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植入物表面细胞的反应。

Reactions of cells at implant surfaces.

作者信息

van Blitterswijk C A, Bakker D, Hesseling S C, Koerten H K

机构信息

Laboratory for Otobiology & Biocompatibility, ENT Department, Biomaterials Research Group, University Hospital, Leiden, The Netherlands.

出版信息

Biomaterials. 1991 Mar;12(2):187-93. doi: 10.1016/0142-9612(91)90198-j.

Abstract

The surface of implants is an important parameter in host-implant integration. Several strategies can be used to obtain integration, such as the application of grooves or pores at the implant surface. Most of these surface alterations, however, will lead to an increase of total implant surface area which might influence the inflammatory response to an implant. As far as integration with bone is concerned several biomaterials have been successful in mimicking this material, by having similar crystals at their surface (calcium phosphate ceramics) or by containing a certain amount of calcium and phosphorus. Polyactive, a poly(ethylene oxide)-poly(butylene terephthalate) segmented copolymer, also possesses favourable integration properties with bone, but initially lacks calcium and phosphorus. It is proposed that the application of hydrogels as biomaterial may add a new dimension to integration capacity.

摘要

植入物的表面是宿主与植入物整合过程中的一个重要参数。可以采用多种策略来实现整合,例如在植入物表面设置凹槽或孔隙。然而,这些表面改变大多会导致植入物总表面积增加,这可能会影响对植入物的炎症反应。就与骨的整合而言,一些生物材料已成功模拟这种材料,方法是在其表面具有类似晶体(磷酸钙陶瓷)或含有一定量的钙和磷。聚活性材料,一种聚(环氧乙烷)-聚(对苯二甲酸丁二醇酯)嵌段共聚物,也具有与骨良好的整合特性,但最初缺乏钙和磷。有人提出,将水凝胶作为生物材料应用可能会为整合能力增添新的维度。

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