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Protein Adsorption on Chemically Modified Block Copolymer Nanodomains: Influence of Charge and Flow

机译:在化学改性嵌段共聚物纳米膜上的蛋白质吸附:电荷和流动的影响

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Understanding the interactions of biomacromolecules with nanoengineered surfaces is vital for assessing material biocompatibility. This study focuses on the dynamics of protein adsorption on nanopatterned block copolymers (BCPs). Poly(styrene)-block-poly(1,2-butadiene) BCPs functionalized with an acid, amine, amide, or captopril moieties were processed to produce nanopatterned films. These films were characterized using water contact angle measurements and atomic force microscopy in air and liquid to determine how the modification process affected wettability and swelling. Protein adsorption experiments were conducted under static and dynamic conditions via a quartz crystal microbalance with dissipation. Proteins of various size, charge, and stability were investigated to determine whether their physical characteristics affected adsorption. Significantly decreased contact angles were caused by selective swelling of modified BCP domains. The results indicate that nanopatterned chemistry and experimental conditions strongly impact adsorption dynamics. Depending on the structural stability of the protein, polyelectrolyte surfaces significantly increased adsorption over controls. Further analysis suggested that protein stability may correlate with dissipation versus frequency plots.
机译:了解纳米型表面的生物致摩洛族的相互作用对于评估材料生物相容性至关重要。本研究侧重于纳米透明嵌段共聚物(BCPS)对蛋白质吸附的动态。加工用酸,胺,酰胺或卡托普利部分官能化的聚(苯乙烯) - 嵌段 - 聚(1,2-丁二烯)BCP,以产生纳米透明薄膜。使用空气和液体中的水接触角测量和原子力显微镜表征这些薄膜,以确定修改过程如何影响润湿性和肿胀。通过用耗散的石英晶体微稳定在静态和动态条件下进行蛋白质吸附实验。研究了各种尺寸,电荷和稳定性的蛋白质以确定它们的物理特性是否会影响吸附。由改性BCP结构域的选择性溶胀引起的接触角显着降低。结果表明,纳米透明理由的化学和实验条件强烈影响吸附动态。根据蛋白质的结构稳定性,聚电解质表面显着增加对对照的吸附。进一步的分析表明,蛋白质稳定性可以与耗散与频率图相关联。

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