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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Ultra-low fouling and functionalizable zwitterionic coatings grafted onto SiO2 via a biomimetic adhesive group for sensing and detection in complex media
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Ultra-low fouling and functionalizable zwitterionic coatings grafted onto SiO2 via a biomimetic adhesive group for sensing and detection in complex media

机译:通过仿生胶粘剂基团接枝到SiO2上的超低污垢和可官能化的两性离子涂料,用于在复杂介质中进行传感和检测

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摘要

Non-specific protein binding from human plasma and serum has severely hindered the full capabilities of biosensors concerned with cancer biomarker detection. Currently, there is a strong desire for developing new materials which allow for the convenient attachment of an ultra-low fouling and functionalizable surface coating which can be used for highly sensitive and label-free detection of target analytes directly from complex media. In this work, a short 20 min in situ "graft to" protocol using Tris pH 8.5 buffer was developed for zwitterionic carboxybetaine methacrylate (CBMA) polymer conjugates containing the adhesive biomimetic moiety, 3,4-dihydroxy-t-phenylalanine (DOPA), on SiO2 substrates. Using a surface plasmon resonance (SPR) biosensor, different buffers, pH values, salt concentrations, and temperatures were investigated for determining the "graft to" conditions that yield dense polymer films which both minimize non-specific protein adsorption and maximize antibody immobilization. The optimized surface coatings were shown to be highly protein resistant to 100% human blood plasma and serum. Subsequent antibody functionalized surfaces without any blocking agents enabled the specific detection of the cancer biomarker ALCAM directly from undiluted human serum down to 64 ng/mL. The successful use of this zwitterionic surface coating for detection from complex media on SiO2 surfaces indicates its potential for broad impacts in the development of implantable medical devices, in vivo diagnostics, and nano-scale biosensors.
机译:来自人血浆和血清的非特异性蛋白质结合严重阻碍了与癌症生物标志物检测有关的生物传感器的全部功能。当前,迫切需要开发能够方便地附着超低结垢和可功能化表面涂层的新材料,该涂层可用于直接从复杂介质中高度灵敏且无标签地检测目标分析物。在这项工作中,使用Tris pH 8.5缓冲液开发了短短20分钟的原位“移植至”方案,用于两性离子羧基甜菜碱甲基丙烯酸酯(CBMA)聚合物共轭物,该共轭物包含粘合的仿生部分,3,4-二羟基-t-苯丙氨酸(DOPA),在SiO2基底上。使用表面等离振子共振(SPR)生物传感器,研究了不同的缓冲液,pH值,盐浓度和温度,以确定“接枝”条件,以产生致密的聚合物膜,从而使非特异性蛋白质吸附最小化,并使抗体固定化最大化。经优化的表面涂层显示出对100%人血浆和血清具有高度蛋白抵抗力。随后没有任何封闭剂的抗体功能化表面使得能够直接从未稀释的人血清中低至64 ng / mL特异性检测癌症生物标志物ALCAM。这种两性离子表面涂层在SiO2表面复杂介质检测中的成功应用表明它在可植入医疗设备,体内诊断和纳米级生物传感器的开发中具有广泛影响。

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