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含锶玻璃陶瓷在兔模型中的早期骨整合。

Early osseointegration of a strontium containing glass ceramic in a rabbit model.

机构信息

Histopathology Laboratory, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Trivandrum 695012, India.

出版信息

Biomaterials. 2013 Dec;34(37):9278-86. doi: 10.1016/j.biomaterials.2013.08.070. Epub 2013 Sep 16.

Abstract

The most important property of a bone cement or a bone substitute in load bearing orthopaedic implants is good integration with host bone with reduced bone resorption and increased bone regeneration at the implant interface. Long term implantation of metal-based joint replacements often results in corrosion and particle release, initiating chronic inflammation leading onto osteoporosis of host bone. An alternative solution is the coating of metal implants with hydroxyapatite (HA) or bioglass or the use of bulk bioglass or HA-based composites. In the above perspective, the present study reports the in vivo biocompatibility and bone healing of the strontium (Sr)-stabilized bulk glass ceramics with the nominal composition of 4.5SiO2-3Al2O3-1.5P2O5-3SrO-2SrF2 during short term implantation of up to 12 weeks in rabbit animal model. The progression of healing and bone regeneration was qualitatively and quantitatively assessed using fluorescence microscopy, histological analysis and micro-computed tomography. The overall assessment of the present study establishes that the investigated glass ceramic is biocompatible in vivo with regards to local effects after short term implantation in rabbit animal model. Excellent healing was observed, which is comparable to that seen in response to a commercially available implant of HA-based bioglass alone.

摘要

在承重骨科植入物中,骨水泥或骨替代物最重要的特性是与宿主骨良好整合,减少骨吸收,增加植入物界面处的骨再生。金属关节置换物的长期植入物通常会导致腐蚀和颗粒释放,引发慢性炎症,导致宿主骨骨质疏松。一种替代解决方案是用羟基磷灰石 (HA) 或生物玻璃对金属植入物进行涂层,或者使用块状生物玻璃或基于 HA 的复合材料。从上述角度来看,本研究报告了在兔动物模型中短期植入长达 12 周期间,名义成分为 4.5SiO2-3Al2O3-1.5P2O5-3SrO-2SrF2 的 Sr 稳定块状玻璃陶瓷的体内生物相容性和骨愈合情况。使用荧光显微镜、组织学分析和微计算机断层扫描对愈合和骨再生的进展进行定性和定量评估。本研究的总体评估表明,在所研究的玻璃陶瓷在兔动物模型中的短期植入后,在局部效应方面具有体内生物相容性。观察到了极好的愈合,与单独使用基于 HA 的生物玻璃的市售植入物的反应相当。

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