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基于气喷喷涂涂覆 TiC-MXene-石墨烯纳米杂化薄膜的电化学生物传感器用于癌症生物标志物检测。

Air-brush spray coated TiC-MXene-graphene nanohybrid thin film based electrochemical biosensor for cancer biomarker detection.

机构信息

iHub Divyasmapark, Technology Innovation Hub, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

Institute Instrumentation Center, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 6):127260. doi: 10.1016/j.ijbiomac.2023.127260. Epub 2023 Oct 5.

Abstract

Cancer is a significant health hazard worldwide and poses a greater threat to the quality of human life. Quantifying cancer biomarkers with high sensitivity has demonstrated considerable potential for compelling, quick, cost-effective, and minimally invasive early-stage cancer detection. In line with this, efforts have been made towards developing an f-graphene@TiC-MXene nanohybrid thin-film-based electrochemical biosensing platform for efficient carcinoembryonic antigen (CEA) detection. The air-brush spray coating technique has been utilized for depositing the uniform thin films of amine functionalized graphene (f-graphene) and TiC-MXene nanohybrid on ITO-coated glass substrate. The chemical bonding and morphological studies of the deposited nanohybrid thin films are characterized by advanced analytical tools, including XRD, XPS, and FESEM. The EDC-NHS chemistry is employed to immobilize the deposited thin films with monoclonal anti-CEA antibodies, followed by blocking the non-specific binding sites with BSA. The electrochemical response and optimization of biosensing parameters have been conducted using CV and DPV techniques. The optimized BSA/anti-CEA/f-graphene@TiC-MXene immunoelectrode showed the ability to detect CEA biomarker from 0.01 pg mL to 2000 ng mL having a considerably lower detection limit of 0.30 pg mL.

摘要

癌症是全球范围内一个重大的健康隐患,对人类生活质量构成了更大的威胁。用高灵敏度定量癌症生物标志物已显示出在引人注目的、快速的、具有成本效益的和微创的早期癌症检测方面具有相当大的潜力。在此背景下,研究人员致力于开发基于 f-石墨烯@TiC-MXene 纳米杂化薄膜的电化学生物传感平台,以实现高效的癌胚抗原(CEA)检测。空气喷涂技术用于在 ITO 涂覆玻璃基底上沉积均匀的胺功能化石墨烯(f-石墨烯)和 TiC-MXene 纳米杂化薄膜。通过先进的分析工具,包括 XRD、XPS 和 FESEM,对沉积的纳米杂化薄膜进行化学结合和形态研究。EDC-NHS 化学用于固定沉积的薄膜与单克隆抗 CEA 抗体,然后用 BSA 阻断非特异性结合位点。使用 CV 和 DPV 技术进行了电化学响应和生物传感参数的优化。优化后的 BSA/抗 CEA/f-石墨烯@TiC-MXene 免疫电极能够从 0.01 pg mL 到 2000 ng mL 检测 CEA 生物标志物,检测限低至 0.30 pg mL。

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