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现代生物材料:综述——本体性质及表面改性的影响

Modern biomaterials: a review - bulk properties and implications of surface modifications.

作者信息

Roach Paul, Eglin David, Rohde Kirsty, Perry Carole C

机构信息

Division of Chemistry, Interdisciplinary Biomedical Research Centre, School of Biomedical and Natural Sciences, Nottingham Trent University, Clifton, Nottingham, UK.

出版信息

J Mater Sci Mater Med. 2007 Jul;18(7):1263-77. doi: 10.1007/s10856-006-0064-3. Epub 2007 Apr 19.

Abstract

This review concerns the importance of length and time on physicochemical interactions between living tissue and biomaterials that occur on implantation. The review provides information on material host interactions, materials for medical applications and cell surface interactions, and then details the extent of knowledge concerning the role(s) that surface chemistry and topography play during the first stage of implant integration, namely protein adsorption. The key points are illustrated by data from model in vitro studies. Host implant interactions begin nanoseconds after first contact and from then on are in a state of flux due to protein adsorption, cell adhesion and physical and chemical alteration of the implanted material. The many questions concerning the conformational form and control of bound proteins and how this may impact on cell adhesion in the first instance and later on cell signalling and implant integration can be answered by systematic investigations using model materials. Only then we will be in a more informed position to design new materials for use in the body.

摘要

本综述关注植入时活体组织与生物材料之间物理化学相互作用中长度和时间的重要性。该综述提供了有关材料与宿主相互作用、医学应用材料以及细胞表面相互作用的信息,然后详细阐述了关于表面化学和形貌在植入物整合第一阶段(即蛋白质吸附)中所起作用的知识范围。通过体外模型研究的数据说明了关键点。宿主与植入物的相互作用在首次接触后数纳秒内就开始了,此后由于蛋白质吸附、细胞黏附以及植入材料的物理和化学改变而处于不断变化的状态。关于结合蛋白的构象形式和控制以及这如何首先影响细胞黏附,随后影响细胞信号传导和植入物整合的许多问题,可以通过使用模型材料进行系统研究来解答。只有到那时,我们才能更明智地设计用于体内的新材料。

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