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一种改良的大鼠原代新生小胶质细胞培养方法,可减少时间、成本和动物使用。

A refined rat primary neonatal microglial culture method that reduces time, cost and animal use.

机构信息

The University of Aberdeen, School of Medicine, Medical Sciences & Nutrition, Institute of Medical Sciences, Foresterhill, Aberdeen, Scotland, AB25, 2ZD, United Kingdom.

The University of Aberdeen, School of Medicine, Medical Sciences & Nutrition, Institute of Medical Sciences, Foresterhill, Aberdeen, Scotland, AB25, 2ZD, United Kingdom.

出版信息

J Neurosci Methods. 2018 Jul 1;304:92-102. doi: 10.1016/j.jneumeth.2018.04.017. Epub 2018 Apr 27.

Abstract

BACKGROUND

Primary microglial cultures have been used extensively to facilitate the development of therapeutic strategies for a variety of CNS disorders including neurodegeneration and neuropathic pain. However, existing techniques for culturing these cells are slow and costly.

NEW METHOD

Here, we report a refined protocol based on our previously published methods described by Clark et al., which reduces in the time, reagents and the number of animals used for each culture whilst yielding high number and excellent quality microglial cells.

RESULTS

Our refined protocol offers an isolation of >96% microglia from a mixed glial culture after only four days of incubation. It results in a high yield of microglia, in excess of one million cells per cortex with predominantly resting morphology and a low level of cell activation.

COMPARISON WITH EXISTING METHOD(S): Compared to conventional procedures our refined protocol requires only one third of the time to prepare high quality microglial cultures, cuts the cost more than four-fold, and significantly reduces the number of animals used per culture.

CONCLUSION

Our consistent, reliable, and time/cost effective microglial culture protocol is crucial for efficient in vitro screening of potential therapeutics. By dramatically reducing the culture time from 2 weeks to just 4 days and increasing the laboratory research output it has implications for the Reduction, Refinement and Replacement policies endorsed by many government funding agencies and animal research regulatory bodies.

摘要

背景

原代小胶质细胞培养已广泛用于促进各种中枢神经系统疾病(包括神经退行性变和神经病理性疼痛)的治疗策略的发展。然而,现有的培养这些细胞的技术既耗时又昂贵。

新方法

在这里,我们报告了一种基于 Clark 等人先前发表的方法的改良方案,该方案减少了每个培养物的时间、试剂和动物使用数量,同时产生了大量高质量的小胶质细胞。

结果

我们的改良方案在孵育仅四天后,可从混合胶质培养物中分离出>96%的小胶质细胞。它产生了大量的小胶质细胞,每个皮质超过一百万细胞,主要呈静息形态,细胞激活水平低。

与现有方法的比较

与传统程序相比,我们的改良方案只需三分之一的时间即可制备高质量的小胶质细胞培养物,成本降低了四倍以上,每个培养物使用的动物数量也显著减少。

结论

我们一致、可靠且省时/省钱的小胶质细胞培养方案对于潜在治疗药物的体外筛选至关重要。通过将培养时间从 2 周缩短到仅 4 天,并增加实验室研究产量,该方案对许多政府资助机构和动物研究监管机构认可的减少、改进和替代政策具有重要意义。

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