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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Protein arrays on high-surface-area plasma-nanotextured poly(dimethylsiloxane)-coated glass slides
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Protein arrays on high-surface-area plasma-nanotextured poly(dimethylsiloxane)-coated glass slides

机译:高表面积等离子体 - 纳米纹理化聚(二甲基硅氧烷)涂料玻璃载玻片上的蛋白质阵列

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摘要

Treatment of poly(dimethylsiloxane) (PDMS) surfaces with SF_6 plasma results in the creation of high-surface-area nanotextured surfaces that considerably favour protein adsorption with respect to untreated ones. In order to employ such nanotextured surfaces as substrates for microarrays to be created and analysed using standard instrumentation, we fabricated thin PDMS films on top of standard low-cost microscope glass slides. The properties of both untreated and plasma-treated PDMS-coated slides towards spotting of protein solutions were evaluated in terms of spot signal intensity and homogeneity as well as of spot shape and size. It was found that the plasma-treated PDMS-coated glass slides provided highly homogeneous spots (mean intra-spot variation 7.6%) with spot signal intensity 6-times higher than that obtained using the untreated ones. In addition, comparison with commercially available polystyrene and aminosilanized-glass microarray slides showed that the proposed slides provided 3-times higher spot signal intensity and 2-times lower intra-spot signal variation. In addition, the implementation of long-aged-after-plasma-treatment nanotextured PDMS-coated glass slides provided spots whose shape and size matched those of the spotting tip. As a consequence, denser arrays of variable spot shape can be created using SF_6 plasma-treated PDMS-coated slides instead of standard microarray slides opening new potentials for bioanalytical applications.
机译:用SF_6等离子体处理聚(二甲基硅氧烷)(PDMS)表面导致产生高表面积纳米夹紧表面,其相对于未处理的高表面积纳米纹理表面的产生显着优化蛋白质吸附。为了使用这种纳米制荫的表面作为用于使用标准仪器产生和分析的微阵列的底物,我们在标准低成本显微镜玻璃载玻片顶部制造了薄的PDMS膜。根据点信号强度和均匀性以及点形状和尺寸,评估未处理和等离子体处理的PDMS涂覆的载玻片朝向蛋白质溶液的斑点进行评估。发现等离子体处理的PDMS涂层玻璃载玻片提供了高度均匀的斑点(平均点内变化7.6%),其光斑信号强度比使用未处理的斑点高于比使用的光斑信号强度为6倍。另外,与市售聚苯乙烯和氨基硅化 - 玻璃微阵列载玻片的比较表明,所提出的载玻片提供了3倍的光斑信号强度和较低的点内信号变化的2倍。此外,长老等离子体处理纳米封装的PDMS涂覆的玻璃载玻片的实施提供了其形状和尺寸与斑点尖端匹配的斑点。因此,可以使用SF_6等离子体处理的PDMS涂覆的载玻片来创建可变点形状的更密集的阵列,而不是标准微阵列滑块打开生物分析应用的新电位。

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