神经炎症是肌萎缩性侧索硬化症、艾滋病和多发性硬化症发病模式进展的直接原因。

Pathology research international Pub Date : 2012-01-01 Epub Date: 2012-12-04 DOI:10.1155/2012/169270
Lawrence M Agius
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引用次数: 7

摘要

大运动神经元损伤的实现是嵌入在系统模式进化的平行凋亡和坏死途径的上下文参考中。细胞成分的广泛损失发生在细胞内,并涉及潜在的免疫可定义的神经炎症的反应性参与。在这种情况下,偶发和遗传形式的肌萎缩性硬化症与反应性成分相似,一方面涉及蛋白质聚集和构象错误折叠,另一方面涉及强大的氧化降解,破坏蛋白酶体清除机制。在这样的条件下,全球参与只是失调实现的一个方面,它诱导了调节和伤害的定义系统的发展,包括由突变的超氧化物歧化酶的分子变异的压倒性不成熟所证明的后果系统。在神经炎症后果的过程中,免疫系统是神经元反应性参与的组成部分,作为疾病识别的模式和作为普遍的自主运动特征的系统生物学。认识到神经系统中的各种炎症状态是表型表达的原型变异性和发病机制的渐进进展是非常重要的。事实上,肌萎缩性侧索硬化症的决定性定义是首先在运动细胞成分的相应损失和消耗的途径中增加表型调节。在涉及神经元和神经元网络的终末期损伤状态的实现中,神经炎症证明了这种致病性进展的上下文传播模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuroinflammation as the proximate cause of signature pathogenic pattern progression in amyotrophic lateral sclerosis, AIDS, and multiple sclerosis.

The realization of injury to large motor neurons is embedded within contextual reference to the parallel pathways of apoptosis and necrosis of system-patterned evolution. A widespread loss of cell components occurs intracellularly and involves a reactive participation to a neuroinflammation that potentially is immunologically definable. In such terms, sporadic and hereditary forms of amyotrophic sclerosis are paralleled by the components of a reactive nature that involve the aggregation of proteins and conformational misfolding on the one hand and a powerful oxidative degradation that overwhelms the proteasome clearance mechanisms. In such terms, global participation is only one aspect of a disorder realization that induces the development of the defining systems of modulation and of injury that involves the systems of consequence as demonstrated by the overwhelming immaturity of the molecular variants of mutated superoxide dismutase. It is further to such processes of neuroinflammatory consequence that the immune system is integral to the reactive involvement of neurons as patterns of disease recognition and as the system biology of prevalent voluntarily motor character. It is highly significant to recognize various inflammatory states in the nervous system as prototype variability in phenotype expression and as incremental progression in pathogenesis. In fact a determining definition of amyotrophic lateral sclerosis is an incremental phenotype modulation within the pathways of the consequential loss and depletion of motor cell components in the first instance. Neuroinflammation proves a pattern of the contextual spread of such pathogenic progression in the realization of end-stage injury states involving neurons and neuronal networks.

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