Qu Xiaojun, Bian Feika, Guo Qingsheng, Ge Qinyu, Sun Qingjiang, Huang Xuebin
State Key Laboratory of Bioelectronics, National Demonstration Center for Experimental Biomedical Engineering Education, School of Biological Science & Medical Engineering , Southeast University , Nanjing 210096 , China.
School of Chemistry and Chemical Engineering , Beijing Institute of Technology , Beijing 100081 , China.
Anal Chem. 2018 Oct 16;90(20):12051-12058. doi: 10.1021/acs.analchem.8b02820. Epub 2018 Oct 5.
The combination of microbead array with assay chemistry of isothermal amplification enables the continuous development of nucleic acid detection techniques. Herein we report the implementation of ligation-rolling circle amplification (RCA) reaction on quantum dots-encoded microbead (Qbead) for the detection of multiplex G-quadruplex (G4) forming sequences. The reaction time of RCA on the Qbead was optimized to be 60 min. Zinc phthalocyanine (ZnPc), a molecular "light switch", was selected as the G4-specific label. In the presence of target, the target-triggered ligation-RCA produced long DNA concatemer consisting of tandem repeats of G4-forming sequence, and the labeling helped generate G4/ZnPc nanowires on the Qbead. With the G4/ZnPc nanowires as fluorescent labels, the array of three encoded Qbeads was capable of detecting three G4-forming sequences by flow cytometry in a high-throughput and specific manner. Alternatively, with the G4/ZnPc nanowires as catalytic labels, chemiluminescence of HO-mediated oxidation of luminol could be used for detecting the target G4-forming sequences with high sensitivity. The catalytic chemiluminescence achieved a limit of detection of 0.5 ng of genomic DNA with 5 logs of linear dynamic range for the detection of the blood sample of a myeloproliferative neoplasms patient. Together the proposed isothermal amplification-on-Qbead assay featured robust detection platform, significant signal amplification, and flexible detection strategy, holding high potential in application in large-scale or "focused" nucleic acid testing.
微珠阵列与等温扩增检测化学的结合推动了核酸检测技术的不断发展。在此,我们报告了在量子点编码微珠(Qbead)上实施连接-滚环扩增(RCA)反应以检测多重G-四链体(G4)形成序列。Qbead上RCA的反应时间优化为60分钟。选择分子“光开关”锌酞菁(ZnPc)作为G4特异性标记。在有靶标的情况下,靶标触发的连接-RCA产生由G4形成序列串联重复组成的长DNA串联体,并且标记有助于在Qbead上生成G4/ZnPc纳米线。以G4/ZnPc纳米线作为荧光标记,三个编码Qbead的阵列能够通过流式细胞术以高通量和特异性方式检测三个G4形成序列。或者,以G4/ZnPc纳米线作为催化标记,HO介导的鲁米诺氧化的化学发光可用于高灵敏度检测靶标G4形成序列。对于骨髓增殖性肿瘤患者的血液样本检测,催化化学发光实现了0.5 ng基因组DNA的检测限和5个对数的线性动态范围。所提出的基于Qbead的等温扩增检测共同具有强大的检测平台、显著的信号放大和灵活的检测策略,在大规模或“聚焦”核酸检测应用中具有很高的潜力。