Sensitive electrochemical biosensor for rapid detection of sEV-miRNA based turbo-like localized catalytic hairpin assembly. 2024

Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
Department of Clinical Laboratory, YunFu People's Hospital, Yunfu, Guangdong, 527300, PR China; YunFu Key Laboratory of Brain Diseases Research, YunFu People's Hospital, Yunfu, 527300, PR China.

Small extracellular vesicle-associated microRNAs (sEV-miRNAs) have emerged as critical biomarkers for cancer diagnosis, yet the rapid detection of these low-abundance molecules in clinical samples remains a formidable challenge. Herein, a simple turbo-like localized catalytic hairpin assembly (TL-CHA) was proposed for sEV-miR-1246 measurement. This electrochemical sensor achieves dual localization through the ingeniously use of AuNPs and DNA nanowires, which provides rich sites for CHA cascade amplification, significantly enhancing the effective reaction and amplify the detection response. Leveraging this innovative design, this biosensor demonstrated the ability to detect sEV-miRNA at concentrations as low as 5.24 aM in a time frame of 30 min. The precision of the measurements was validated through reverse transcription quantitative polymerase chain reaction. Furthermore, the sensor was used for analyzing plasma samples from gastric cancer patients yielded AUC values of 0.973 for all stages and 0.945 for early stages. This demonstrates the sensor's robust performance in both the staging diagnosis and early screening of gastric cancer. Therefore, this platform has great potential for the clinical cancer diagnosis.

UI MeSH Term Description Entries
D002384 Catalysis The facilitation of a chemical reaction by material (catalyst) that is not consumed by the reaction. Catalyses
D006046 Gold A yellow metallic element with the atomic symbol Au, atomic number 79, and atomic weight 197. It is used in jewelry, goldplating of other metals, as currency, and in dental restoration. Many of its clinical applications, such as ANTIRHEUMATIC AGENTS, are in the form of its salts.
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013274 Stomach Neoplasms Tumors or cancer of the STOMACH. Cancer of Stomach,Gastric Cancer,Gastric Neoplasms,Stomach Cancer,Cancer of the Stomach,Gastric Cancer, Familial Diffuse,Neoplasms, Gastric,Neoplasms, Stomach,Cancer, Gastric,Cancer, Stomach,Cancers, Gastric,Cancers, Stomach,Gastric Cancers,Gastric Neoplasm,Neoplasm, Gastric,Neoplasm, Stomach,Stomach Cancers,Stomach Neoplasm
D015374 Biosensing Techniques Any of a variety of procedures which use biomolecular probes to measure the presence or concentration of biological molecules, biological structures, microorganisms, etc., by translating a biochemical interaction at the probe surface into a quantifiable physical signal. Bioprobes,Biosensors,Electrodes, Enzyme,Biosensing Technics,Bioprobe,Biosensing Technic,Biosensing Technique,Biosensor,Electrode, Enzyme,Enzyme Electrode,Enzyme Electrodes,Technic, Biosensing,Technics, Biosensing,Technique, Biosensing,Techniques, Biosensing
D053768 Metal Nanoparticles Nanoparticles produced from metals whose uses include biosensors, optics, and catalysts. In biomedical applications the particles frequently involve the noble metals, especially gold and silver. Metal Nanocrystals,Metallic Nanocrystals,Metallic Nanoparticles,Metal Nanocrystal,Metal Nanoparticle,Metallic Nanocrystal,Metallic Nanoparticle,Nanocrystal, Metal,Nanocrystal, Metallic,Nanocrystals, Metal,Nanocrystals, Metallic,Nanoparticle, Metal,Nanoparticle, Metallic,Nanoparticles, Metal,Nanoparticles, Metallic
D053770 Nanowires Nanometer-scale wires made of materials that conduct electricity. They can be coated with molecules such as antibodies that will bind to proteins and other substances. Nanowire
D055664 Electrochemical Techniques The utilization of an electrical current to measure, analyze, or alter chemicals or chemical reactions in solution, cells, or tissues. Electrochemical Technics,Electrochemical Technic,Electrochemical Technique,Technic, Electrochemical,Technics, Electrochemical,Technique, Electrochemical,Techniques, Electrochemical
D057230 Limit of Detection Concentration or quantity that is derived from the smallest measure that can be detected with reasonable certainty for a given analytical procedure. Limits of Detection,Detection Limit,Detection Limits
D035683 MicroRNAs Small double-stranded, non-protein coding RNAs, 21-25 nucleotides in length generated from single-stranded microRNA gene transcripts by the same RIBONUCLEASE III, Dicer, that produces small interfering RNAs (RNA, SMALL INTERFERING). They become part of the RNA-INDUCED SILENCING COMPLEX and repress the translation (TRANSLATION, GENETIC) of target RNA by binding to homologous 3'UTR region as an imperfect match. The small temporal RNAs (stRNAs), let-7 and lin-4, from C. elegans, are the first 2 miRNAs discovered, and are from a class of miRNAs involved in developmental timing. RNA, Small Temporal,Small Temporal RNA,miRNA,stRNA,Micro RNA,MicroRNA,Primary MicroRNA,Primary miRNA,miRNAs,pre-miRNA,pri-miRNA,MicroRNA, Primary,RNA, Micro,Temporal RNA, Small,miRNA, Primary,pre miRNA,pri miRNA

Related Publications

Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
September 2023, Journal of nanobiotechnology,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
July 2021, Biosensors & bioelectronics,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
September 2020, Chemical communications (Cambridge, England),
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
June 2015, Biosensors & bioelectronics,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
January 2017, The Analyst,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
May 2021, Analytica chimica acta,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
October 2019, Biosensors & bioelectronics,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
April 2022, Analytica chimica acta,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
August 2019, Talanta,
Huiqin Zhu, and Siting Chen, and Fei Lan, and Wenbin Li, and Tingting Ji, and Lifeng Zhang, and Yuhang Guo, and Weilun Pan, and Shihua Luo, and Rongzhang Xie
December 2021, Analytica chimica acta,
Copied contents to your clipboard!