baume S, Schwartz J C

出版信息

Eur J Pharmacol. 1983 Jan 21;86(3-4):329-36. doi: 10.1016/0014-2999(83)90181-4.

Abstract

In the presence of thiorphan an 'enkephalinase' inhibitor, bestatin an aminopeptidase inhibitor of bacterial origin potently inhibited the hydrolysis of [3H][Leu5]enkephalin by slices from rat striatum with an IC50 value of about 0.2 microM whereas puromycin was approximately 1000 times less potent on this preparation. In vivo bestatin or thiorphan (but not puromycin) significantly protected [3H][Met5]enkephalin administered intracerebroventricularly to mice from hydrolysis and co-administration of these two peptidase inhibitors resulted in a strong reduction in the appearance of hydrolysis products in brain. In a parallel fashion the antinociceptive activity of [Met5]enkephalin in the mouse hot-plate test was additively potentiated by bestatin and thiorphan but not by puromycin. Finally both bestatin and thiorphan themselves displayed antinociceptive properties on either the hot-plate jump test or the phenyl-benzo-quinone writhing test. It is concluded that a bestatin-sensitive aminopeptidase activity together with the 'enkephalinase' activity plays a critical role in the inactivation of both exogenous and endogenous enkephalins.

摘要

在存在硫磷酰胺(一种脑啡肽酶抑制剂)的情况下,贝司他汀(一种源于细菌的氨肽酶抑制剂)能有效抑制大鼠纹状体切片对[3H][亮氨酸5]脑啡肽的水解,其IC50值约为0.2微摩尔,而嘌呤霉素对该制剂的效力约低1000倍。在体内,贝司他汀或硫磷酰胺(而非嘌呤霉素)能显著保护经脑室注射给小鼠的[3H][蛋氨酸5]脑啡肽不被水解,这两种肽酶抑制剂共同给药会使脑中水解产物的出现大幅减少。以类似方式,在小鼠热板试验中,贝司他汀和硫磷酰胺能增强[蛋氨酸5]脑啡肽的抗伤害感受活性,且呈相加作用,而嘌呤霉素则无此作用。最后,贝司他汀和硫磷酰胺本身在热板跳跃试验或苯醌扭体试验中均表现出抗伤害感受特性。结论是,贝司他汀敏感的氨肽酶活性与“脑啡肽酶”活性在使外源性和内源性脑啡肽失活过程中起关键作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验