4.6 Review

Recent Progress in Nanomaterials Modified Electrochemical Biosensors for the Detection of MicroRNA

期刊

MICROMACHINES
卷 12, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/mi12111409

关键词

nanomaterial; electrochemical biosensor; MicroRNA; signal amplification strategy

资金

  1. Fundamental Research Grant Scheme, Malaysia [FRGS/1/2019/STG05/UNIM/02/2]
  2. MyPAIR-PHC-Hibiscus
  3. [MyPAIR/1/2020/STG05/UNIM/1]

向作者/读者索取更多资源

miRNAs, as important non-coding RNAs in the human body, play crucial regulatory roles and are closely related to diseases. The use of electrochemical biosensors provides a fast and accurate detection method for miRNAs, offering new avenues for biological analysis and early disease diagnosis.
MicroRNAs (miRNAs) are important non-coding, single-stranded RNAs possessing crucial regulating roles in human body. Therefore, miRNAs have received extensive attention from various disciplines as the aberrant expression of miRNAs are tightly related to different types of diseases. Furthermore, the exceptional stability of miRNAs has presented them as biomarker with high specificity and sensitivity. However, small size, high sequence similarity, low abundance of miRNAs impose difficulty in their detection. Hence, it is of utmost importance to develop accurate and sensitive method for miRNA biosensing. Electrochemical biosensors have been demonstrated as promising solution for miRNA detection as they are highly sensitive, facile, and low-cost with ease of miniaturization. The incorporation of nanomaterials to electrochemical biosensor offers excellent prospects for converting biological recognition events to electronic signal for the development of biosensing platform with desired sensing properties due to their unique properties. This review introduces the signal amplification strategies employed in miRNA electrochemical biosensor and presents the feasibility of different strategies. The recent advances in nanomaterial-based electrochemical biosensor for the detection of miRNA were also discussed and summarized based on different types of miRNAs, opening new approaches in biological analysis and early disease diagnosis. Lastly, the challenges and future prospects are discussed.

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