Qin Hongwei, Zhou Lianna, Haque Faris T, Martin-Jimenez Cynthia, Trang Amy, Benveniste Etty N, Wang Qin
Department of Cell, Developmental and Integrative Biology, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Department of Neuroscience and Regenerative Medicine, Medical College of Georgia at Augusta University, Augusta, Georgia, USA.
J Neurochem. 2024 Oct;168(10):3536-3557. doi: 10.1111/jnc.16002. Epub 2023 Nov 6.
Alzheimer's disease (AD) affects various brain cell types, including astrocytes, which are the most abundant cell types in the central nervous system (CNS). Astrocytes not only provide homeostatic support to neurons but also actively regulate synaptic signaling and functions and become reactive in response to CNS insults through diverse signaling pathways including the JAK/STAT, NF-κB, and GPCR-elicited pathways. The advent of new technology for transcriptomic profiling at the single-cell level has led to increasing recognition of the highly versatile nature of reactive astrocytes and the context-dependent specificity of astrocyte reactivity. In AD, reactive astrocytes have long been observed in senile plaques and have recently been suggested to play a role in AD pathogenesis and progression. However, the precise contributions of reactive astrocytes to AD remain elusive, and targeting this complex cell population for AD treatment poses significant challenges. In this review, we summarize the current understanding of astrocyte reactivity and its role in AD, with a particular focus on the signaling pathways that promote astrocyte reactivity and the heterogeneity of reactive astrocytes. Furthermore, we explore potential implications for the development of therapeutics for AD. Our objective is to shed light on the complex involvement of astrocytes in AD and offer insights into potential therapeutic targets and strategies for treating and managing this devastating neurodegenerative disorder.
阿尔茨海默病(AD)会影响多种脑细胞类型,包括星形胶质细胞,而星形胶质细胞是中枢神经系统(CNS)中数量最多的细胞类型。星形胶质细胞不仅为神经元提供稳态支持,还积极调节突触信号传导和功能,并通过包括JAK/STAT、NF-κB和GPCR引发的途径在内的多种信号通路,对中枢神经系统损伤作出反应而发生反应性变化。单细胞水平转录组分析新技术的出现,使人们越来越认识到反应性星形胶质细胞具有高度的多功能性,以及星形胶质细胞反应性的背景依赖性特异性。在AD中,长期以来在老年斑中观察到反应性星形胶质细胞,最近有人提出它们在AD的发病机制和进展中起作用。然而,反应性星形胶质细胞对AD的确切贡献仍不清楚,针对这一复杂细胞群体进行AD治疗面临重大挑战。在这篇综述中,我们总结了目前对星形胶质细胞反应性及其在AD中的作用的理解,特别关注促进星形胶质细胞反应性的信号通路以及反应性星形胶质细胞的异质性。此外,我们探讨了对AD治疗药物开发的潜在影响。我们的目标是阐明星形胶质细胞在AD中的复杂参与情况,并为治疗和管理这种毁灭性神经退行性疾病的潜在治疗靶点和策略提供见解。