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颅骨对磷酸三钙-京尼平交联明胶复合材料的反应。

Calvarial bone response to a tricalcium phosphate-genipin crosslinked gelatin composite.

作者信息

Yao Chun-Hsu, Liu Bai-Shuan, Hsu Shan-Hui, Chen Yueh-Sheng

机构信息

Department of Radiological Technology, Institute of Biomedical Engineering and Material Science, Chung-Tai Institute of Health Science and Technology, Takun, Taichung, Taiwan.

出版信息

Biomaterials. 2005 Jun;26(16):3065-74. doi: 10.1016/j.biomaterials.2004.09.011.

Abstract

A biodegradable composite which was composed of genipin cross-linked gelatin mixing with tricalcium phosphate ceramic particles (GGT) was developed as a bone substitute. This study was evaluated by the biological response of rabbit calvarial bone to assess the potential of the GGT composite as a biodegradable and osteoconductive bone substitute. Eighteen New Zealand white rabbits were used for cranial implantation. Bone defects (15 x 15 mm) of nine rabbits were filled with the GGT composites, while the others were filled with the de-proteinized bovine bones as controls. Three rabbits were examined for each group in every time period at 4, 8 and 12 weeks post-surgery. The assessment included serial post-operative gross examinations, radiographic analyses and histological evaluations. This study demonstrated that this composite is: (1) malleable, with easily molded to the calvarial bone defect without fracture; (2) biocompatible, with no evidence of adverse tissue reaction; (3) osteoconductive, with progressive growth of new bone into the calvarial bone defect; (4) biodegradable, with progressive replacement of the composite by new bone. Additionally, results of both radiographic analyses and histological evaluations revealed obviously greater new bone ingrowth in the GGT composite compared with the de-proteinized bovine bone at the same implantation time. Therefore, the GGT composite could serve as a useful bone substitute for repairing bone defects.

摘要

一种由京尼平交联明胶与磷酸三钙陶瓷颗粒混合而成的可生物降解复合材料(GGT)被开发用作骨替代物。本研究通过兔颅骨的生物学反应进行评估,以评估GGT复合材料作为可生物降解且具有骨传导性的骨替代物的潜力。选用18只新西兰白兔进行颅骨植入。9只兔子的骨缺损(15×15毫米)填充GGT复合材料,其余兔子填充去蛋白牛骨作为对照。术后4、8和12周的每个时间段,每组检查3只兔子。评估包括术后连续大体检查、影像学分析和组织学评估。本研究表明,这种复合材料具有以下特点:(1)具有可塑性,易于成型贴合颅骨骨缺损处而不发生断裂;(2)具有生物相容性,无不良组织反应迹象;(3)具有骨传导性,新骨向颅骨骨缺损处逐渐生长;(4)可生物降解,复合材料逐渐被新骨替代。此外,影像学分析和组织学评估结果均显示,在相同植入时间下,GGT复合材料中的新骨长入明显多于去蛋白牛骨。因此,GGT复合材料可作为修复骨缺损的有用骨替代物。

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