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基于特定肽核酸的 HCV-RNA 高选择性光谱电化学生物传感器

High selective spectroelectrochemical biosensor for HCV-RNA detection based on a specific peptide nucleic acid.

机构信息

Department of Chemistry, Faculty of Science, Assiut University, Assiut 71516, Egypt.

Department of Chemical and Biomolecular Engineering, Sogang University, 35 Baekbeom-Ro, Mapo-Gu, Seoul 04107, Republic of Korea.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2019 Jun 15;217:288-293. doi: 10.1016/j.saa.2019.03.115. Epub 2019 Mar 29.

DOI:10.1016/j.saa.2019.03.115
PMID:30952095
Abstract

Hepatitis C virus (HCV) is a blood-borne virus that causes infectious chronic hepatitis. Egypt has the largest epidemic of HCV in the world, with about 14.7% of the Egyptian population. Thus, HCV, which could cause severe risks for human health including liver failure, becomes a public health concern for Egyptians. Development of highly selective and sensitive biosensors for accurate detection of HCV levels without extensive sample preparation has received great attention. The present work reported on developing a new rapid, highly selective and highly selective HCV-based biosensor for early detection of HCV-RNA extracted from clinical samples. The HCV-based biosensor was constructed by fabrication of gold nanodots/indium tin oxide substrate and followed by immobilization of a specific peptide nucleic acid (as bio-receptors) terminated with thiol group onto gold nanodots/indium tin oxide. The principle of the developed biosensor was based on the selective hybridization between the peptide nucleic acid and the HCV-RNA at the untranslated regions (5'-UTR). Raman spectroscopy and Square wave voltammetry techniques were used to monitor the interaction between the HCV-RNA and the immobilized peptide nucleic acid. The reported HCV-biosensor demonstrated a high capability to detect HCV-RNA.

摘要

丙型肝炎病毒(HCV)是一种血液传播的病毒,可导致传染性慢性肝炎。埃及是世界上 HCV 流行率最高的国家,约有 14.7%的埃及人口感染了 HCV。因此,HCV 可能导致包括肝功能衰竭在内的严重健康风险,成为埃及人的公共卫生关注点。开发高度选择性和灵敏的生物传感器,无需广泛的样品制备即可准确检测 HCV 水平,已受到广泛关注。本工作报道了一种新的基于 HCV 的生物传感器的快速、高度选择性和高选择性,用于早期检测从临床样本中提取的 HCV-RNA。基于 HCV 的生物传感器是通过制备金纳米点/氧化铟锡基底,并随后将带有硫醇基团的特定肽核酸(作为生物受体)固定在金纳米点/氧化铟锡上而构建的。所开发的生物传感器的原理基于肽核酸与未翻译区(5'-UTR)中 HCV-RNA 的选择性杂交。拉曼光谱和方波伏安法技术用于监测 HCV-RNA 与固定化肽核酸之间的相互作用。所报道的 HCV 生物传感器表现出高检测 HCV-RNA 的能力。

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