Basilico Bernadette, Ferrucci Laura, Khan Azka, Di Angelantonio Silvia, Ragozzino Davide, Reverte Ingrid
Institute of Science and Technology Austria (ISTA), Klosterneuburg, Austria.
Department of Physiology and Pharmacology, Sapienza University of Rome, Rome, Italy.
Front Cell Neurosci. 2022 Nov 4;16:1022431. doi: 10.3389/fncel.2022.1022431. eCollection 2022.
Microglia are dynamic cells, constantly surveying their surroundings and interacting with neurons and synapses. Indeed, a wealth of knowledge has revealed a critical role of microglia in modulating synaptic transmission and plasticity in the developing brain. In the past decade, novel pharmacological and genetic strategies have allowed the acute removal of microglia, opening the possibility to explore and understand the role of microglia also in the adult brain. In this review, we summarized and discussed the contribution of microglia depletion strategies to the current understanding of the role of microglia on synaptic function, learning and memory, and behavior both in physiological and pathological conditions. We first described the available microglia depletion methods highlighting their main strengths and weaknesses. We then reviewed the impact of microglia depletion on structural and functional synaptic plasticity. Next, we focused our analysis on the effects of microglia depletion on behavior, including general locomotor activity, sensory perception, motor function, sociability, learning and memory both in healthy animals and animal models of disease. Finally, we integrated the findings from the reviewed studies and discussed the emerging roles of microglia on the maintenance of synaptic function, learning, memory strength and forgetfulness, and the implications of microglia depletion in models of brain disease.
小胶质细胞是动态细胞,不断监测其周围环境并与神经元和突触相互作用。事实上,大量知识揭示了小胶质细胞在调节发育中大脑的突触传递和可塑性方面的关键作用。在过去十年中,新的药理学和遗传学策略使得能够急性清除小胶质细胞,从而开启了探索和理解小胶质细胞在成人大脑中作用的可能性。在本综述中,我们总结并讨论了小胶质细胞清除策略对当前理解小胶质细胞在生理和病理条件下对突触功能、学习和记忆以及行为作用的贡献。我们首先描述了现有的小胶质细胞清除方法,突出其主要优缺点。然后我们回顾了小胶质细胞清除对结构和功能突触可塑性的影响。接下来,我们将分析重点放在小胶质细胞清除对行为的影响上,包括健康动物和疾病动物模型中的一般运动活动、感官知觉、运动功能、社交能力、学习和记忆。最后,我们整合了综述研究的结果,并讨论了小胶质细胞在维持突触功能、学习、记忆强度和遗忘方面的新作用,以及小胶质细胞清除在脑部疾病模型中的意义。