Tauopathies的astrgliopathy

I. Ferrer
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引用次数: 21

摘要

星形胶质细胞参与了中枢神经系统的许多疾病,不仅是对神经元损伤的反应细胞,也是病理过程中的主要参与者。星形胶质细胞病是一个术语,用于将星形胶质细胞的参与指定为中枢神经系统疾病和损伤的发病机制和病理学中的关键因素。星形胶质细胞病被用来命名非反应性星形胶质细胞增生,包括肥大、萎缩和星形胶质细胞变性,星形胶质细胞功能丧失、病理重塑以及衰老变化。星形胶质细胞病和星形细胞病是tau病的特征,tau病是神经元和神经胶质细胞中异常高磷酸化tau聚集体的神经退行性疾病。星形胶质细胞的参与涵盖了不同的疾病特异性类型,如簇状星形胶质细胞、星形胶质细胞斑块、刺状星形胶质胶质细胞、颗粒状/模糊星形胶质细胞,分支星形胶质细胞和具有球状内含物的星形胶质细胞以及其他未命名但在与tau基因突变相关的家族性额颞叶变性中并不罕见的星形胶质。对含有tau的星形胶质细胞之间分子差异的了解才刚刚开始,对其独特的功能含义仍知之甚少。然而,在某些条件下,含有tau的星形胶质细胞对神经元功能和神经系统完整性有有害影响。此外,最近的研究表明,从人脑tau病获得的含有tau的星形胶质细胞具有在野生型小鼠中异常播种和传播tau的能力。包容性概念包括一个涉及神经元、神经胶质细胞和局部环境因素的复杂场景,这些因素相互增强,并促进tau病的疾病进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Astrogliopathy in Tauopathies
Astrocytes are involved in many diseases of the central nervous system, not only as reactive cells to neuronal damage but also as primary actors in the pathological process. Astrogliopathy is a term used to designate the involvement of astrocytes as key elements in the pathogenesis and pathology of diseases and injuries of the central nervous system. Astrocytopathy is utilized to name non-reactive astrogliosis covering hypertrophy, atrophy and astroglial degeneration with loss of function in astrocytes and pathological remodeling, as well as senescent changes. Astrogliopathy and astrocytopathy are hallmarks of tauopathies—neurodegenerative diseases with abnormal hyper-phosphorylated tau aggregates in neurons and glial cells. The involvement of astrocytes covers different disease-specific types such as tufted astrocytes, astrocytic plaques, thorn-shaped astrocytes, granular/fuzzy astrocytes, ramified astrocytes and astrocytes with globular inclusions, as well as others which are unnamed but not uncommon in familial frontotemporal degeneration linked to mutations in the tau gene. Knowledge of molecular differences among tau-containing astrocytes is only beginning, and their distinct functional implications remain rather poorly understood. However, tau-containing astrocytes in certain conditions have deleterious effects on neuronal function and nervous system integrity. Moreover, recent studies have shown that tau-containing astrocytes obtained from human brain tauopathies have a capacity for abnormal tau seeding and spreading in wild type mice. Inclusive conceptions include a complex scenario involving neurons, glial cells and local environmental factors that potentiate each other and promote disease progression in tauopathies.
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