School of Chemical Engineering, Hanoi University of Science and Technology (HUST), 1st Dai Co Viet Road, Hanoi, Vietnam.
ITODYS, CNRS, Université de Paris, F-75006, Paris, France.
Mikrochim Acta. 2021 Mar 19;188(4):128. doi: 10.1007/s00604-021-04784-3.
The biology of the late twentieth century was marked by the discovery in 1993 of a new class of small non-coding ribonucleic acids (RNAs) which play major roles in regulating the translation and degradation of messenger RNAs. These small RNAs (18-25 nucleotides), called microRNAs (miRNAs), are implied in several biological processes such as differentiation, metabolic homeostasis, or cellular apoptosis and proliferation. The discovery in 2008 that the presence of miRNAs in body fluids could be correlated with cancer (prostate, breast, colon, lung, etc.) or other diseases (diabetes, heart diseases, etc.) has made them new key players as biomarkers. Therefore, miRNA detection is of considerable significance in both disease diagnosis and in the study of miRNA function. Until these days, more than 1200 miRNAs have been identified. However, traditional methods developed for conventional DNA does not apply satisfactorily for miRNA, in particular due to the low expression level of these miRNA in biofluids, and because they are very short strands. Electrochemical biosensors can provide this sensitivity and also offer the advantages of mass fabrication, low-cost, and potential decentralized analysis, which has wide application for microRNAs sensing, with many promising results already reported. The present review summarizes some newly developed electrochemical miRNA detection methods.
二十世纪后期的生物学的标志是 1993 年发现了一类新的小非编码核糖核酸(RNAs),它们在调节信使 RNA 的翻译和降解中起主要作用。这些小 RNA(18-25 个核苷酸),称为 microRNAs(miRNAs),与几种生物学过程有关,如分化、代谢稳态或细胞凋亡和增殖。2008 年发现体液中的 miRNAs 的存在可以与癌症(前列腺、乳腺、结肠、肺等)或其他疾病(糖尿病、心脏病等)相关联,这使它们成为新的关键生物标志物。因此,miRNA 的检测在疾病诊断和 miRNA 功能研究中都具有重要意义。到目前为止,已经鉴定出超过 1200 种 miRNA。然而,传统的用于常规 DNA 的方法并不适用于 miRNA,特别是由于这些 miRNA 在生物体液中的表达水平低,而且它们非常短。电化学生物传感器可以提供这种灵敏度,并且还具有大规模制造、低成本和潜在分散分析的优势,这为 microRNAs 传感提供了广泛的应用,已经有许多有前途的结果已经报道。本综述总结了一些新开发的电化学 miRNA 检测方法。