Chenouard Vanessa, Remy Séverine, Tesson Laurent, Ménoret Séverine, Ouisse Laure-Hélène, Cherifi Yacine, Anegon Ignacio
CHU Nantes, Inserm, Centre de Recherche en Transplantation et Immunologie, UMR 1064, ITUN, Université de Nantes, Nantes, France.
genOway, Lyon, France.
Front Genet. 2021 Apr 20;12:615491. doi: 10.3389/fgene.2021.615491. eCollection 2021.
The rat has been extensively used as a small animal model. Many genetically engineered rat models have emerged in the last two decades, and the advent of gene-specific nucleases has accelerated their generation in recent years. This review covers the techniques and advances used to generate genetically engineered rat lines and their application to the development of rat models more broadly, such as conditional knockouts and reporter gene strains. In addition, genome-editing techniques that remain to be explored in the rat are discussed. The review also focuses more particularly on two areas in which extensive work has been done: human genetic diseases and immune system analysis. Models are thoroughly described in these two areas and highlight the competitive advantages of rat models over available corresponding mouse versions. The objective of this review is to provide a comprehensive description of the advantages and potential of rat models for addressing specific scientific questions and to characterize the best genome-engineering tools for developing new projects.
大鼠已被广泛用作小动物模型。在过去二十年中出现了许多基因工程大鼠模型,近年来基因特异性核酸酶的出现加速了它们的产生。本综述涵盖了用于生成基因工程大鼠品系的技术和进展,以及它们在更广泛的大鼠模型开发中的应用,如条件性基因敲除和报告基因品系。此外,还讨论了在大鼠中有待探索的基因组编辑技术。本综述更特别地关注了两个已开展大量工作的领域:人类遗传疾病和免疫系统分析。在这两个领域对模型进行了全面描述,并突出了大鼠模型相对于现有相应小鼠模型的竞争优势。本综述的目的是全面描述大鼠模型在解决特定科学问题方面的优势和潜力,并确定用于开展新项目的最佳基因组工程工具。