Dong Jiangbo, Li Xinyao, Zhou Shiying, Liu Yin, Deng Liyuan, Chen Jian, Hou Jingzhou, Hou Changjun, Huo Danqun
Key Laboratory for Biorheological Science and Technology (Chongqing University), Ministry of Education, College of Bioengineering, Chongqing University, Chongqing, Sichuan 400044, PR China.
Chongqing University Three Gorges Hospital, Chongqing 404000, PR China.
Anal Chem. 2023 Aug 15;95(32):12122-12130. doi: 10.1021/acs.analchem.3c02335. Epub 2023 Aug 1.
Accurate detection of cancer-associated mRNAs is beneficial to early diagnosis and potential treatment of cancer. Herein, for the first time, we developed a novel CRISPR/Cas12a-powered electrochemical/fluorescent (EC/FL) dual-mode controlled-release homogeneous biosensor for mRNA detection. A functionalized ssDNA P2-capped FeO-NH loaded with methylene blue (P2@MB-FeO-NH) was synthesized as the signal probe, while mRNA was chosen as the target RNA. In the presence of the target mRNA, the nicking endonuclease-mediated rolling circle amplification (NEM-RCA) was triggered to produce significant amounts of ssDNA, activating the collateral activity of Cas12a toward the surrounding single-stranded DNA. Thus, the ssDNA P1 completely complementary to ssDNA P2 was cleaved, resulting in that the ssDNA P2 bio-gate on FeO-NH could not be opened due to electrostatic interactions. As a result, there was no or only a little MB in the supernatant after magnetic separation, and the measured EC/FL signal was exceedingly weak. On the contrary, the ssDNA P2 bio-gate was opened, enabling MB to be released into the supernatant, and generating an obvious EC/FL signal. Benefiting from the accuracy of EC/FL dual-mode cross-verification, high amplification efficiency, high specificity of NEM-RCA and CRISPR/Cas12a, and high loading of mesoporous FeO-NH on signal molecules, the strategy shows aM-level sensitivity and single-base mismatch specificity. More importantly, the practical applicability of this dual-mode strategy was confirmed by mRNA quantification in complex serum environments and tumor cell lysates, providing a new way for developing a powerful disease diagnosis tool.
准确检测癌症相关的信使核糖核酸(mRNA)有利于癌症的早期诊断和潜在治疗。在此,我们首次开发了一种新型的由CRISPR/Cas12a驱动的电化学/荧光(EC/FL)双模式控释均相生物传感器用于mRNA检测。合成了一种功能化的单链DNA(ssDNA)P2封端的负载亚甲蓝的FeO-NH(P2@MB-FeO-NH)作为信号探针,而mRNA被选作靶标RNA。在靶标mRNA存在的情况下,切口内切酶介导的滚环扩增(NEM-RCA)被触发以产生大量的ssDNA,激活Cas12a对周围单链DNA的旁切活性。因此,与ssDNA P2完全互补的ssDNA P1被切割,导致由于静电相互作用FeO-NH上的ssDNA P2生物门无法打开。结果,磁分离后上清液中没有或只有很少的亚甲蓝,测得的EC/FL信号极其微弱。相反,ssDNA P2生物门打开,使亚甲蓝释放到上清液中,并产生明显的EC/FL信号。得益于EC/FL双模式交叉验证的准确性、高扩增效率、NEM-RCA和CRISPR/Cas12a的高特异性以及介孔FeO-NH对信号分子的高负载,该策略显示出aM级的灵敏度和单碱基错配特异性。更重要的是,这种双模式策略在复杂血清环境和肿瘤细胞裂解物中的mRNA定量中得到了实际应用的证实,为开发强大的疾病诊断工具提供了新途径。