The Universal Non-Neuronal Nature of Parkinson's Disease: A Theory.

Central Asian Journal of Global Health Pub Date : 2016-06-01 eCollection Date: 2016-01-01 DOI:10.5195/cajgh.2016.231
André X C N Valente, Altynai Adilbayeva, Tursonjan Tokay, Albert A Rizvanov
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引用次数: 4

Abstract

Parkinson's disease (PD) is one of the most common neurodegenerative disorders, yet the etiology of the majority of its cases remains unknown. In this manuscript, relevant published evidence is interpreted and integrated into a comprehensive hypothesis on the nature, origin, and inter-cellular mode of propagation of sporadic PD. We propose to characterize sporadic PD as a pathological deviation in the global gene expression program of a cell: the PD expression-state, or PD-state for short. A universal cell-generic state, the PD-state deviation would be particularly damaging in a neuronal context, ultimately leading to neuron death and the ensuing observed clinical signs. We review why ageing associated accumulated damage caused by oxidative stress in mitochondria could be the trigger for a primordial cell to shift to the PD-state. We propose that hematopoietic cells could be the first to acquire the PD-state, at hematopoiesis, from the disruption in reactive oxygen species homeostasis that arises with age in the hematopoietic stem-cell niche. We argue that cellular ageing is nevertheless unlikely to explain the shift to the PD-state of all the subsequently affected cells in a patient, thus indicating the existence of a distinct mechanism of cellular propagation of the PD-state. We highlight recently published findings on the inter-cellular exchange of mitochondrial DNA and the ability of mitochondrial DNA to modulate the cellular global gene expression state and propose this could form the basis for the inter-cellular transmission of the PD-state.

帕金森氏症的普遍非神经元性质:一个理论。
帕金森病(PD)是最常见的神经退行性疾病之一,但其大多数病例的病因尚不清楚。在这篇文章中,相关的已发表的证据被解释和整合成一个关于散发性PD的性质、起源和细胞间传播方式的综合假设。我们建议将散发性PD描述为细胞整体基因表达程序的病理偏差:PD表达状态,或简称PD状态。作为一种普遍的细胞泛型状态,pd状态偏差在神经元环境中尤其具有破坏性,最终导致神经元死亡和随后观察到的临床症状。我们回顾了为什么线粒体氧化应激引起的衰老相关累积损伤可能是原始细胞转向pd状态的触发因素。我们提出造血细胞可能是在造血过程中,由于造血干细胞生态位中随年龄增长而出现的活性氧稳态破坏,而首先获得pd状态的细胞。然而,我们认为细胞老化不太可能解释患者所有随后受影响的细胞向pd状态的转变,从而表明pd状态的细胞传播存在独特的机制。我们强调了最近发表的关于线粒体DNA的细胞间交换和线粒体DNA调节细胞整体基因表达状态的能力的发现,并提出这可能构成pd状态的细胞间传递的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Central Asian Journal of Global Health
Central Asian Journal of Global Health PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-
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