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首页> 外文期刊>Journal of biomedical materials research, Part A >Histological and mechanical evaluation of self-setting calcium phosphate cements in a sheep vertebral bone void model.
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Histological and mechanical evaluation of self-setting calcium phosphate cements in a sheep vertebral bone void model.

机译:绵羊椎骨空隙模型中自凝型磷酸钙水泥的组织学和力学评估。

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摘要

We investigated the histological and compressive properties of three different calcium phosphate cements (CPCs) using a sheep vertebral bone void model. One of the CPCs contained barium sulfate to enhance its radiopacity. Bone voids were surgically created in the lumbar region of 23 ovine spines - L3, L4, and L5 (n = 69 total vertebral bodies) - and the voids were filled with one of the three CPCs. A fourth group consisted of whole intact vertebrae. Histologic evaluation was performed for 30 of the 69 vertebrae 2 or 4 months after surgery along with radiographic evaluation. Compressive testing was performed on 39 vertebrae 4 months after surgery along with micro-CT analysis. All three CPCs were biocompatible and extremely osteoconductive. Osteoclasts associated with adjacent bone formation suggest that each cement can undergo slow resorption and replacement by bone and bone marrow. Compressive testing did not reveal a significant difference in the ultimate strength, ultimate strain, and structural modulus, among the three CPCs and intact whole vertebrae. Micro-CT analysis revealed good osseointegration between all three CPCs and adjacent bone. The barium sulfate did not affect the CPCs biocompatibility or mechanical properties. These results suggest that CPC might be a good alternative to polymethylmethacrylate for selected indications.
机译:我们使用绵羊椎骨空隙模型研究了三种不同的磷酸钙水泥(CPC)的组织学和抗压特性。其中一个CPC含有硫酸钡以增强其射线不透性。手术在23个脊柱的腰椎区域L3,L4和L5(总共= 69个椎体)中创建了骨骼空洞,并用三个CPC之一填充了空洞。第四组由完整的椎骨组成。术后2或4个月,对69个椎骨中的30个进行了组织学评估,并进行了放射学评估。术后4个月对39块椎骨进行压缩测试,并进行micro-CT分析。这三个CPC均具有生物相容性,并且具有极强的骨传导性。与相邻骨形成相关的破骨细胞表明,每种骨水泥均可缓慢吸收并被骨和骨髓替代。压缩测试未显示三个CPC和完整的完整椎骨之间的极限强度,极限应变和结构模量的显着差异。 Micro-CT分析显示,所有三个CPC和相邻骨骼之间的骨整合良好。硫酸钡不影响CPC的生物相容性或机械性能。这些结果表明,对于某些适应症,CPC可能是聚甲基丙烯酸甲酯的良好替代品。

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