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界面水态在先进生物医学材料设计中的作用。

Roles of interfacial water states on advanced biomedical material design.

作者信息

Nishida Kei, Anada Takahisa, Tanaka Masaru

机构信息

Institute for Materials Chemistry and Engineering Kyushu university, 744 Motooka, Nishi-ku Fukuoka 819-0395, Japan; Department of Life Science and Technology, School of Life Science and Technology, Tokyo Institute of Technology, Japan(1).

Institute for Materials Chemistry and Engineering Kyushu university, 744 Motooka, Nishi-ku Fukuoka 819-0395, Japan.

出版信息

Adv Drug Deliv Rev. 2022 Jul;186:114310. doi: 10.1016/j.addr.2022.114310. Epub 2022 Apr 26.

Abstract

When biomedical materials come into contact with body fluids, the first reaction that occurs on the material surface is hydration; proteins are then adsorbed and denatured on the hydrated material surface. The amount and degree of denaturation of adsorbed proteins affect subsequent cell behavior, including cell adhesion, migration, proliferation, and differentiation. Biomolecules are important for understanding the interactions and biological reactions of biomedical materials to elucidate the role of hydration in biomedical materials and their interaction partners. Analysis of the water states of hydrated materials is complicated and remains controversial; however, knowledge about interfacial water is useful for the design and development of advanced biomaterials. Herein, we summarize recent findings on the hydration of synthetic polymers, supramolecular materials, inorganic materials, proteins, and lipid membranes. Furthermore, we present recent advances in our understanding of the classification of interfacial water and advanced polymer biomaterials, based on the intermediate water concept.

摘要

当生物医学材料与体液接触时,材料表面发生的第一个反应是水合作用;随后蛋白质在水合材料表面吸附并变性。吸附蛋白质的量和变性程度会影响后续的细胞行为,包括细胞黏附、迁移、增殖和分化。生物分子对于理解生物医学材料的相互作用和生物反应至关重要,有助于阐明水合作用在生物医学材料及其相互作用伙伴中的作用。水合材料水状态的分析很复杂且仍存在争议;然而,关于界面水的知识对于先进生物材料的设计和开发很有用。在此,我们总结了关于合成聚合物、超分子材料、无机材料、蛋白质和脂质膜水合作用的最新发现。此外,基于中间水概念,我们介绍了在界面水分类和先进聚合物生物材料理解方面的最新进展。

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