Department of Biotechnology, Deenbandhu Chhotu Ram University of Science and Technology, Murthal, Sonepat; Centre for Biotechnology, Maharshi Dayanand University, Rohtak, Haryana.
Department of Biotechnology, School of Chemical and Life Sciences, Jamia Hamdard, Hamdard Nagar, New Delhi, India.
Nanomedicine. 2021 Apr;33:102350. doi: 10.1016/j.nano.2020.102350. Epub 2021 Jan 9.
Infectious and hereditary diseases are the primary cause of human mortality globally. Applications of conventional techniques require significant improvement in sensitivity and specificity in therapeutics. However, clustered regularly interspaced short palindromic repeats (CRISPRs) is an innovative genome editing technology which has provided a significant therapeutic tool exhibiting high sensitivity, fast and precise investigation of distinct pathogens in an epidemic. CRISPR technology has also facilitated the understanding of the biology and therapeutic mechanism of cancer and several other hereditary diseases. Researchers have used the CRISPR technology as a theranostic approach for a wide range of diseases causing pathogens including distinct bacteria, viruses, fungi and parasites and genetic mutations as well. In this review article, besides various therapeutic applications of infectious and hereditary diseases we have also explained the structure and mechanism of CRISPR tools and role of CRISPR integrated biosensing technology in provoking diagnostic applications.
传染病和遗传病是全球人类死亡的主要原因。传统技术的应用需要在治疗中显著提高灵敏度和特异性。然而,成簇规律间隔短回文重复序列(CRISPRs)是一种创新的基因组编辑技术,为具有高灵敏度的治疗工具提供了显著的发展,能够快速、准确地调查传染病中的不同病原体。CRISPR 技术还促进了对癌症和其他几种遗传病的生物学和治疗机制的理解。研究人员已经将 CRISPR 技术作为一种治疗方法,用于治疗多种疾病的病原体,包括不同的细菌、病毒、真菌和寄生虫以及遗传突变。在这篇综述文章中,除了各种传染病和遗传病的治疗应用外,我们还解释了 CRISPR 工具的结构和机制,以及 CRISPR 集成生物传感技术在引发诊断应用中的作用。