College of Life Sciences, Hainan University, Haikou 570228, China.
Institute of Oceanography, Hainan University, Haikou 570228, China.
Int J Mol Sci. 2023 Aug 30;24(17):13447. doi: 10.3390/ijms241713447.
CRISPR/Cas systems have found widespread applications in gene editing due to their high accuracy, high programmability, ease of use, and affordability. Benefiting from the cleavage properties ( or ) of Cas enzymes, the scope of CRISPR/Cas systems has expanded beyond gene editing and they have been utilized in various fields, particularly in live-cell imaging and bioanalysis. In this review, we summarize some fundamental working mechanisms and concepts of the CRISPR/Cas systems, describe the recent advances and design principles of CRISPR/Cas mediated techniques employed in live-cell imaging and bioanalysis, highlight the main applications in the imaging and biosensing of a wide range of molecular targets, and discuss the challenges and prospects of CRISPR/Cas systems in live-cell imaging and biosensing. By illustrating the imaging and bio-sensing processes, we hope this review will guide the best use of the CRISPR/Cas in imaging and quantifying biological and clinical elements and inspire new ideas for better tool design in live-cell imaging and bioanalysis.
CRISPR/Cas 系统由于其高精度、高可编程性、易用性和经济性,在基因编辑中得到了广泛的应用。得益于 Cas 酶的切割特性,CRISPR/Cas 系统的应用范围已经超越了基因编辑,并且已经在各个领域得到了应用,特别是在活细胞成像和生物分析领域。在这篇综述中,我们总结了 CRISPR/Cas 系统的一些基本工作机制和概念,描述了在活细胞成像和生物分析中应用的 CRISPR/Cas 介导技术的最新进展和设计原则,强调了在广泛的分子靶标成像和生物传感中的主要应用,并讨论了 CRISPR/Cas 系统在活细胞成像和生物传感中的挑战和前景。通过说明成像和生物传感过程,我们希望这篇综述将指导 CRISPR/Cas 在成像和定量生物和临床元素方面的最佳应用,并为活细胞成像和生物分析中更好的工具设计激发新的思路。