Upham Brad L, Sovadinová Iva, Babica Pavel
Department of Pediatrics & Human Development, Institute for Integrative Toxicology, Michigan State University;
RECETOX - Research Centre for Toxic Compounds in the Environment, Faculty of Science, Masaryk University.
J Vis Exp. 2016 Dec 25(118):54281. doi: 10.3791/54281.
This protocol describes a scalpel loading-fluorescent dye transfer (SL-DT) technique that measures intercellular communication through gap junction channels, which is a major intercellular process by which tissue homeostasis is maintained. Interruption of gap junctional intercellular communication (GJIC) by toxicants, toxins, drugs, etc. has been linked to numerous adverse health effects. Many genetic-based human diseases have been linked to mutations in gap junction genes. The SL-DT technique is a simple functional assay for the simultaneous assessment of GJIC in a large population of cells. The assay involves pre-loading cells with a fluorescent dye by briefly perturbing the cell membrane with a scalpel blade through a population of cells. The fluorescent dye is then allowed to traverse through gap junction channels to neighboring cells for a designated time. The assay is then terminated by the addition of formalin to the cells. The spread of the fluorescent dye through a population of cells is assessed with an epifluorescence microscope and the images are analyzed with any number of morphometric software packages that are available, including free software packages found on the public domain. This assay has also been adapted for in vivo studies using tissue slices from various organs from treated animals. Overall, the SL-DT assay can serve a broad range of in vitro pharmacological and toxicological needs, and can be potentially adapted for high throughput set-up systems with automated fluorescence microscopy imaging and analysis to elucidate more samples in a shorter time.
本方案描述了一种手术刀加载-荧光染料转移(SL-DT)技术,该技术通过缝隙连接通道测量细胞间通讯,而缝隙连接通道是维持组织稳态的主要细胞间过程。毒物、毒素、药物等导致的缝隙连接细胞间通讯(GJIC)中断与众多不良健康影响相关。许多基于遗传的人类疾病与缝隙连接基因的突变有关。SL-DT技术是一种简单的功能分析方法,可同时评估大量细胞中的GJIC。该分析方法包括通过用手术刀刀片短暂扰动细胞膜,使细胞预先加载荧光染料,染料随后在指定时间内通过缝隙连接通道扩散到相邻细胞。然后通过向细胞中加入福尔马林终止分析。用落射荧光显微镜评估荧光染料在细胞群体中的扩散情况,并使用多种可用的形态计量软件包(包括公共领域的免费软件包)对图像进行分析。该分析方法也已适用于体内研究,使用来自经处理动物各种器官的组织切片。总体而言,SL-DT分析可满足广泛的体外药理学和毒理学需求,并且有可能适用于具有自动荧光显微镜成像和分析功能的高通量设置系统,以便在更短时间内阐明更多样本。