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阿尔茨海默病、帕金森病和运动神经元病:衰老与环境之间的营养缺失性相互作用?

Alzheimer's disease, Parkinson's disease, and motoneurone disease: abiotrophic interaction between ageing and environment?

作者信息

Calne D B, Eisen A, McGeer E, Spencer P

出版信息

Lancet. 1986 Nov 8;2(8515):1067-70. doi: 10.1016/s0140-6736(86)90469-1.

Abstract

The hypothesis is that Alzheimer's disease, Parkinson's disease (PD), and motoneurone disease are due to environmental damage to specific regions of the central nervous system and that the damage remains subclinical for several decades but makes those affected especially prone to the consequences of age-related neuronal attrition. This proposal is based on the association between environmental factors and certain neurodegenerative diseases (eg, methylphenyltetra-hydropyridine and parkinsonism, poliovirus infection and post-poliomyelitis syndrome, chickling pea ingestion and lathyrism, an unidentified environmental factor and amyotrophic lateral sclerosis-PD complex of Guam, and trauma and pugilist's encephalopathy) and on the long latent period between exposure to environmental factor and the appearance of symptoms in some of these disorders. The practical implications of this hypothesis are that epidemiological attention should be focussed on the environment in early rather than late life, prevention may be a realistic goal if the cause of subclinical damage can be identified, a search should be undertaken for causal mechanisms linking subclinical neuronal damage due to an environmental factor and the normal ageing process, and (4) better understanding of the regional selective vulnerability of the nervous system to the ageing process might allow a rational approach to treatment.

摘要

该假说认为,阿尔茨海默病、帕金森病(PD)和运动神经元病是由于中枢神经系统特定区域受到环境损害所致,且这种损害在数十年内一直处于亚临床状态,但会使患者特别容易受到与年龄相关的神经元损耗的影响。这一观点基于环境因素与某些神经退行性疾病之间的关联(例如,1-甲基-4-苯基-1,2,3,6-四氢吡啶与帕金森综合征、脊髓灰质炎病毒感染与脊髓灰质炎后综合征、食用鹰嘴豆与山黧豆中毒、一种不明环境因素与关岛肌萎缩侧索硬化-帕金森综合征复合体,以及创伤与拳击员脑病),以及在某些此类疾病中,从接触环境因素到出现症状之间存在较长的潜伏期。该假说的实际意义在于,流行病学关注应在生命早期而非晚期聚焦于环境;如果能够确定亚临床损害的原因,预防可能是一个现实的目标;应探寻将环境因素导致的亚临床神经元损害与正常衰老过程联系起来的因果机制;并且(4)更好地理解神经系统对衰老过程的区域选择性易损性,可能会带来合理的治疗方法。

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