Rapid, multiplex, one-pot CRISPR/Dx system for detecting cancer fusion genes.

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Jiaqi Li, Cia-Hin Lau, Jianchao Wang, Weidong Wu, Zhihao Huang, Xiaoqing Chen, Jiahui Li, Yumei Huang, Tao Wang, Yulin Li, Zihan Zhao, Meijing Xu, Gang Chen, Sheng Tong, Haibao Zhu
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引用次数: 0

Abstract

Targeted therapies directed at fusion genes have proven remarkably effective against cancers. Therefore, the rapid and reliable identification of cancer fusion genes can guide subsequent therapeutic treatment and predict prognosis. By integrating the RT-RPA and CRISPR/Cas12a approaches, we developed a one-pot CRISPR/Dx system for the rapid and multiplex detection of cancer fusion genes. A tube with unique assemblies was created using 3D printing technology to realize this application. As proof of principle, we demonstrated the feasibility of the one-pot CRISPR/Dx system in detecting lung cancer by targeting ROS1 fusions. The performance of the one-pot CRISPR/Dx detection system was comparable to a two-tube-based testing platform. When tested with synthetic RNA fusions, both approaches efficiently detected all 14 ROS1 fusions with an LOD in the range of 5-10 copies per μL, without generating a background signal, even in the presence of a large excess of wild-type RNA. The total reaction time for both approaches was 30 minutes. Notably, the one-pot CRISPR/Dx detection system minimized the operation steps and aerosol contamination without compromising detection sensitivity and specificity. Furthermore, its diagnostic power was validated using clinical samples. Thus, we successfully developed a rapid, multiplex, one-pot CRISPR/Dx detection system for detecting 14 clinically relevant ROS1 fusions with high sensitivity and specificity. It is also cost-effective and simple to operate, thereby realizing the ultimate goal of establishing CRISPR/Dx as the paragon of cancer diagnostics for home self-testing and point-of-care testing.

快速,多重,一锅CRISPR/Dx系统检测癌症融合基因。
针对融合基因的靶向治疗已被证明对癌症非常有效。因此,快速、可靠地鉴定肿瘤融合基因可以指导后续治疗和预测预后。通过整合RT-RPA和CRISPR/Cas12a方法,我们开发了一种一锅式CRISPR/Dx系统,用于快速和多重检测癌症融合基因。使用3D打印技术创建了具有独特组件的管,以实现此应用。作为原理证明,我们证明了一锅CRISPR/Dx系统通过靶向ROS1融合检测肺癌的可行性。单罐CRISPR/Dx检测系统的性能与基于双管的测试平台相当。当用合成RNA融合物进行测试时,两种方法都能有效地检测到所有14个ROS1融合物,LOD范围在每μL 5-10个拷贝范围内,即使存在大量过量的野生型RNA,也不会产生背景信号。两种方法的总反应时间均为30分钟。值得注意的是,一锅CRISPR/Dx检测系统在不影响检测灵敏度和特异性的情况下,最大限度地减少了操作步骤和气溶胶污染。此外,通过临床样本验证了其诊断能力。因此,我们成功开发了一种快速,多路,一锅CRISPR/Dx检测系统,用于检测14个临床相关的ROS1融合,具有高灵敏度和特异性。其性价比高,操作简单,最终实现了将CRISPR/Dx打造成家庭自检和即时检测癌症诊断典范的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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