评述CRISPR与分子诊断的交集

IF 5 Q1 ENGINEERING, BIOMEDICAL
A. Lau, C. Ren, Luke P Lee
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引用次数: 17

摘要

简单而强大的规则间隔短回文重复序列(CRISPR)技术在基因编辑能力的推动下,在生命科学、生物技术、治疗学和分子诊断学领域取得了许多发展。通过利用CRISPR-Cas系统的核酸序列检测能力,开发了基于CRISPR的分子诊断。在这里,我们回顾了快速、灵敏和廉价的基于CRISPR的分子诊断的发展。我们介绍了CRISPR技术向精密分子诊断设备的转变,从试管到设备。接下来,我们将讨论CRISPR检测核酸(NA)的各种方法。我们讨论了重要的样本制备步骤对未来样本应答解决方案的重要性,这是当前基于CRISPR的分子诊断技术所缺乏的。最后,我们讨论了基于CRISPR的分子诊断技术在各种关键应用中的扩展。我们设想,在克服特定的技术挑战后,CRISPR技术有望在精确NA检测应用中广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Critical review on where CRISPR meets molecular diagnostics
Simple yet powerful clustered regularly-interspaced short palindromic repeats (CRISPR) technology has led to the advent of numerous developments in life sciences, biotechnology, therapeutics, and molecular diagnostics, enabled by gene editing capability. By exploiting the CRISPR-Cas system’s nucleic acid sequence detection abilities, CRISPR-based molecular diagnostics have been developed. Here, we review the development of rapid, sensitive, and inexpensive CRISPR-based molecular diagnostics. We introduce the transition of CRISPR technology to precision molecular diagnostic devices from tube to device. Next, we discuss the various nucleic acid (NA) detection methods by CRISPR. We address the importance of significant sample preparation steps for a future sample-to-answer solution, which is lacking in current CRISPR-based molecular diagnostic technology. Lastly, we discuss the extension of CRISPR-based molecular diagnostics to various critical applications. We envision CRISPR technology holds great promise for widespread use in precision NA detection applications after particular technical challenges are overcome.
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CiteScore
9.40
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