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由可生物降解聚酯和磷酸钙/碳酸钙制成的用于颅骨重建的几何结构植入物。

Geometrically structured implants for cranial reconstruction made of biodegradable polyesters and calcium phosphate/calcium carbonate.

作者信息

Schiller Carsten, Rasche Christian, Wehmöller Michael, Beckmann Felix, Eufinger Harald, Epple Matthias, Weihe Stephan

机构信息

Solid State Chemistry, Faculty of Chemistry, University of Bochum, Universitaetsstr. 150, Bochum D-44780, Germany.

出版信息

Biomaterials. 2004 Mar-Apr;25(7-8):1239-47. doi: 10.1016/j.biomaterials.2003.08.047.

Abstract

The aim of this study was the development of a processing pathway for manufacturing of biodegradable skull implants with individual geometry. The implants on the basis of polylactide and calcium phosphate/calcium carbonate were prepared by a combination of hot pressing and gas foaming. On the inside, the implant consists of a macroporous and faster degradable material (poly(D,L-lactide)+CaCO3) to allow the ingrowth of bone cells. The pore size is in the range of 200-400 microm. On the outside, the implant consists of a compact and slower biodegradable material (poly(L-lactide) and calcium phosphate) to ensure mechanical stability and protection. To overcome problems like inflammatory reactions caused by acidic degradation products of polylactide, the polyester was combined with basic filling materials (calcium salts). The filler neutralises the lactic acid produced during polymer degradation and increases the bioactivity of the material. The stabilised pH was demonstrated by long-term in vitro pH studies. Over a time period of 250 d in demineralised water, the pH was in the physiological range. The in vitro biocompatibility was shown by cell cultures with human osteoblasts. A good proliferation of the cells was observed over the whole test period of 4 weeks.

摘要

本研究的目的是开发一种用于制造具有个性化几何形状的可生物降解颅骨植入物的加工工艺。基于聚乳酸和磷酸钙/碳酸钙的植入物通过热压和气体发泡相结合的方法制备。植入物内部由大孔且降解较快的材料(聚(D,L-丙交酯)+碳酸钙)组成,以利于骨细胞向内生长。孔径在200 - 400微米范围内。植入物外部由致密且降解较慢的材料(聚(L-丙交酯)和磷酸钙)组成,以确保机械稳定性和保护作用。为了克服聚乳酸酸性降解产物引起的炎症反应等问题,将聚酯与碱性填充材料(钙盐)结合。填充剂中和了聚合物降解过程中产生的乳酸,并提高了材料的生物活性。通过长期体外pH研究证明了pH的稳定性。在去离子水中250天的时间段内,pH值处于生理范围内。用人成骨细胞进行细胞培养显示了体外生物相容性。在整个4周的测试期内观察到细胞良好的增殖情况。

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