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一种新型绵羊椎体骨缺损模型用于可注射的生物活性椎体增强材料。

A novel sheep vertebral bone defect model for injectable bioactive vertebral augmentation materials.

机构信息

Department of Orthopedic Surgery, The First Affiliated Hospital of Soochow University, Suzhou, People's Republic of China.

出版信息

J Mater Sci Mater Med. 2011 Jan;22(1):159-64. doi: 10.1007/s10856-010-4191-5. Epub 2010 Dec 3.

Abstract

New injectable bone substitutes have been developed that are, unlike polymethylmethacrylate, biologically active and have an osteogenic effect leading to osteogenesis and bone remodeling for vertebroplasty or kyphoplasty. In this study, we developed a sheep vertebral bone defect model to evaluate the new bioactive materials and assessed the feasibility of the model in vivo. Bone voids were experimentally created on lumbar vertebrae L2-L5 with L1 and L6 left intact as a normal control in mature sheep. The defect vertebrae L2-L5 in each sheep were randomized to receive augmentation with calcium phosphate cement (CPC) or sham. Vertebrae (L1-L6) were collected after 2 and 24 weeks of the cement augmentation and their strength and stiffness, as well as osseointegration activity and biodegradability, were evaluated. Finally, CPC significantly improved the strength and stiffness of vertebrae but did not yet restore it to the normal level at 24 weeks. Osteogenesis occurred at a substantially high level after 24 weeks of CPC augmentation or sham. Therefore, the sheep vertebral model with one void, 6.0 mm in diameter and 15.0 mm in depth, is replicable and can be used for evaluating the new injectable bioactive materials in vertebral augmentation or reconstruction.

摘要

新型可注射骨替代物已被开发出来,与聚甲基丙烯酸甲酯不同,它们具有生物活性,并具有成骨作用,可导致骨生成和骨重塑,用于椎体成形术或后凸成形术。在这项研究中,我们开发了一种绵羊椎骨骨缺损模型,以评估新型生物活性材料,并评估该模型在体内的可行性。在成熟绵羊的腰椎 L2-L5 上用 L1 和 L6 保持完整作为正常对照,实验性地创建骨空隙。每只绵羊的缺损椎骨 L2-L5 随机接受磷酸钙水泥(CPC)或假手术填充。在水泥填充后 2 和 24 周收集椎骨(L1-L6),并评估其强度和刚度、骨整合活性和生物降解性。最后,CPC 显著提高了椎骨的强度和刚度,但在 24 周时仍未恢复到正常水平。CPC 填充后 24 周时发生了很高水平的成骨作用。因此,具有一个直径 6.0mm、深度 15.0mm 的空洞的绵羊椎骨模型是可复制的,可用于评估新型可注射生物活性材料在椎体增强或重建中的应用。

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