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从大脑中分离出一种具有与吗啡相似药理特性的内源性化合物。

Isolation of an endogenous compound from the brain with pharmacological properties similar to morphine.

作者信息

Hughes J

出版信息

Brain Res. 1975 May 2;88(2):295-308. doi: 10.1016/0006-8993(75)90391-1.

Abstract

This investigation was carried out to test the hypothesis that the brain contains a substance that functions as an endogenous mediator at central morphine receptor sites. The extraction and purification of a low molecular weight substance are described. This substance inhibits neurally evoked contractions of the mouse vas deferens and guinea pig myenteric plexus. The inhibitory action of this substance was antagonized by the 3 narcotic antagonists naloxone, naltrexone and MR 1302 at nanomolar concentrations. The narcotic antagonists alone had no effect on the assay tissues. The purified substance had no effect on the guinea pig or rabbit vas deferens, tissues which do not possess morphine receptor sites. The pharmacological activity of the substance is destroyed by carboxypeptidase and leucine aminopeptidase, it is hydrophilic and behaves as an ampholyte in ion exchange systems. These observations and the production of ninhydrin positive products on acid hydrolysis indicate the presence of a small molecular weight (less than 700) peptide. The morphine-like substance was unevenly distributed in the brain, the highest concentrations occurring in the striatum, midbrain, pons and medulla. No activity could be detected in extracts of cerebellum, liver or lung. It is suggested that the compound isolated in this investigation forms part of a central pain suppressive system and may also have a wider neurochemical role in the brain.

摘要

本研究旨在验证如下假设

大脑中含有一种物质,可作为中枢吗啡受体部位的内源性介质发挥作用。文中描述了一种低分子量物质的提取和纯化过程。该物质可抑制小鼠输精管和豚鼠肠肌丛的神经诱发收缩。在纳摩尔浓度下,3种麻醉拮抗剂纳洛酮、纳曲酮和MR 1302可拮抗该物质的抑制作用。单独使用这些麻醉拮抗剂对检测组织无影响。纯化后的物质对豚鼠或兔输精管无作用,因为这些组织不具备吗啡受体部位。该物质的药理活性可被羧肽酶和亮氨酸氨肽酶破坏,它具有亲水性,在离子交换系统中表现为两性电解质。这些观察结果以及酸水解时茚三酮阳性产物的产生表明存在一种低分子量(小于700)的肽。吗啡样物质在大脑中分布不均,纹状体、中脑、脑桥和延髓中的浓度最高。在小脑、肝脏或肺的提取物中未检测到活性。提示本研究中分离出的化合物是中枢性疼痛抑制系统的一部分,可能在大脑中还具有更广泛的神经化学作用。

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