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精神分裂症中β-内啡肽的体外代谢差异

Differential in vitro metabolism of beta-endorphin in schizophrenia.

作者信息

Schoemaker H, Davis T P

出版信息

Peptides. 1984 Nov-Dec;5(6):1049-54. doi: 10.1016/0196-9781(84)90169-4.

Abstract

Biologically active peptide fragments derived from the proteolytic cleavage of beta-endorphin (beta E) have been shown to be present in the brain. Based on clinical results using some of these fragments in neuropsychiatric disease studies we investigated the in vitro metabolism of beta E by twice-washed membrane homogenates of postmortem putamen from sex and age matched controls versus subjects with a diagnosis of schizophrenia. The present study demonstrates that frozen (-80 degrees C) postmortem human tissues are viable for these studies and that metabolism in control tissue proceeds similarly to fresh tissues. Furthermore, a significant increase in the formation of the putative neuroleptic-like peptide fragment des-enkephalin-gamma-endorphin in postmortem schizophrenic putamen versus controls was shown. A significant decrease in the formation of beta E was also reported. These data suggest that an approach using postmortem human brain is possible in studying beta-endorphin catabolism and is therefore applicable to other neuropeptide systems.

摘要

源自β-内啡肽(βE)蛋白水解裂解的生物活性肽片段已被证明存在于大脑中。基于在神经精神疾病研究中使用其中一些片段的临床结果,我们研究了来自性别和年龄匹配的对照组与精神分裂症诊断患者的死后壳核的两次洗涤膜匀浆对βE的体外代谢。本研究表明,冷冻(-80摄氏度)的死后人体组织可用于这些研究,并且对照组织中的代谢与新鲜组织相似。此外,与对照组相比,死后精神分裂症患者壳核中假定的抗精神病样肽片段脱脑啡肽-γ-内啡肽的形成显著增加。还报告了βE形成的显著减少。这些数据表明,使用死后人类大脑的方法在研究β-内啡肽分解代谢方面是可行的,因此适用于其他神经肽系统。

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