CRISPR: a journey of gene-editing based medicine

被引:0
作者
Zhabiz Golkar
机构
[1] Voorhees College,Division of Academic Affairs
来源
Genes & Genomics | 2020年 / 42卷
关键词
CRISPR; Gene-editing; Bacteria; Adaptive immunity; Medicine; DNA; Ethic;
D O I
暂无
中图分类号
学科分类号
摘要
CRISPR (Clustered Regularly Interspaced Short Palindromic Repeat) is one of the hallmark of biological tools, contemplated as a valid and hopeful alternatives to genome editing. Advancements in CRISPR-based technologies have empowered scientists with an editing kit that allows them to employ their knowledge for deleting, replacing and lately “Gene Surgery”, and provides unique control over genes in broad range of species, and presumably in humans. These fast-growing technologies have high strength and flexibility and are becoming an adaptable tool with implementations that are altering organism’s genome and easily used for chromatin manipulation. In addition to the popularity of CRISPR in genome engineering and modern biology, this major tool authorizes breakthrough discoveries and methodological advancements in science. As scientists are developing new types of experiments, some of the applications are raising questions about what CRISPR can enable. The results of evidence-based research strongly suggest that CRISPR is becoming a practical tool for genome-engineering and to create genetically modified eukaryotes, which is needed to establish guidelines on new regulatory concerns for scientific communities.
引用
收藏
页码:1369 / 1380
页数:11
相关论文
共 660 条
  • [1] Abbott A(2016)The quiet revolutionary: how the co-discovery of CRISPR explosively changed Emmanuelle Charpentier’s life Nature 532 7000-1480
  • [2] Adli M(2018)The CRISPR tool kit for genome editing and beyond Nat Commun 9 1911-38
  • [3] Allen A(2018)Gene editing of HIV-1 Co-receptors to Prevent and/or Cure virus infection Front Microbiol 9 2940-1712
  • [4] Chung CH(2014)CRISPR-Cas functional module exchange in mBio 5 00767-13-2561
  • [5] Atkins A(2016)Modeling invasive lobular breast carcinoma by CRISPR/Cas9-mediated somatic genome editing of the mammary gland Genes Dev 30 1470-423
  • [6] Dampier W(2015)Biotechnology. A prudent path forward for genomic engineering and germline gene modification Science 348 36-432
  • [7] Khalili K(2007)CRISPR provides acquired resistance against viruses in prokaryotes Science 315 1709-59
  • [8] Nonnemacher MR(2017)Muscle-specific CRISPR/Cas9 dystrophin gene editing ameliorates pathophysiology in a mouse model for Duchenne muscular dystrophy Nat Commun 8 14454-125
  • [9] Wigdahl B(2005)Clustered regularly interspaced short palindrome repeats (CRISPRs) have spacers of extrachromosomal origin Microbiol 151 2551-520
  • [10] Almendros C(2018)Protein Inhibitors of CRISPR-Cas9 ACS Chem Biol 13 417-964