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磷酸钙骨水泥/聚乳酸-羟基乙酸共聚物微粒复合材料的生物相容性评价

Evaluation of the biocompatibility of calcium phosphate cement/PLGA microparticle composites.

作者信息

Link Dennis P, van den Dolder Juliette, van den Beucken Jeroen J J P, Cuijpers Vincent M, Wolke Joop G C, Mikos Antonios G, Jansen John A

机构信息

Department of Periodontology and Biomaterials, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.

出版信息

J Biomed Mater Res A. 2008 Dec 1;87(3):760-9. doi: 10.1002/jbm.a.31831.

Abstract

In this study, the biocompatibility of a calcium phosphate (CaP) cement incorporating poly (D,L-lactic-co-glycolic acid) (PLGA) microparticles was evaluated in a subcutaneous implantation model in rats. Short-term biocompatibility was assessed using pure CaP discs and CaP discs incorporating PLGA microparticles (20% w/w) with and without preincubation in water. Long-term biocompatibility was assessed using CaP discs incorporating varying amounts (5, 10, or 20% w/w) and diameter sizes (small, 0-50 mum; medium, 51-100 mum, or large, 101-200 mum) of PLGA microparticles. The short-term biocompatibility results showed a mild tissue response for all implant formulations, irrespective of disc preincubation, during the early implantation periods up to 12 days. Quantitative histological evaluation revealed that the different implant formulations induced the formation of similar fibrous tissue capsules and interfaces. The results concerning long-term biocompatibility showed that all implants were surrounded by a thin connective tissue capsule (<10 layers of fibroblasts). Additionally, no significant differences in capsule and interface scores were observed between the different implant formulations. The implants containing 20% PLGA with medium- and large-sized microparticles showed fibrous tissue ingrowth throughout the implants, indicating PLGA degradation and interconnectivity of the pores. The results demonstrate that CaP/PLGA composites evoke a minimal inflammatory response. The implants containing 20% PLGA with medium- and large-sized microparticles showed fibrous tissue ingrowth after 12- and 24-weeks indicating PLGA degradation and interconnectivity of the pores. Therefore, CaP/PLGA composites can be regarded as biocompatible biomaterials with potential for bone tissue engineering and advantageous possibilities of the microparticles regarding material porosity.

摘要

在本研究中,在大鼠皮下植入模型中评估了一种含有聚(D,L-乳酸-乙醇酸共聚物)(PLGA)微粒的磷酸钙(CaP)骨水泥的生物相容性。使用纯CaP圆盘以及含有PLGA微粒(20% w/w)的CaP圆盘评估短期生物相容性,这些圆盘在水中有或没有进行预孵育。使用含有不同量(5%、10%或20% w/w)和不同直径尺寸(小,0 - 50μm;中,51 - 100μm,或大,101 - 200μm)PLGA微粒的CaP圆盘评估长期生物相容性。短期生物相容性结果表明,在长达12天的早期植入期内,所有植入制剂均引起轻度组织反应,与圆盘预孵育情况无关。定量组织学评估显示,不同的植入制剂诱导形成了相似的纤维组织囊和界面。长期生物相容性结果表明,所有植入物均被一层薄的结缔组织囊(<10层成纤维细胞)包围。此外,不同植入制剂之间在囊和界面评分上未观察到显著差异。含有20% PLGA且具有中、大尺寸微粒的植入物在整个植入物中均显示有纤维组织向内生长,表明PLGA降解和孔隙的相互连通性。结果表明,CaP/PLGA复合材料引起的炎症反应最小。含有20% PLGA且具有中、大尺寸微粒的植入物在12周和24周后显示有纤维组织向内生长,表明PLGA降解和孔隙的相互连通性。因此,CaP/PLGA复合材料可被视为具有骨组织工程潜力的生物相容性生物材料,并且微粒在材料孔隙率方面具有有利的可能性。

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