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多孔高密度聚乙烯作为骨组织工程三维支架的组织反应:一项实验研究。

Tissue response to porous high density polyethylene as a three-dimensional scaffold for bone tissue engineering: An experimental study.

机构信息

a Universidad de Buenos Aires, Cátedra de Anatomía Patológica, Facultad de Odontología , Buenos Aires , Argentina.

b National Research Council (CONICET) , Buenos Aires , Argentina.

出版信息

J Biomater Sci Polym Ed. 2019 Apr;30(6):486-499. doi: 10.1080/09205063.2019.1582278. Epub 2019 Mar 8.

DOI:10.1080/09205063.2019.1582278
PMID:30776982
Abstract

High density polyethylene (HDPE) is a synthetic biomaterial used as a three-dimensional scaffold for bone defect reconstruction. Reports differ with regard to its biological response, particularly its osteoconductive capacity. The aim of the present work was to histologically and histomorphometrically evaluate tissue response to porous HDPE. An in vivo study was conducted in rat tibia to evaluate osteogenic capacity, angiogenesis, inflammatory response, and the presence of multinucleated giant cells 14 and 60 days post-biomaterial implantation. Histological examination 14 days post-implantation showed fibrovascular tissue inside pores and on the surface of porous HDPE, acute inflammatory response, scant multinucleated giant cells (MNGCs), and lamellar bone in contact with the biomaterial. An increase in the proportion of lamellar bone tissue, no inflammatory response, and a decrease in the number of MNGCs were observed at 60 days. The histomorphometric study showed a significant time-dependent increase both in the area of bone tissue formed in contact with the porous HDPE (14d: 24.450 ± 11.623 µm vs. 60d: 77.104 ± 26.217 µm, p < 0.05) and in the percentage of bone tissue in contact with the porous HDPE (osseointegration). A significant decrease in the number of MNGCs was also observed at 60 days post-implantation. Porous HDPE showed adequate osteoconductive properties, and only caused an initial inflammatory response. Although this biomaterial has traditionally been used juxtaosseoulsy, its adequate osteoconductive properties broaden the scope of its application to include intraosseous placement.

摘要

高密度聚乙烯(HDPE)是一种合成生物材料,用作骨缺损重建的三维支架。关于其生物学反应,尤其是其成骨能力的报告存在差异。本工作旨在通过组织学和组织形态计量学评估多孔 HDPE 的组织反应。在大鼠胫骨中进行了一项体内研究,以评估植入生物材料后 14 和 60 天的成骨能力、血管生成、炎症反应和多核巨细胞的存在。植入后 14 天的组织学检查显示纤维血管组织位于孔隙内和多孔 HDPE 的表面,存在急性炎症反应、少量多核巨细胞(MNGCs)和与生物材料接触的板层骨。在 60 天时观察到板层骨组织比例增加、无炎症反应和 MNGCs 数量减少。组织形态计量学研究显示,与多孔 HDPE 接触形成的骨组织面积(14d:24.450 ± 11.623 µm 与 60d:77.104 ± 26.217 µm,p < 0.05)和与多孔 HDPE 接触的骨组织百分比(骨整合)均呈时间依赖性显著增加。在植入后 60 天,MNGCs 的数量也显著减少。多孔 HDPE 表现出良好的成骨能力,仅引起初始炎症反应。尽管这种生物材料传统上用于骨旁,但它良好的成骨能力拓宽了其应用范围,包括骨内放置。

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