基于中间水概念的生物医学设备的生物相容性表面

Masaru Tanaka
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摘要

水分子在生物界面相互作用中起着至关重要的作用,包括蛋白质的吸附/解吸和细胞粘附行为。为了了解水在蛋白质和细胞在生物界面上的相互作用中的作用,比较水合水的状态与水合聚合物生物材料的各种物理化学性质是很重要的。在此,我们提出了确定蛋白质和细胞与水合聚合物相互作用的基本概念,以及与我们最近研究相对应的选择示例,例如聚(2-甲氧基乙基丙烯酸酯)(PMEA), PMEA衍生物,两性离子聚合物,聚(乙二醇),聚(N -乙烯基-2-吡啶酮)和聚(2-恶唑啉),以及其他聚合物,包括生物聚合物(DNA, RNA,蛋白质和多糖)。通过差示扫描量热法、原位衰减全反射红外光谱、软x射线发射光谱、表面力测量和各种分析技术分析了水的状态。我们发现,与聚合物松散结合的中间水是聚合物表面生物相容性的有用指标。这一关于中间水的发现提供了新的见解,并有助于开发新的实验模型,以理解蛋白质吸附/细胞粘附在各种聚合物中,例如用于生物医学应用的聚合物。
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Biocompatible surfaces for biomedical devices base on the intermediate water concept
Water molecules play a crucial role in bio-interfacial interactions, including protein adsorption/desorption and cell adhesion behavior. To understand the role of water in the interaction of proteins and cells at biological interfaces, it is important to compare the states of hydration water with various physicochemical properties of hydrated polymeric biomaterials. Herein, we present the fundamental concepts for determining the interactions of proteins and cells with hydrated polymers along with selected examples corresponding to our recent studies, for example, poly(2-methoxyethyl acrylate) (PMEA), PMEA derivatives, zwitterionic polymers, poly(ethylene glycol), poly( N -vinyl-2-pyrroridone), and poly(2-oxazoline)s, and other polymers including biopolymers (DNA, RNA, proteins, and polysaccharides). The states of water were analyzed by differential scanning calorimetry, in situ attenuated total reflection infrared spectroscopy, soft X-ray emission spectroscopy, surface force measurements, and wide variety of analytical techniques. We found that intermediate water which is loosely bound to a polymer, is a useful indicator of the biocompatibility of polymer surfaces. This finding on intermediate water provides novel insights and helps develop novel experimental models for understanding protein adsorption/cell adhesion in a wide range of polymers, such as those used in biomedical applications.
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