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Suppressing Surface Reconstruction of Superhydrophobic PDMS Using a Superhydrophilic Zwitterionic Polymer

机译:使用超亲水性两性离子聚合物抑制超疏水PDMS的表面重建

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摘要

Poly(dimethyl siloxane) (PDMS) is extensively used for biomedical applications due to its low cost, ease of fabrication, high durability and flexibility, oxygen permeability, and self-healing properties. PDMS, however, has some significant drawbacks. PDMS endures unacceptably high levels of nonspecific protein fouling when used with biological samples due to its superhydrophobic characteristics. Unfortunately, conventional surface modification methods do not work for PDMS due to its low glass transition temperature. This phenomenon has been well-known for years as "hydrophobic regeneration". For the same reason, it is also very difficult to bring functionalities onto PDMS surfaces. Herein, we demonstrate how a superhydrophilic zwitterionic material, poly(carboxybetaine methacrylate) (pCBMA), can provide a highly stable coating with long-term stabilty due to the sharp contrast in hydrophobicity between pCBMA and PDMS. This material is able to suppress nonspecific protein adsorption in complex media and fiinctionalize desired biomolecules needed in applications, such as diagnostics, without sacrificing its nonfouling characteristics.
机译:聚(二甲基硅氧烷)(PDMS)由于其低成本,易于制造,高耐用性和柔韧性,透氧性和自愈特性而广泛用于生物医学应用。但是,PDMS具有一些明显的缺点。由于与生物样品一起使用时,PDMS具有超疏水特性,因此会忍受高水平的非特异性蛋白质污染。不幸的是,由于其低的玻璃化转变温度,常规的表面改性方法不适用于PDMS。多年以来,这种现象被称为“疏水再生”。出于相同的原因,将功能带入PDMS表面也非常困难。本文中,我们证明了由于pCBMA和PDMS之间疏水性的鲜明对比,超亲水性两性离子材料聚甲基丙烯酸羧基甜菜碱(pCBMA)如何提供具有长期稳定性的高度稳定的涂层。该材料能够抑制非特异性蛋白质在复杂介质中的吸附,并在不牺牲其防污特性的情况下,将其应用于诸如诊断等应用中所需的生物分子。

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