Ujas Thomas A, Torres Vanessa O, Stowe Ann M
Department of Neuroscience, The University of Kentucky, Lexington, KY, USA.
Denali Therapeutics, South San Francisco, CA, USA.
Methods Mol Biol. 2023;2616:251-260. doi: 10.1007/978-1-0716-2926-0_19.
Studying interactions between neural cells and glial cells in vitro remains an essential tool for scientists worldwide, and with the addition of oxygen-glucose deprivation (OGD) can be particularly useful for identifying mechanisms related to ischemic stroke-related injury and repair. In developing these protocols in the lab, however, we discovered the limitation of co-culturing immune cells with pure neuronal cultures as the standard media for immune cells impair neuronal growth and vice versa. Thus, we optimized a mixed cortical cell culture system that does not require the use of glial-conditioned media to support the viability and growth of neurons but can nonetheless be used to quantify neuronal survival and dendritic arborization. The following methods provide a guide as to how to culture mixed cortical cells from mouse pups (postnatal day 0-2). Additionally, we demonstrate how to co-culture mixed cortical cells with immune cells (e.g., B cells) to study neuro-immune interactions in vitro.
对世界各地的科学家来说,研究神经细胞与神经胶质细胞之间的体外相互作用仍然是一项重要工具,并且加入氧糖剥夺(OGD)后,对于识别与缺血性中风相关损伤和修复的机制可能特别有用。然而,在实验室开发这些实验方案时,我们发现将免疫细胞与纯神经元培养物共培养存在局限性,因为用于免疫细胞的标准培养基会损害神经元生长,反之亦然。因此,我们优化了一种混合皮质细胞培养系统,该系统无需使用神经胶质条件培养基来支持神经元的活力和生长,但仍可用于量化神经元存活和树突分支。以下方法提供了关于如何从小鼠幼崽(出生后0 - 2天)培养混合皮质细胞的指南。此外,我们展示了如何将混合皮质细胞与免疫细胞(如B细胞)共培养,以在体外研究神经免疫相互作用。