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神经元内吡啶代谢物的生成可能导致药物性帕金森综合征。

Intraneuronal generation of a pyridinium metabolite may cause drug-induced parkinsonism.

作者信息

Markey S P, Johannessen J N, Chiueh C C, Burns R S, Herkenham M A

出版信息

Nature. 1984;311(5985):464-7. doi: 10.1038/311464a0.

Abstract

The compound 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) induces an irreversible neurological syndrome in man and monkey which is similar to idiopathic Parkinson's disease in its clinical, pathological, neurochemical and pharmacological response properties. MPTP is selectively neurotoxic to the dopaminergic regions of the brain, destroying neurones in the substantia nigra (A8 and A9 cells, nigrostriatal system) but not the ventral tegmental area (A10 cells, mesolimbic system). Selective dopamine depletion and nigral cell loss after MPTP treatment has also been reported recently in the mouse. The mechanism by which a peripherally administered, low-molecular weight compound exerts permanent but selective toxic effects on dopamine systems in the brain may be relevant to parkinsonian syndromes induced by other toxins and to the disease process in idiopathic Parkinson's disease. We report here that MPTP is oxidized in the brain to a pyridinium species (a compound with potent herbicidal activity) and, in the monkey, is trapped intraneuronally. Furthermore, we demonstrate that this enzymatic oxidation is blocked in vivo in the mouse by a monoamine oxidase inhibitor, a condition which also blocks the neurotoxicity, indicating that the oxidative metabolism of MPTP is required for its neurotoxic effect.

摘要

化合物1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)可在人和猴中诱发一种不可逆的神经综合征,该综合征在临床、病理、神经化学和药理学反应特性方面与特发性帕金森病相似。MPTP对脑内的多巴胺能区域具有选择性神经毒性,可破坏黑质中的神经元(A8和A9细胞,黑质纹状体系统),但不影响腹侧被盖区(A10细胞,中脑边缘系统)。最近在小鼠中也报道了MPTP处理后选择性多巴胺耗竭和黑质细胞丢失的情况。一种经外周给药的低分子量化合物对脑内多巴胺系统产生永久性但选择性毒性作用的机制,可能与其他毒素诱发的帕金森综合征以及特发性帕金森病的疾病进程有关。我们在此报告,MPTP在脑内被氧化为一种吡啶鎓物质(一种具有强大除草活性的化合物),并且在猴中,它被捕获在神经元内。此外,我们证明这种酶促氧化在小鼠体内被单胺氧化酶抑制剂阻断,这种情况也会阻断神经毒性,表明MPTP的氧化代谢是其神经毒性作用所必需的。

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