Research: Electrochemical Aptasensor for Rapid Lactate Detection
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School of Public Health, Chengdu Medical College, Chengdu 610500, China

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This work was supported by grants from the Sichuan Provincial Science and Technology Department’s Seedling Project (MZGC20230025) and the Sichuan Provincial Key Laboratory for Development and Regeneration (SYS23-04).

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    Abstract:

    Objective To construct a novel electrochemical aptasensor for L-lactate detection.Methods Based on gold-palladium-doped nitrogen-rich multi-walled carbon nanotube nanocomposite (Au/Pd-N-MWCNTs) modified glassy carbon electrodes, a triple-helix molecular switch (THMS) triggers the cyclic shearing effect of Pb2+-assisted deoxyribozyme (DNAzyme) with RNA-cleaving activity on the signal probes that are loaded on the electrode surface, used for ultrasensitive electrochemical detection of L-lactate. Differential pulse voltammetry (DPV) records the current signal changes.Results The signal probes concentration of 4 μmol/L, the Pb2+ concentration of 4 μmol/L, and the DNAzyme shear incubation time of 60 min are the optimal test conditions for the sensor. Under optimal experimental conditions, the L-lactate sensor’s linear range is 1-20 mmol/L, and the detection limit is 0.51 mmol/L. In addition, the aptasensor has excellent stability (RSD=1.04%), reproducibility (RSD=2.80%) and selectivity. When detecting L-lactate in human serum samples, the recoveries were 105.60%- 110.80%, and the RSDs were 2.35%-4.56%, which has high consistency with the traditional method.Conclusion The aptasensor can realize ultrasensitive L-lactate detection and has broad application prospects in biomedical diagnosis, the food industry, and environmental monitoring.

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MA Yi, HUANG Jiang-Jian, YANG Ren-Xiang, JIANG Su-Shan, HE Ya-Qi, CHEN Quan-Xin, SU Hui-Lan.Research: Electrochemical Aptasensor for Rapid Lactate Detection[J]. Progress in Biochemistry and Biophysics,2023,50(9):2185-2194

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History
  • Received:July 17,2023
  • Revised:August 20,2023
  • Accepted:August 04,2023
  • Online: September 21,2023
  • Published: September 20,2023