Yu Chuan, Stefanson Ofir, Liu Yueli, Wang Zhu A
Department of Molecular, Cell, and Developmental Biology, University of California, Santa Cruz.
Department of Molecular, Cell, and Developmental Biology, University of California, Santa Cruz;
J Vis Exp. 2018 May 3(135):57649. doi: 10.3791/57649.
Genetically engineered mouse models (GEMMs) are extremely valuable in revealing novel biological insights into the initiation and progression mechanisms of human diseases such as cancer. Transgenic and conditional knockout mice have been frequently used for gene overexpression or ablation in specific tissues or cell types in vivo. However, generating germline mouse models can be time-consuming and costly. Recent advancements in gene editing technologies and the feasibility of delivering DNA plasmids by viral infection have enabled rapid generation of non-germline autochthonous mouse cancer models for several organs. The bladder is an organ that has been difficult for viral vectors to access, due to the presence of a glycosaminoglycan layer covering the urothelium. Here, we describe a novel method developed in lab for efficient delivery of DNA plasmids into the mouse bladder urothelium in vivo. Through intravesical instillation of pCAG-GFP DNA plasmid and electroporation of surgically exposed bladder, we show that the DNA plasmid can be delivered specifically into the bladder urothelial cells for transient expression. Our method provides a fast and convenient way for overexpression and knockdown of genes in the mouse bladder, and can be applied to building GEMMs of bladder cancer and other urological diseases.
基因工程小鼠模型(GEMMs)在揭示人类疾病(如癌症)的起始和进展机制方面具有极其重要的价值,能提供新颖的生物学见解。转基因小鼠和条件性基因敲除小鼠常用于在体内特定组织或细胞类型中进行基因过表达或基因敲除。然而,构建种系小鼠模型可能既耗时又昂贵。基因编辑技术的最新进展以及通过病毒感染递送DNA质粒的可行性,使得能够快速构建针对多个器官的非种系原位小鼠癌症模型。膀胱是一个因尿路上皮覆盖有糖胺聚糖层而使病毒载体难以进入的器官。在此,我们描述了一种在实验室开发的新方法,用于在体内将DNA质粒高效递送至小鼠膀胱尿路上皮。通过膀胱内灌注pCAG - GFP DNA质粒并对手术暴露的膀胱进行电穿孔,我们证明DNA质粒可特异性递送至膀胱尿路上皮细胞进行瞬时表达。我们的方法为在小鼠膀胱中进行基因过表达和基因敲低提供了一种快速便捷的方式,可应用于构建膀胱癌及其他泌尿系统疾病的基因工程小鼠模型。