Vijaya Akshay Kumar, Iešmantaitė Monika, Mela Virginia, Baltriukienė Daiva, Burokas Aurelijus
Department of Biological Models, Institute of Biochemistry, Life Sciences Center, Vilnius University, Vilnius, Lithuania.
Department of Medicine and Dermatology, Faculty of Medicine, University of Malaga, Málaga, Spain.
Front Cell Neurosci. 2023 Jan 19;17:1082180. doi: 10.3389/fncel.2023.1082180. eCollection 2023.
Microglia, the innate immune cell of the central nervous system, play significant roles in brain development, maintenance, homeostasis, and neuroinflammation. Although numerous methods have been developed to isolate microglia from embryonic or postnatal mouse brains, still major difficulties exist in isolating microglia from adult mice, often resulting in low yield and risk of cellular activation. Therefore, there is a need for a more efficient method to isolate pure and high-yield microglia from adult mice to study various neurodegenerative diseases. The aim of this study was to develop a fully functional protocol for the isolation of microglia by comparing different protocols. We investigated the efficacy of three protocols in terms of cell yield, purity, cellular activation, cellular aging, and migration properties and proposed the modified protocol (PROTOCOL 1), which provides an optimal yield of functional microglial cells with a minimum of material and equipment and allows young researchers with little experience to isolate microglia and helps them to delve deeper into the world of neuroscience.
小胶质细胞作为中枢神经系统的固有免疫细胞,在大脑发育、维持、稳态及神经炎症中发挥着重要作用。尽管已经开发出多种从胚胎或出生后小鼠大脑中分离小胶质细胞的方法,但从成年小鼠中分离小胶质细胞仍存在重大困难,常常导致产量低且有细胞激活的风险。因此,需要一种更有效的方法从成年小鼠中分离出纯净且高产的小胶质细胞,以研究各种神经退行性疾病。本研究的目的是通过比较不同方案来开发一种功能完备的小胶质细胞分离方案。我们从细胞产量、纯度、细胞激活、细胞衰老及迁移特性等方面研究了三种方案的效果,并提出了改良方案(方案1),该方案以最少的材料和设备提供了功能正常的小胶质细胞的最佳产量,使经验不足的年轻研究人员也能够分离小胶质细胞,并帮助他们更深入地探索神经科学领域。