Dual-aptamer-based voltammetric biosensor for the Mycobacterium tuberculosis antigen MPT64 by using a gold electrode modified with a peroxidase loaded composite consisting of gold nanoparticles and a Zr(IV)/terephthalate metal-organic framework

被引:0
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作者
Ningning Li
Xing Huang
Duanping Sun
Weiye Yu
Weiguo Tan
Zhaofan Luo
Zuanguang Chen
机构
[1] Sun Yat-Sen University,School of Pharmaceutical Sciences
[2] Guangdong Pharmaceutical University,Center for Drug Research and Development
[3] Shenzhen Center for Chronic Disease Control,undefined
[4] The Seventh Affiliated Hospital of Sun Yat-Sen University,undefined
来源
Microchimica Acta | 2018年 / 185卷
关键词
Electrochemical aptasensor; MPT64; UiO-66-NH; Metal-organic framework; Horseradish peroxidase;
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摘要
An ultrasensitive aptasensor is described for the voltammetric determination of the Mycobacterium tuberculosis antigen MPT64 in human serum. Firstly, an amino-modified Zr(IV) based metal-organic framework (MOF; type UiO-66-NH2; made up from Zr6O32 units and 2-amino-terephthalate linkers) with a high specific surface was synthesized and used as the carrier of the gold nanoparticles and the aptamers. Then the signalling nanoprobe was fabricated after the horseradish peroxidase was cast on the nanomaterials. The two aptamers with synergistic effect on binding MPT64 were anchored on the gold electrode. Differential pulse voltammetry indicated that the peak current is highest if the ratio of the two aptamers is 1:1. The assay has a wide linear response range (0.02 to 1000 pg·mL−1 of MPT64) and a 10 fg·mL−1 detection limit at a working potential of around −96 mV (vs Ag/AgCl). The results show this biosensor to be a viable tool for detection of tuberculosis at an early stage.
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