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首页> 外文期刊>Journal of neuroinflammation >Efficient isolation of live microglia with preserved phenotypes from adult mouse brain
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Efficient isolation of live microglia with preserved phenotypes from adult mouse brain

机译:从成年小鼠大脑中有效分离具有保留表型的活小胶质细胞

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Background Microglial activation plays a key role in the neuroinflammation associated with virtually all CNS disorders, although their role in normal CNS physiology is becoming increasingly appreciated. Neuroinflammation is often assessed by analyzing pro-inflammatory mediators in CNS tissue homogenates, under the assumption that microglia are the main source of these molecules. However, other cell types in the CNS can also synthesize inflammatory molecules. Hence, to enable direct analysis of microglial activities ex vivo, an efficient, reliable, and reproducible method of microglial isolation is needed. Methods After enzymatic digestion of brain tissues and myelin removal, CD11b+ cells were isolated using immunomagnetic separation, yielding highly purified microglia without astrocyte or neuronal contamination. We used three methods of myelin removal (30% Percoll, 0.9?mol/l sucrose and anti-myelin magnetic beads), and compared their effects on microglial viability and yield. To determine whether the isolation procedure itself activates microglia, we used flow cytometry to examine microglial properties in brain-tissue homogenates and isolated microglia from control and lipopolysaccharide (LPS) -treated mice. Results This method yielded a highly purified CD11b+ cell population with properties that reflected their in vivo phenotype. The viability and yield of isolated cells were significantly affected by the myelin removal method. Although the microglial phenotype was comparable in all methods used, the highest viability and number of CD11b+ cells was obtained with Percoll. Microglia isolated from LPS-treated mice displayed a pro-inflammatory phenotype as determined by upregulated levels of TNF-α, whereas microglia isolated from control mice did not. Conclusions Immunomagnetic separation is an efficient method to isolate microglia from the CNS, and is equally suitable for isolating quiescent and activated microglia. This technique allows evaluation of microglial activities ex vivo, which accurately reflects their activities in vivo. Microglia obtained by this method can be used for multiple downstream applications including qRT-PCR, ELISA, Western blotting, and flow cytometry to analyze microglial activities in any number of CNS pathologies or injuries.
机译:背景小胶质细胞激活在与几乎所有中枢神经系统疾病相关的神经炎症中起着关键作用,尽管它们在正常中枢神经系统生理中的作用越来越受到重视。假设小胶质细胞是这些分子的主要来源,通常可以通过分析中枢神经系统组织匀浆中的促炎介质来评估神经炎症。但是,CNS中的其他细胞类型也可以合成炎症分子。因此,为了能够对离体的小胶质细胞活性进行直接分析,需要一种有效,可靠和可重现的小胶质细胞分离方法。方法通过脑组织的酶消化和髓鞘去除后,通过免疫磁分离法分离CD11b +细胞,得到高度纯化的小胶质细胞,无星形胶质细胞或神经元污染。我们使用了三种去除髓磷脂的方法(30%Percoll,0.9?mol / l蔗糖和抗髓磷脂磁珠),并比较了它们对小胶质细胞活力和产量的影响。为了确定分离程序本身是否激活小胶质细胞,我们使用流式细胞仪检查了脑组织匀浆中的小胶质细胞特性,以及从对照和脂多糖(LPS)处理的小鼠中分离出的小胶质细胞。结果该方法产生了高度纯化的CD11b +细胞群,其性质反映了它们的体内表型。髓鞘去除方法显着影响分离的细胞的活力和产量。尽管在所有使用的方法中小胶质细胞表型都是可比的,但是使用Percoll获得了最高的CD11b +细胞活力和数量。从上清液中提取的小胶质细胞显示出促炎表型,这是由TNF-α上调水平确定的,而从对照小鼠中分离出的小胶质细胞则没有。结论免疫磁分离是一种从中枢神经系统中分离小胶质细胞的有效方法,同样适用于分离静态和活化的小胶质细胞。该技术可以评估离体的小胶质细胞活性,从而准确反映其在体内的活性。通过这种方法获得的小胶质细胞可用于多种下游应用,包括qRT-PCR,ELISA,Western印迹和流式细胞术,以分析任何数量的CNS病理或损伤中的小胶质细胞活性。

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