用于治疗骨软骨缺损的生物活性可降解聚己内酯植入物:一项实验研究

Q3 Medicine Genij Ortopedii Pub Date : 2023-12-20 DOI:10.18019/1028-4427-2023-29-6-615-628
A. Popkov, E. Gorbach, E. Gorbach, N. A. Kononovich, E. A. Kireeva, D. Popkov
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引用次数: 0

摘要

本研究的目的是评估涂有羟基磷灰石的可生物降解聚己内酯植入物对大鼠股骨髁骨软骨缺损愈合的疗效。材料和方法 以 76 只 Wistar 大鼠为模型,将其分为 2 组,分别观察股骨内侧髁骨软骨缺损的情况。实验组用涂有羟基磷灰石的可生物降解聚己内酯膜替代缺损。对照组则不对缺损进行处理。结果 实验组动物在各阶段的活动范围均明显优于对照组动物。植入物确保了关节面的完整性和一致性。第 180 天,在缺损处观察到一个新形成的器官型结构关节表面区域。60 天后,修复区的生物力学特性得到恢复,而对照区的生物力学特性仍然低 27-29%。植入物的结构模拟了细胞外基质,促进了骨软骨缺损区域细胞的生长、增殖和定向分化。结论 浸渍有羟基磷灰石颗粒的可生物降解聚己内酯植入物可能对实验性骨软骨缺损修复有效。
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Bioactive biodegradable polycaprolactone implant for management of osteochondral defects: an experimental study
Introducrion Repair of the affected articular surface still remains an unsolved problem.The purpose of this study was to assess the efficacy of a biodegradable polycaprolactone implant coated with hydroxyapatite on the healing of an osteochondral defect of the femoral condyle in rats.Materials and methods An osteochondral defect of the medial femoral condyle was modeled in 76 Wistar rats divided into 2 groups. In the experimental group, the defect was replaced with a biodegradable polycaprolactone membrane coated with hydroxyapatite. In the control group, the defect remained untreated. The results were assessed within a year.Results In the experimental group, the animals had a significantly better range of motion at all stages of the experiment than the control animals. The implant ensured the integrity and congruence of the articular surface. On day 180, a newly formed area of the articular surface of the organotypic structure was observed in the defect. Biomechanical properties of the repaied zone restored after 60 days while in the control one they remained lower by 27-29 %.Discussion Filling the defect with an elastic implant made of polyprolactone with hydroxyapatite provided early functional load on the joint. The structure of the implant, simulating the extracellular matrix, promoted the growth, proliferation and directed differentiation of cells in the area of the osteochondral defect. The moderate rate of biodegradability of the material provided gradual replacement of the implant with organ-specific tissues.Conclusion A biodegradable polycaprolactone implant impregnated with hydroxyapatite particles might be effective for experimental osteochondral defect repair.
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来源期刊
Genij Ortopedii
Genij Ortopedii Medicine-Surgery
CiteScore
0.70
自引率
0.00%
发文量
104
审稿时长
12 weeks
期刊介绍: Journal’s main goal is to contribute to the development of the contemporary medical science via presentation of fundamental and applied original scientific studies to the scientific and practical medical community that would widen and deepen the understanding of the most important problems in the field of traumatology, orthopaedics, and related specialties. Our journal provides a direct open access to its content which is based on the principle that the open access option promotes global exchange of knowledge and experience. Journal’s strategy: -Development of the journal as a scientific platform for researchers, doctors, post-graduates and residents -Attraction of highly-cited authors to publish their studies -Selection of manuscripts of scientific interest for readers that will impact on journal citation index in RINC -Increase in the portion of publications submitted by foreign authors and studies conducted in association with foreign scientists; growth of citations in the journals that are included into global systems of indexing and reputable databases -Improvement of the Journal’s web site in two languages for a greater accessibility by authors and readers -Introduction of the Journal into global indexing systems
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