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可生物降解复合材料支架,结合髓内棒并递送骨形态发生蛋白-2,用于节段性长骨缺损中的稳定和骨再生。

Biodegradable composite scaffolds incorporating an intramedullary rod and delivering bone morphogenetic protein-2 for stabilization and bone regeneration in segmental long bone defects.

机构信息

Department of Bioengineering, MS-142, Rice University, Houston, TX 77005, USA.

出版信息

Acta Biomater. 2011 Oct;7(10):3627-37. doi: 10.1016/j.actbio.2011.06.043. Epub 2011 Jun 30.

Abstract

In this study, a two-part bone tissue engineering scaffold was investigated. The scaffold consists of a solid poly(propylene fumarate) (PPF) intramedullary rod for mechanical support surrounded by a porous PPF sleeve for osseointegration and delivery of poly(dl-lactic-co-glycolic acid) (PLGA) microspheres with adsorbed recombinant human bone morphogenetic protein-2 (rhBMP-2). Scaffolds were implanted into critical size rat segmental femoral defects with internal fixation for 12 weeks. Bone formation was assessed throughout the study via radiography, and following euthanasia, via microcomputed tomography and histology. Mechanical stabilization was evaluated further via torsional testing. Experimental implant groups included the PPF rod alone and the rod with a porous PPF sleeve containing PLGA microspheres with 0, 2 or 8 μg of rhBMP-2 adsorbed onto their surface. Results showed that presence of the scaffold increased mechanical stabilization of the defect, as evidenced by the increased torsional stiffness of the femurs by the presence of a rod compared to the empty defect. Although the presence of a rod decreased bone formation, the presence of a sleeve combined with a low or high dose of rhBMP-2 increased the torsional stiffness to 2.06 ± 0.63 and 1.68 ± 0.56 N·mm, respectively, from 0.56 ± 0.24 N·mm for the rod alone. The results indicate that, while scaffolds may provide structural support to regenerating tissues and increase their mechanical properties, the presence of scaffolds within defects may hinder overall bone formation if they interfere with cellular processes.

摘要

在这项研究中,研究了一种两部分的骨组织工程支架。该支架由一个固体的聚(反丁烯二酸)(PPF)髓内棒组成,用于机械支撑,周围是一个多孔的 PPF 套管,用于骨整合和输送吸附有重组人骨形态发生蛋白-2(rhBMP-2)的聚(DL-丙交酯-共-乙交酯)(PLGA)微球。支架用内固定器植入到有临界大小的大鼠节段性股骨缺损中,植入 12 周。在整个研究过程中,通过 X 射线进行骨形成评估,在安乐死后,通过微计算机断层扫描和组织学进行评估。进一步通过扭转试验评估机械稳定性。实验性植入物组包括单独的 PPF 棒和带有多孔 PPF 套管的棒,套管内含有 PLGA 微球,其表面吸附有 0、2 或 8 μg 的 rhBMP-2。结果表明,支架的存在增加了缺陷的机械稳定性,这表现在有棒的股骨的扭转刚度比空缺陷的股骨增加。尽管棒的存在减少了骨形成,但套管的存在结合低或高剂量的 rhBMP-2 分别将扭转刚度提高到 2.06 ± 0.63 和 1.68 ± 0.56 N·mm,而单独使用棒时扭转刚度为 0.56 ± 0.24 N·mm。结果表明,虽然支架可以为再生组织提供结构支撑并增加其机械性能,但如果支架在缺陷内干扰细胞过程,则可能会阻碍整体骨形成。

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