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基于多功能超薄氨基功能化 TiC-MXene 纳米片的癌胚抗原超灵敏选择性测定。

Ultrasensitive and Selective Determination of Carcinoembryonic Antigen Using Multifunctional Ultrathin Amino-Functionalized TiC-MXene Nanosheets.

机构信息

State Key Laboratory of Automotive Simulation, School of Materials Science and Engineering, and Control and Key Laboratory of Automobile Materials of MOE , Jilin University , 2699 Qianjin Street , Changchun 130012 , Jilin , China.

Department of Gastrointestinal and Colorectal Surgery , China-Japan Union Hospital of Jilin University , 126 Sendai Street , Changchun 130033 , Jilin , China.

出版信息

Anal Chem. 2020 Feb 18;92(4):3354-3360. doi: 10.1021/acs.analchem.9b05372. Epub 2020 Feb 3.

Abstract

Herein, we report on a two-dimensional amino-functionalized TiC-MXene (N-TiC-MXene)-based surface plasmon resonance (SPR) biosensor for detecting carcinoembryonic antigen (CEA) utilizing a sandwich format signal amplification strategy. Our biosensor employs an N-TiC-MXene nanosheet-modified sensing platform and a signal enhancer comprising N-TiC-MXene-hollow gold nanoparticles (HGNPs)-staphylococcal protein A (SPA) complexes. Ultrathin TiC-MXene nanosheets were synthesized and functionalized with aminosilane to provide a hydrophilic-biocompatible nanoplatform for covalent immobilization of the monoclonal anti-CEA capture antibody (Ab). The N-TiC-MXene/HGNPs nanohybrids were synthesized and further decorated with SPA to immobilize the polyclonal anti-CEA detection antibody (Ab) and serve as signal enhancers. The capture of CEA followed by the formation of the Ab-conjugated SPA/HGNPs/N-TiC-MXene sandwiched nanocomplex on the SPR chip results in the generation of a response signal. The fabricated N-TiC-MXene-based SPR biosensor exhibited a linear detection range of 0.001-1000 PM with a detection limit of 0.15 fM. The proposed biosensor showed high sensitivity and specificity for CEA in serum samples, which gives it application potential in the early diagnosis and monitoring of cancer. We believe that this work also opens new avenues for development of MXene-based highly sensitive biosensors for determining various biomolecules.

摘要

在此,我们报告了一种基于二维氨基功能化 TiC-MXene(N-TiC-MXene)的表面等离子体共振(SPR)生物传感器,用于利用三明治式信号放大策略检测癌胚抗原(CEA)。我们的生物传感器采用了 N-TiC-MXene 纳米片修饰的传感平台和由 N-TiC-MXene-空心金纳米颗粒(HGNPs)-葡萄球菌蛋白 A(SPA)复合物组成的信号增强剂。我们合成了超薄的 TiC-MXene 纳米片,并对其进行了氨丙基硅烷功能化,提供了一个亲水生物相容性的纳米平台,用于单克隆抗 CEA 捕获抗体(Ab)的共价固定。N-TiC-MXene/HGNPs 纳米杂化物被合成,并进一步用 SPA 修饰,用于固定多克隆抗 CEA 检测抗体(Ab)并作为信号增强剂。CEA 的捕获随后形成 Ab 缀合的 SPA/HGNPs/N-TiC-MXene 夹心纳米复合物在 SPR 芯片上,导致产生响应信号。所制备的基于 N-TiC-MXene 的 SPR 生物传感器表现出 0.001-1000 PM 的线性检测范围,检测限为 0.15 fM。该生物传感器在血清样品中对 CEA 表现出高灵敏度和特异性,这使其在癌症的早期诊断和监测方面具有应用潜力。我们相信这项工作也为开发基于 MXene 的用于测定各种生物分子的高灵敏度生物传感器开辟了新途径。

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