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用于分析病毒细胞致病性和抗病毒药物效果的新型低成本高效石墨烯基阻抗生物传感器

Novel Cost-Efficient Graphene-Based Impedance Biosensor for the Analysis of Viral Cytopathogenicity and the Effect of Antiviral Drugs.

作者信息

Schultz Anke, Knoll Thorsten, Urban Andreas, Schuck Herbert, von Briesen Hagen, Germann Anja, Velten Thomas

机构信息

Department of Bioprocessing and Bioanalytics, Fraunhofer Institute for Biomedical Engineering IBMT, Sulzbach, Germany.

AiCuris Anti-infective Cures AG, Wuppertal, Germany.

出版信息

Front Bioeng Biotechnol. 2021 Jul 26;9:718889. doi: 10.3389/fbioe.2021.718889. eCollection 2021.

Abstract

Biosensors become increasingly relevant for medical diagnostics, pharmaceutical industry, and environmental technology, for example, to test new drugs easily and reliably or to detect cell growth in changing environmental conditions. Novel materials like graphene are promising candidates to produce biosensors on an industrial scale by means of printing processes. To reach this aim, methods for the reliable and automated production of electrode structures and their coating are required. We present an impedance biosensor in the format of a microtiter plate, fabricated by highly efficient roll-to-roll printing of graphene-based microstructures on large-area polymer foils. Proof-of-principle experiments show the evidence of the suitability of the printed graphene biosensors for impedance-based monitoring of viral cytopathogenicity and its inhibition in the presence of antiviral drugs. The developed system is a promising approach toward cost-efficient impedimetric biosensors for high-throughput screening in vaccine research and antiviral drug development.

摘要

生物传感器在医学诊断、制药行业和环境技术中变得越来越重要,例如,用于轻松可靠地测试新药或检测在不断变化的环境条件下的细胞生长。像石墨烯这样的新型材料有望通过印刷工艺在工业规模上生产生物传感器。为了实现这一目标,需要可靠且自动化的电极结构生产及其涂层方法。我们展示了一种微量滴定板形式的阻抗生物传感器,它是通过在大面积聚合物箔上高效卷对卷印刷基于石墨烯的微结构制造而成。原理验证实验表明,印刷石墨烯生物传感器适用于基于阻抗监测病毒细胞病变效应及其在抗病毒药物存在下的抑制情况。所开发的系统是朝着用于疫苗研究和抗病毒药物开发的高通量筛选的经济高效的阻抗生物传感器迈出的有前途的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/557b/8350578/a6c56c042e49/fbioe-09-718889-g001.jpg

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