Fleeman Rebecca M, Proctor Elizabeth A
Department of Neurosurgery, Department of Pharmacology, College of Medicine, Pennsylvania State University (PSU), Hershey, PA, United States.
Center for Neural Engineering, Pennsylvania State University (PSU), University Park, PA, United States.
Front Cell Neurosci. 2021 Mar 17;15:645233. doi: 10.3389/fncel.2021.645233. eCollection 2021.
More than 6 million Americans are currently living with Alzheimer's disease (AD), and the incidence is growing rapidly with our aging population. Numerous therapeutics have failed to make it to the clinic, potentially due to a focus on presumptive pathogenic proteins instead of cell-type-specific signaling mechanisms. The tau propagation hypothesis that inter-neuronal tau transfer drives AD pathology has recently garnered attention, as accumulation of pathological tau in the brain has high clinical significance in correlating with progression of cognitive AD symptoms. However, studies on tau pathology in AD are classically neuron-centric and have greatly overlooked cell-type specific effects of tau internalization, degradation, and propagation. While the contribution of microglia to tau processing and propagation is beginning to be recognized and understood, astrocytes, glial cells in the brain important for maintaining neuronal metabolic, synaptic, trophic, and immune function which can produce, internalize, degrade, and propagate tau are understudied in their ability to affect AD progression through tau pathology. Here, we showcase evidence for whether tau uptake by astrocytes may be beneficial or detrimental to neuronal health and how astrocytes and their immunometabolic functions may be key targets for future successful AD therapies.
目前,超过600万美国人患有阿尔茨海默病(AD),且随着人口老龄化,其发病率正在迅速上升。许多治疗方法未能进入临床阶段,这可能是由于过于关注假定的致病蛋白,而非细胞类型特异性信号机制。神经元间tau蛋白转移驱动AD病理的tau蛋白传播假说最近受到了关注,因为大脑中病理性tau蛋白的积累在与认知AD症状进展的相关性方面具有很高的临床意义。然而,AD中tau蛋白病理学的研究传统上是以神经元为中心的,并且极大地忽视了tau蛋白内化、降解和传播的细胞类型特异性效应。虽然小胶质细胞对tau蛋白加工和传播的作用开始得到认可和理解,但星形胶质细胞,即大脑中对维持神经元代谢、突触、营养和免疫功能很重要的神经胶质细胞,其在通过tau蛋白病理学影响AD进展方面的能力却未得到充分研究,星形胶质细胞能够产生、内化、降解和传播tau蛋白。在这里,我们展示了星形胶质细胞摄取tau蛋白对神经元健康可能有益或有害的证据,以及星形胶质细胞及其免疫代谢功能如何可能成为未来成功治疗AD的关键靶点。