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基于两性离子聚合物的超低污垢和可功能化表面化学,可在未稀释的血浆中实现灵敏且特异的蛋白质检测。

Ultralow fouling and functionalizable surface chemistry based on a zwitterionic polymer enabling sensitive and specific protein detection in undiluted blood plasma.

作者信息

Vaisocherová Hana, Yang Wei, Zhang Zheng, Cao Zhiqiang, Cheng Gang, Piliarik Marek, Homola Jirí, Jiang Shaoyi

机构信息

Department of Chemical Engineering, University of Washington, Seattle, Washington 98195, USA.

出版信息

Anal Chem. 2008 Oct 15;80(20):7894-901. doi: 10.1021/ac8015888. Epub 2008 Sep 23.

Abstract

A crucial step in the development of implanted medical devices, in vivo diagnostics, and microarrays is the effective prevention of nonspecific protein adsorption from real-world complex media such as blood plasma or serum. In this work, a zwitterionic poly(carboxybetaine acrylamide) (polyCBAA) biomimetic material was employed to create a unique biorecognition coating with an ultralow fouling background, enabling the sensitive and specific detection of proteins in blood plasma. Conditions for surface activation, protein immobilization, and surface deactivation of the carboxylate groups in the polyCBAA coating were determined. An antibody-functionalized polyCBAA surface platform was used to detect a target protein in blood plasma using a sensitive surface plasmon resonance (SPR) sensor. A selective protein was directly detected from 100% human blood plasma with extraordinary specificity and sensitivity. The total nonspecific protein adsorption on the functionalized polyCBAA surface was very low (<3 ng/cm (2) for undiluted blood plasma). Because of the significant reduction of nonspecific protein adsorption, it was possible to monitor the kinetics of antigen-antibody interactions in undiluted blood plasma. The functionalization effectiveness and detection characteristics using a cancer protein marker candidate of polyCBAA were compared with those of the conventional nonfouling oligo(ethylene glycol)-based surface chemistry.

摘要

植入式医疗设备、体内诊断和微阵列开发中的一个关键步骤是有效防止从血浆或血清等现实世界复杂介质中发生非特异性蛋白质吸附。在这项工作中,采用两性离子聚(羧酸甜菜碱丙烯酰胺)(聚CBAA)仿生材料创建了具有超低污垢背景的独特生物识别涂层,从而能够灵敏且特异性地检测血浆中的蛋白质。确定了聚CBAA涂层中羧基的表面活化、蛋白质固定化和表面失活条件。使用抗体功能化的聚CBAA表面平台,通过灵敏的表面等离子体共振(SPR)传感器检测血浆中的目标蛋白质。从100%人血浆中直接检测到一种选择性蛋白质,具有非凡的特异性和灵敏度。功能化聚CBAA表面上的总非特异性蛋白质吸附非常低(未稀释血浆<3 ng/cm²)。由于非特异性蛋白质吸附显著减少,因此有可能监测未稀释血浆中抗原-抗体相互作用的动力学。将聚CBAA使用癌症蛋白质标记候选物的功能化效果和检测特性与传统的基于低聚乙二醇的抗污表面化学进行了比较。

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