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A novel method for co-culture with Müller cells and microglia in rat retina in vitro

机译:Müller细胞和小胶质细胞在大鼠视网膜中体外共培养的新方法

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摘要

Microglia and Müller cells are glial cells of the retina and constitute a functional link between neurons and vessels. The aim of the present study was to introduce a novel method of co-culture with Müller cells and microglia in rat retina. A camera was used to analyze all the cell changes. Immunofluorescence staining of glutamine synthetase and OX-42 were used for the identification of Müller cells and microglial, respectively. On day 1, all the cell types from the retina were round or oval and floating in the medium. On the following days, microglial cells were adherent and proliferated. Müller cells stretched and quickly proliferated. On days 12–15, microglial cells were floating in the medium. Following agitation, microglial cells became quickly detached from the flask walls, whereas Müller cells remained adherent. In conclusion, agitation is an effective way to separate microglial cells from Müller cells. The time of detachment and the speed of agitation are essential. Co-culture with Müller cells and microglia in the retina is economical and useful for future methods in microglia and Müller cell research.
机译:小胶质细胞和穆勒细胞是视网膜的神经胶质细胞,构成神经元和血管之间的功能性联系。本研究的目的是介绍在大鼠视网膜中与Müller细胞和小胶质细胞共培养的新方法。使用照相机来分析所有细胞变化。谷氨酰胺合成酶和OX-42的免疫荧光染色分别用于鉴定Müller细胞和小胶质细胞。在第1天,来自视网膜的所有细胞类型均为圆形或椭圆形,并漂浮在培养基中。在接下来的几天,小胶质细胞粘附并增殖。米勒细胞伸展并迅速增殖。在第12-15天,小胶质细胞在培养基中漂浮。搅拌后,小胶质细胞迅速从烧瓶壁上脱落,而穆勒细胞仍保持粘附状态。总之,搅拌是将小胶质细胞与Müller细胞分离的有效方法。分离时间和搅拌速度是必不可少的。在视网膜中与Müller细胞和小胶质细胞共培养是经济的,对于将来在小胶质细胞和Müller细胞研究中的方法很有用。

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