Vasile Flora, Dossi Elena, Rouach Nathalie
Neuroglial Interactions in Cerebral Physiopathology, Center for Interdisciplinary Research in Biology, Collège de France, CNRS UMR 7241, INSERM U1050, Labex Memolife, PSL Research University, Paris, France.
Brain Struct Funct. 2017 Jul;222(5):2017-2029. doi: 10.1007/s00429-017-1383-5. Epub 2017 Mar 9.
Data collected on astrocytes' physiology in the rodent have placed them as key regulators of synaptic, neuronal, network, and cognitive functions. While these findings proved highly valuable for our awareness and appreciation of non-neuronal cell significance in brain physiology, early structural and phylogenic investigations of human astrocytes hinted at potentially different astrocytic properties. This idea sparked interest to replicate rodent-based studies on human samples, which have revealed an analogous but enhanced involvement of astrocytes in neuronal function of the human brain. Such evidence pointed to a central role of human astrocytes in sustaining more complex information processing. Here, we review the current state of our knowledge of human astrocytes regarding their structure, gene profile, and functions, highlighting the differences with rodent astrocytes. This recent insight is essential for assessment of the relevance of findings using animal models and for comprehending the functional significance of species-specific properties of astrocytes. Moreover, since dysfunctional astrocytes have been described in many brain disorders, a more thorough understanding of human-specific astrocytic properties is crucial for better-adapted translational applications.
在啮齿动物中收集到的关于星形胶质细胞生理学的数据表明,它们是突触、神经元、神经网络和认知功能的关键调节因子。虽然这些发现对于我们认识和理解非神经元细胞在脑生理学中的重要性非常有价值,但对人类星形胶质细胞的早期结构和系统发育研究表明,其特性可能有所不同。这一想法引发了人们对在人类样本上重复基于啮齿动物的研究的兴趣,这些研究揭示了星形胶质细胞在人类大脑神经元功能中的类似但更显著的作用。这些证据表明人类星形胶质细胞在维持更复杂的信息处理中起着核心作用。在这里,我们回顾了目前关于人类星形胶质细胞的结构、基因谱和功能的知识现状,强调了与啮齿动物星形胶质细胞的差异。这一最新见解对于评估使用动物模型得出的研究结果的相关性以及理解星形胶质细胞物种特异性特性的功能意义至关重要。此外,由于在许多脑部疾病中都描述了功能失调的星形胶质细胞,更深入地了解人类特异性星形胶质细胞特性对于更好地进行转化应用至关重要。