State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing, China.
J Cell Physiol. 2018 May;233(5):3875-3891. doi: 10.1002/jcp.26141. Epub 2017 Sep 7.
Recently, clustered regularly interspaced short palindromic repeats (CRISPR) based genomic editing technologies have armed researchers with powerful new tools to biological and biomedical investigations. To further improve and expand its functionality, natural, and engineered CRISPR associated nine proteins (Cas9s) have been investigated, various CRISPR delivery strategies have been tested and optimized, and multiple schemes have been developed to ensure precise mammalian genome editing. Benefiting from those in-depth understanding and further development of CRISPR, versatile CRISPR-based platforms for genome editing have been rapidly developed to advance investigations in biology and biomedicine. In biological research area, CRISPR has been widely adopted in both fundamental and applied research fields, such as accurate base editing, transcriptional regulation, and genome-wide screening. In biomedical research area, CRISPR has also shown its extensive applicability in the establishment of animal models for genetic disorders especially those large animals and non-human primates models, and gene therapy to combat virus infectious diseases, to correct monogenic disorders in vivo or in pluripotent cells. In this prospect article, after highlighting recent developments of CRISPR systems, we outline different applications and current limitations of CRISPR use in biological and biomedical investigation. Finally, we provide a perspective for future development and potential risks of this multifunctional technology.
近年来,基于成簇规律间隔短回文重复序列(CRISPR)的基因组编辑技术为研究人员提供了强大的新工具,用于开展生物学和生物医学研究。为了进一步改进和扩展其功能,研究人员对天然和工程化的 CRISPR 相关的 9 种蛋白(Cas9s)进行了研究,测试和优化了各种 CRISPR 传递策略,并开发了多种方案来确保精确的哺乳动物基因组编辑。得益于对 CRISPR 的深入理解和进一步发展,基于 CRISPR 的多功能平台已迅速开发出来,以推进生物学和生物医学领域的研究。在生物学研究领域,CRISPR 已广泛应用于基础和应用研究领域,如精确的碱基编辑、转录调控和全基因组筛选。在生物医学研究领域,CRISPR 也在建立遗传疾病的动物模型方面显示出了广泛的适用性,特别是在大型动物和非人类灵长类动物模型的建立方面,以及病毒感染性疾病的基因治疗方面,用于在体内或多能细胞中纠正单基因疾病。在本文中,我们首先强调了 CRISPR 系统的最新进展,然后概述了 CRISPR 在生物学和生物医学研究中的不同应用和当前使用的局限性。最后,我们对这项多功能技术的未来发展和潜在风险提供了一些看法。