首页> 美国卫生研究院文献>Springer Open Choice >Tissue Restoration After Implantation of Polyglycolide Polydioxanone Polylevolactide and Metallic Pins in Cortical Bone: An Experimental Study in Rabbits
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Tissue Restoration After Implantation of Polyglycolide Polydioxanone Polylevolactide and Metallic Pins in Cortical Bone: An Experimental Study in Rabbits

机译:聚乙交酯聚二恶烷酮聚左旋丙交酯和金属钉植入皮质骨后的组织修复:在兔中的实验研究

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摘要

We performed qualitative and histoquantitative investigations of tissue restoration after implanting polyglycolide (PGA), polydioxanone (PDS), polylevolactide (PLLA), and stainless steel pins in the intramedullary canal of rabbit femurs. The effect of bioabsorbable devices on healing of a cortical bone defect was also assessed. The cortical bone defect was created in the right femur of 80 rabbits. Bioabsorbable and metallic pins in 60 and two metallic pins alone were implanted in 20 intramedullary canals; 80 left femurs served as intact controls. Follow-up times were 3, 6, 12, 24, and 52 weeks. At all time points, collagenous connective tissue, including bone trabeculae, surrounded the implant at the tissue–implant interface, replacing hematopoiesis and fat of the intramedullary canal. The groups did not differ in the area and trabecular bone area fraction of the resulting callus. Residual fragments of PGA and PDS were observed at 24 weeks, and complete degradation occurred within 52 weeks. PGA, PDS, PLLA, and metallic implants induced a bony and fibrous walling-off response in the intramedullary cavity. No inflammation was observed. Complete tissue restoration did not occur within the follow-up, even after complete degradation of PGA and PDS, which had shorter degradation times than PLLA. The cortical bone healing effect was not different between bioabsorbable pins and metallic wires. Thus, these polymers had no specific osteostimulatory or osteoinhibitory properties compared to stainless steel. Within the follow-up period, there were no significant differences in biocompatibility between the implants and no adverse inflammatory foreign-body reactions.
机译:我们在兔股骨髓腔内植入聚乙交酯(PGA),聚二氧杂环己酮(PDS),聚乙交酯(PLLA)和不锈钢针后,进行了组织恢复的定性和组织定量研究。还评估了生物可吸收装置对皮质骨缺损愈合的影响。在80只兔子的右股骨中形成了皮质骨缺损。将可生物吸收的金属钉和60个金属钉中的两个钉分别植入20个髓内管中。 80个左股骨作为完整对照。随访时间为3、6、12、24和52周。在所有时间点,包括骨小梁在内的胶原结缔组织都在组织与植入物的界面处包围植入物,从而替代了造血和髓腔内的脂肪。各组在产生的愈伤组织的面积和小梁骨面积分数方面没有差异。在24周时观察到PGA和PDS的残留碎片,并在52周内发生了完全降解。 PGA,PDS,PLLA和金属植入物在髓腔中引起骨和纤维壁脱落反应。没有观察到炎症。甚至在PGA和PDS完全降解后,也没有发生完全的组织恢复,其降解时间比PLLA短。在可生物吸收的针和金属线之间,皮质骨的愈合效果没有差异。因此,与不锈钢相比,这些聚合物没有特定的骨刺激或骨抑制特性。在随访期内,植入物之间的生物相容性无显着差异,并且无不良炎症异物反应。

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