Defour Aurelia, Sreetama S C, Jaiswal Jyoti K
Center for Genetic Medicine Research, Children's National Medical Center.
Center for Genetic Medicine Research, Children's National Medical Center; Department of Integrative Systems Biology, George Washington University;
J Vis Exp. 2014 Mar 24(85):51106. doi: 10.3791/51106.
The ability of injured cells to heal is a fundamental cellular process, but cellular and molecular mechanisms involved in healing injured cells are poorly understood. Here assays are described to monitor the ability and kinetics of healing of cultured cells following localized injury. The first protocol describes an end point based approach to simultaneously assess cell membrane repair ability of hundreds of cells. The second protocol describes a real time imaging approach to monitor the kinetics of cell membrane repair in individual cells following localized injury with a pulsed laser. As healing injured cells involves trafficking of specific proteins and subcellular compartments to the site of injury, the third protocol describes the use of above end point based approach to assess one such trafficking event (lysosomal exocytosis) in hundreds of cells injured simultaneously and the last protocol describes the use of pulsed laser injury together with TIRF microscopy to monitor the dynamics of individual subcellular compartments in injured cells at high spatial and temporal resolution. While the protocols here describe the use of these approaches to study the link between cell membrane repair and lysosomal exocytosis in cultured muscle cells, they can be applied as such for any other adherent cultured cell and subcellular compartment of choice.
受损细胞的愈合能力是一个基本的细胞过程,但参与受损细胞愈合的细胞和分子机制仍知之甚少。本文描述了一些实验方法,用于监测局部损伤后培养细胞的愈合能力和动力学。第一个方案描述了一种基于终点的方法,可同时评估数百个细胞的细胞膜修复能力。第二个方案描述了一种实时成像方法,用于监测单个细胞在脉冲激光局部损伤后细胞膜修复的动力学。由于受损细胞的愈合涉及特定蛋白质和亚细胞区室向损伤部位的运输,第三个方案描述了使用上述基于终点的方法来评估数百个同时受损细胞中的一个此类运输事件(溶酶体胞吐作用),最后一个方案描述了使用脉冲激光损伤结合全内反射荧光显微镜(TIRF显微镜)以高空间和时间分辨率监测受损细胞中单个亚细胞区室的动态变化。虽然这里的方案描述了使用这些方法来研究培养的肌肉细胞中细胞膜修复与溶酶体胞吐作用之间的联系,但它们可以直接应用于任何其他选择的贴壁培养细胞和亚细胞区室。