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染色体易位技术用于基因组人源化动物。

Transchromosomic technology for genomically humanized animals.

机构信息

Department of Biomedical Science, Institute of Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University, 86 Nishi-cho, Yonago, Tottori, 683-8503, Japan.

Trans Chromosomics, Inc., 86 Nishi-cho, Yonago, Tottori, 683-8503, Japan.

出版信息

Exp Cell Res. 2020 May 15;390(2):111914. doi: 10.1016/j.yexcr.2020.111914. Epub 2020 Mar 3.

Abstract

"Genomically" humanized animals are invaluable tools for generating human disease models and for biomedical research. Humanized animal models have generally been developed via conventional transgenic technologies; however, conventional gene delivery vectors such as viruses, plasmids, bacterial artificial chromosomes, P1 phase-derived artificial chromosomes, and yeast artificial chromosomes have limitations for transgenic animal creation as their loading gene capacity is restricted, and the expression of transgenes is unstable. Transchromosomic (Tc) techniques using mammalian artificial chromosomes, including human chromosome fragments, human artificial chromosomes, and mouse artificial chromosomes, have overcome these limitations. These tools can carry multiple genes or Mb-sized genomic loci and their associated regulatory elements, which has facilitated the creation of more useful and complex transgenic models for human disease, drug development, and humanized animal research. This review describes the history of Tc animal development, the applications of Tc animals, and future prospects.

摘要

基因组人源化动物是生成人类疾病模型和进行生物医学研究的宝贵工具。人源化动物模型通常是通过传统的转基因技术开发的;然而,传统的基因传递载体,如病毒、质粒、细菌人工染色体、P1 期衍生的人工染色体和酵母人工染色体,在创建转基因动物方面存在局限性,因为它们的载基因能力有限,并且转基因的表达不稳定。使用哺乳动物人工染色体(包括人类染色体片段、人类人工染色体和小鼠人工染色体)的转染色体(Tc)技术克服了这些限制。这些工具可以携带多个基因或 Mb 大小的基因组位点及其相关的调控元件,这促进了更有用和更复杂的人类疾病、药物开发和人源化动物研究的转基因模型的创建。本文综述了 Tc 动物的发展历史、Tc 动物的应用以及未来的前景。

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