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首页> 外文期刊>ACS applied materials & interfaces >Direct Covalent Biomolecule Immobilization on Plasma-Nanotextured Chemically Stable Substrates
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Direct Covalent Biomolecule Immobilization on Plasma-Nanotextured Chemically Stable Substrates

机译:直接共价生物分子固定在血浆-纳米结构化学稳定基质上

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摘要

A new method for direct covalent immobilization of protein molecules (including antibodies) on organic polymers With plasma-induced random micronanoscale topography and stable-in-time chemical functionality is presented. This is achieved using a short (1-5 mm) etching and simultaneous micronanotexturing process, followed by a fast thermal annealing step, which induces accelerated hydrophobic recovery while preserving important chemical functionality created by the plasma. Surface-bound biomolecules resist harsh washing with sodium dodecyl sulfate and other detergents even at elevated temperatures, losing less than 40% of the biomolecules bound even at the harshest washing conditions. X-ray photoelectron spectroscopy, secondary-ion mass spectrometry, and electron paramagnetic resonance are used to unveil the chemical modification of the plasma-treated and stabilized surfaces. The: nanotextured and chemically stabilized surfaces are used as substrates for the development of immunochemical assays for the sensitive detection of C-reactive protein and salmonella lipopolysacchatides through immobilization of the respective analyte-specific antibodies onto them. Such substrates are stable for a period of 1 year with ambient storage.
机译:提出了一种新的将蛋白质分子(包括抗体)直接共价固定在有机聚合物上的新方法,该方法具有等离子体诱导的随机纳米尺度形貌和及时稳定的化学功能。这是通过短时间的蚀刻(1-5毫米)和同时进行的微纳米结构化工艺,然后进行快速的热退火步骤来实现的,该步骤可诱导加速的疏水性恢复,同时保留等离子体产生的重要化学功能。表面结合的生物分子即使在高温下也能抵抗用十二烷基硫酸钠和其他去污剂进行的严格洗涤,即使在最苛刻的洗涤条件下,也损失了不到40%的结合生物分子。 X射线光电子能谱,二次离子质谱法和电子顺磁共振用于揭示经过等离子体处理和稳定化的表面的化学修饰。纳米结构化和化学稳定的表面被用作底物,用于开发免疫化学测定法,以通过将各自的分析物特异性抗体固定在其上来灵敏地检测C反应蛋白和沙门氏菌脂多糖。此类基材在室温下可稳定保存1年。

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