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Embryo-Based Large Fragment Knock-in in Mammals: Why How and What’s Next

机译:哺乳动物中基于胚胎的大片段敲入:下一步为什么以及下一步是什么

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摘要

Endonuclease-mediated genome editing technologies, most notably CRISPR/Cas9, have revolutionized animal genetics by allowing for precise genome editing directly through embryo manipulations. As endonuclease-mediated model generation became commonplace, large fragment knock-in remained one of the most challenging types of genetic modification. Due to their unique value in biological and biomedical research, however, a diverse range of technological innovations have been developed to achieve efficient large fragment knock-in in mammalian animal model generation, with a particular focus on mice. Here, we first discuss some examples that illustrate the importance of large fragment knock-in animal models and then detail a subset of the recent technological advancements that have allowed for efficient large fragment knock-in. Finally, we envision the future development of even larger fragment knock-ins performed in even larger animal models, the next step in expanding the potential of large fragment knock-in in animal models.
机译:核酸内切酶介导的基因组编辑技术,最著名的是CRISPR / Cas9,通过直接通过胚胎操作进行精确的基因组编辑,彻底改变了动物遗传学。随着核酸内切酶介导的模型生成变得司空见惯,大片段敲入仍然是遗传修饰最具挑战性的类型之一。由于它们在生物学和生物医学研究中的独特价值,因此已经开发了各种各样的技术创新来实现哺乳动物动物模型生成中有效的大片段敲入,特别是针对小鼠。在这里,我们首先讨论一些示例,这些示例说明了大片段敲入动物模型的重要性,然后详细介绍了允许有效进行大片段敲入的最新技术进步的子集。最后,我们设想了在更大的动物模型中进行更大片段敲入的未来发展,这是扩大在动物模型中大片段敲入的潜力的下一步。

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