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基于纳米材料的电化学和光学传感平台在 microRNA 分析中的最新进展。

Recent advances in nanomaterial-based electrochemical and optical sensing platforms for microRNA assays.

机构信息

College of Chemistry and Chemical Engineering, Xinyang Normal University, Xinyang 464000, China.

出版信息

Analyst. 2019 May 7;144(9):2849-2866. doi: 10.1039/c9an00081j. Epub 2019 Mar 27.

Abstract

MicroRNA (MiRNA) plays a crucial role in biological cells to enable assessment of a cancer's development stage. Increasing evidence has shown that the accurate and sensitive detection of miRNA holds the key toward correct disease diagnosis. However, some characteristics of miRNAs, such as their short chains, low concentration, and similar sequences, make it difficult to detect miRNA in biological samples. Nanomaterials usually have good optical, electronic, and mechanical properties and therefore provide new possibilities for improving the performance of miRNA assays. Many different sorts of nanomaterials, including metal nanomaterials, carbon nanomaterials, quantum dots, and transition-metal dichalcogenides, have been used to construct optical and electrochemical assays for miRNA and have shown attractive results. This review describes recent efforts in the application of nanomaterials as sensing elements in electrochemical and optical miRNA assays. The analytical figures of merit of various methods for the detection of miRNA are compared in the present article. The current capabilities, limitations, and future challenges in miRNA detection and analysis based on nanomaterials are also addressed.

摘要

微小 RNA(miRNA)在生物细胞中发挥着至关重要的作用,可用于评估癌症的发展阶段。越来越多的证据表明,miRNA 的准确和灵敏检测是正确疾病诊断的关键。然而,miRNA 的一些特性,如短链、低浓度和相似的序列,使得在生物样本中检测 miRNA 变得困难。纳米材料通常具有良好的光学、电子和机械性能,因此为提高 miRNA 分析性能提供了新的可能性。许多不同类型的纳米材料,包括金属纳米材料、碳纳米材料、量子点和过渡金属二卤化物,已被用于构建 miRNA 的光学和电化学分析,并且已经显示出有吸引力的结果。本文综述了纳米材料作为电化学和光学 miRNA 分析中传感元件的最新应用。本文比较了各种 miRNA 检测方法的分析性能。还讨论了基于纳米材料的 miRNA 检测和分析的当前能力、限制和未来挑战。

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