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一种新型的基于 CRISPR/Cas12a 的比率型双信号电化学生物传感器,用于超灵敏和可靠地检测循环肿瘤脱氧核糖核酸。

A Novel CRISPR/Cas12a-Mediated Ratiometric Dual-Signal Electrochemical Biosensor for Ultrasensitive and Reliable Detection of Circulating Tumor Deoxyribonucleic Acid.

机构信息

Key Laboratory for Biorheological Science and Technology of Ministry of Education, Bioengineering College of Chongqing University, Chongqing 400044, PR China.

Chongqing Key Laboratory of Bio-perception & Intelligent Information Processing, School of Microelectronics and Communication Engineering, Chongqing University, Chongqing 400044, PR China.

出版信息

Anal Chem. 2024 May 7;96(18):6930-6939. doi: 10.1021/acs.analchem.3c05700. Epub 2024 Apr 23.

Abstract

Circulating tumor DNA (ctDNA) holds great promise as a noninvasive biomarker for cancer diagnosis, treatment, and prognosis. However, the accurate and specific quantification of low-abundance ctDNA in serum remains a significant challenge. This study introduced, for the first time, a novel exponential amplification reaction (EXPAR)-assisted CRISPR/Cas12a-mediated ratiometric dual-signal electrochemical biosensor for ultrasensitive and reliable detection of ctDNA. To implement the dual-signal strategy, a signal unit (ssDNA-MB@Fc/UiO-66-NH) was prepared, consisting of methylene blue-modified ssDNA as the biogate to encapsulate ferrocene signal molecules within UiO-66-NH nanocarriers. The presence of target ctDNA KRAS triggered EXPAR amplification, generating numerous activators for Cas12a activation, resulting in the cleavage of ssDNA-P fully complementary to the ssDNA-MB biogate. Due to the inability to form a rigid structure dsDNA (ssDNA-MB/ssDNA-P), the separation of ssDNA-MB biogate from the UiO-66-NH surface was hindered by electrostatic interactions. Consequently, the supernatant collected after centrifugation exhibited either no or only a weak presence of Fc and MB signal molecules. Conversely, in the absence of the target ctDNA, the ssDNA-MB biogate was open, leading to the leakage of Fc signal molecules. This clever ratiometric strategy with Cas12a as the "connector", reflecting the concentration of ctDNA KRAS based on the ratio of the current intensities of the two electroactive signal molecules, enhanced detection sensitivity by at least 60-300 times compared to single-signal strategies. Moreover, this strategy demonstrated satisfactory performance in ctDNA detection in complex human serum, highlighting its potential for cancer diagnosis.

摘要

循环肿瘤 DNA(ctDNA)作为癌症诊断、治疗和预后的非侵入性生物标志物具有巨大的潜力。然而,在血清中准确和特异性地定量低丰度的 ctDNA 仍然是一个重大挑战。本研究首次引入了一种新的指数扩增反应(EXPAR)辅助的 CRISPR/Cas12a 介导的比率双信号电化学生物传感器,用于超灵敏和可靠地检测 ctDNA。为了实现双信号策略,制备了一个信号单元(ssDNA-MB@Fc/UiO-66-NH),由亚甲蓝修饰的 ssDNA 作为生物门控来封装二茂铁信号分子在 UiO-66-NH 纳米载体内。目标 ctDNA KRAS 的存在触发 EXPAR 扩增,生成大量 Cas12a 激活剂,导致与 ssDNA-MB 生物门完全互补的 ssDNA-P 完全被切割。由于不能形成刚性结构 dsDNA(ssDNA-MB/ssDNA-P),ssDNA-MB 生物门与 UiO-66-NH 表面的分离受到静电相互作用的阻碍。因此,离心后收集的上清液中要么没有,要么只有微弱的 Fc 和 MB 信号分子存在。相反,在没有目标 ctDNA 的情况下,ssDNA-MB 生物门是打开的,导致 Fc 信号分子泄漏。这种带有 Cas12a 作为“连接器”的聪明的比率策略,基于两种电化学活性信号分子的电流强度比反映了 ctDNA KRAS 的浓度,与单信号策略相比,检测灵敏度至少提高了 60-300 倍。此外,该策略在复杂人血清中的 ctDNA 检测中表现出令人满意的性能,突出了其在癌症诊断中的应用潜力。

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