Experimental and theoretical study for miR-155 detection through resveratrol interaction with nucleic acids using magnetic core-shell nanoparticles

被引:33
作者
Yazdanparast, Samira [1 ]
Benvidi, Ali [1 ]
Azimzadeh, Mostafa [2 ,3 ,4 ]
Tezerjani, Marzieh Dehghan [1 ]
Ghaani, Mohammad Reza [5 ]
机构
[1] Yazd Univ, Fac Sci, Dept Chem, Yazd, Iran
[2] Shahid Sadoughi Univ Med Sci, Med Nanotechnol & Tissue Engn Res Ctr, Yazd Reprod Sci Inst, POB 89195-999, Yazd, Iran
[3] Shahid Sadoughi Univ Med Sci, Stem Cell Biol Res Ctr, Yazd Reprod Sci Inst, Yazd 89195999, Iran
[4] Shahid Sadoughi Univ Med Sci, Dept Adv Med Sci & Technol, Sch Paramed, Yazd, Iran
[5] Univ Coll Dublin, Sch Chem & Bioproc Engn, Dublin 4, Ireland
关键词
Breast cancer; Electrochemical nanobiosensors; Differential pulse voltammetrymiR-155; Magnetic nanoparticle; Resveratrol indicator; Molecular docking; REDUCED GRAPHENE OXIDE; ELECTROCHEMICAL DETECTION; AMPLIFICATION STRATEGY; DNA-INTERCALATORS; BIOSENSOR; DRUGS;
D O I
10.1007/s00604-020-04447-9
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel electrochemical nanobiosensor for the detection of miR-155 (as breast cancer biomarker) is introduced . Fe(3)O(4)NPs@Ag core-shell nanoparticles were synthesized and their shape and characteristics were confirmed by scanning electron microscope (SEM) imaging, Fourier-transform infrared spectroscopy (FTIR), and X-ray diffraction (XRD) methods. Synthesized nanoparticles were applied onto the magnetic bar carbon paste electrode and then the amine-modified anti-miR-155 (single-stranded probes) was applied on the modified electrode surface and upon hybridization with target miR-155, resveratrol (RSV) was eventually applied as an electrochemical label on the double-strand oligonucleotide. Differential pulse voltammetry (DPV) of the oxidation peak of RSV was assumed as the final signal by sweeping potential from 0 to 0.6 V (vs. Ag/AgCl). The fabrication process was optimized through a series of experiments and the optimized process was confirmed using cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). The linear range of the fabricated nanobiosensor was 0.5 fM to 1.0 nM and the detection limit was 0.15 fM. The nanobiosensor was able to pass reproducibility and specificity tests using different types of mismatched target sequences.Spiked real samples of human serum were used to confirm that the nanobiosensor enables detection of miR-155 without any significant interferences from other moieties and molecules. Finally, the molecular dynamics simulation of the RSV interaction with single- and double-stranded oligonucleotide was performed and confirmed the preferential binding of RSV to double-stranded DNA; therefore, it can be used as the electrochemical label of DNA and/or miRNA hybridization-based biosensors.
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页数:10
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