Molofsky Anna Victoria, Deneen Benjamin
Department of Psychiatry, University of California-San Francisco, San Francisco, California.
Center for Cell and Gene Therapy, Baylor College of Medicine, Houston, Texas.
Glia. 2015 Aug;63(8):1320-9. doi: 10.1002/glia.22836. Epub 2015 May 12.
Astrocytes are the predominant cell type in the brain and perform key functions vital to CNS physiology, including blood brain barrier formation and maintenance, synaptogenesis, neurotransmission, and metabolic regulation. To fully understand the contributions of astrocytes to brain function, it will be important to bridge the existing gap between development and physiology. In this review, we provide an overview of Astrocyte development, including recent insights into molecular mechanisms of astrocyte specification, regional patterning and proliferation. This developmental perspective is complemented with recent findings that describe the functional maturation of astrocytes and their prospective diversity. Future progress in understanding Astrocyte development will depend on the development of astrocyte- stage specific markers and tools for manipulating astrocytes without affecting neuron production. Ultimately, a mechanistic approach to Astrocyte development will be crucial to developing new treatments for the many neurodevelopmental, neurodegenerative, neuroimmune, and neoplastic diseases involving astrocyte dysfunction.
星形胶质细胞是大脑中主要的细胞类型,对中枢神经系统生理功能起着关键作用,包括血脑屏障的形成与维持、突触形成、神经传递和代谢调节。为了全面理解星形胶质细胞对脑功能的贡献,弥合发育与生理之间的现有差距至关重要。在本综述中,我们概述了星形胶质细胞的发育,包括对星形胶质细胞特化、区域模式形成和增殖的分子机制的最新见解。这种发育视角得到了描述星形胶质细胞功能成熟及其潜在多样性的最新研究结果的补充。未来在理解星形胶质细胞发育方面的进展将取决于星形胶质细胞阶段特异性标志物的开发以及在不影响神经元生成的情况下操纵星形胶质细胞的工具。最终,采用机械方法研究星形胶质细胞发育对于开发针对许多涉及星形胶质细胞功能障碍的神经发育、神经退行性、神经免疫和肿瘤性疾病的新疗法至关重要。