Division of Molecular and Cellular Function, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.
Division of Cell Matrix Biology and Regenerative Medicine, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.
Methods Mol Biol. 2024;2831:315-324. doi: 10.1007/978-1-0716-3969-6_21.
The cell intrinsic mechanisms directing peripheral nerve regeneration have remained largely understudied, thus limiting our understanding of these processes and constraining the advancement of novel clinical therapeutics. The use of primary adult rat dorsal root ganglion (DRG) neurons cultured in vitro is well established. Despite this, these cells can be challenging to culture and have so far not been amenable to robust transfection or live-cell imaging. The ability to transfect these cells with fluorescent plasmid constructs to label subcellular structures, combined with high resolution time-lapse imaging has the potential to provide invaluable insight into how peripheral neurons coordinate their regenerative response, and which specific cellular structures are involved in this process. Here we describe a protocol that facilitates transfection and subsequent live-imaging of adult rat DRG neurons.
引导周围神经再生的细胞内在机制在很大程度上仍未得到充分研究,因此限制了我们对这些过程的理解,并限制了新型临床治疗方法的进展。体外培养原代成年大鼠背根神经节 (DRG) 神经元的方法已得到很好的建立。尽管如此,这些细胞的培养具有一定挑战性,迄今为止,它们不易进行有效的转染或活细胞成像。使用荧光质粒构建体转染这些细胞以标记亚细胞结构,并结合高分辨率延时成像,有可能深入了解周围神经元如何协调其再生反应,以及哪些特定的细胞结构参与这一过程。本文描述了一种促进成年大鼠 DRG 神经元转染和随后进行活细胞成像的方案。