详细信息
A novel sandwich-type electrochemical biosensor enabling sensitive detection of circulating tumor DNA ( SCI-EXPANDED收录)
文献类型:期刊文献
英文题名:A novel sandwich-type electrochemical biosensor enabling sensitive detection of circulating tumor DNA
作者:Zhao, Hongli[1];Niu, Zhenmin[2,3];Chen, Kaicha[1];Chen, Lijuan[1];Wang, Zhenxing[1];Lan, Minbo[1];Shi, Jinxiu[2,3];Huang, Wei[2,3]
机构:[1]East China Univ Sci & Technol, Shanghai Key Lab Funct Mat Chem, Sch Chem & Mol Engn, Shanghai 200237, Peoples R China;[2]Chinese Natl Human Genome Ctr Shanghai CHGC, Shanghai MOST Key Lab Hlth & Dis Genom, 250 Bibo Rd, Shanghai 201203, Peoples R China;[3]Shanghai Ind Technol Inst SITI, 250 Bibo Rd, Shanghai 201203, Peoples R China
年份:2021
卷号:171
外文期刊名:MICROCHEMICAL JOURNAL
收录:;WOS:【SCI-EXPANDED(收录号:WOS:000701608600010)】;
基金:This work was supported by the Shanghai Industrial Technology Institute (18INT001) the Natural Science Foundation of Shanghai (19ZR1412000) , the Science and Technology Commission of Shanghai Municipality (STCSM, 20520712500) , and the Predict Project (Shanghai University No.18SKY00, AUT FFG No. 870027) .
语种:英文
外文关键词:Circulating tumor DNA; Sandwich-type electrochemical biosensor; Signal amplification; Nanocomposites
摘要:It is of great importance to accurately analyze circulating tumor DNA (ctDNA), for the reason that it serves as one of the particularly informative cancer biomarkers for disease diagnosis, therapy, and prognosis. However, sensitive detection of ctDNA remains a challenging task and the design of feasible sensing method plays a significant role in ctDNA analysis. In this work, a novel sandwich-type electrochemical biosensor was developed through a facile way for sensitive detection of ctDNA using nanocomposites (MWCNTs-PDA-Au-Pt) as signal probes' (SPs) label (SPs-label) for signal amplification. The current response of the nanocomposites towards H2O2 reduction was used to quantitatively detect target DNA and distinguish base-mismatched DNA sequences. Characterizations reveal that Au-Pt alloy nanoparticles are uniformly dispersed on MWCNTs-PDA and the resultant MWCNTs-PDAAu-Pt shows excellent response toward the reduction of H2O2, which could largely amplify the current response. Electrochemical analysis of electrode modification process confirms that the sandwich-type structure was successfully formed through step-wise reactions, including fixation of capture probes (CPs) on the surface of the screen-printed gold electrode, recognition between CPs and target DNA (T-DNA), hybridization between T-DNA and SPs. Under optimal experimental conditions, the proposed ctDNA biosensor exhibits a wide linear range from 1 x 10(-15) to 1 x 10(-8) mol/L with a detection limit as low as 5 x 10(-16) mol/L (S/N = 3), unprecedented selectivity towards T-DNA and other base-mismatched DNAs (even for only single base-mismatched sequences), and superb long-term stability. This work demonstrates the sandwich-type scheme is a promising method for practical applications in clinical ctDNA diagnosis.
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