首页> 外文期刊>Biomaterials >The synergistic effects of microfracture, perforated decalcified cortical bone matrix and adenovirus-bone morphogenetic protein-4 in cartilage defect repair.
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The synergistic effects of microfracture, perforated decalcified cortical bone matrix and adenovirus-bone morphogenetic protein-4 in cartilage defect repair.

机译:微骨折,穿孔的脱钙皮质骨基质和腺病毒-骨形态发生蛋白-4在软骨缺损修复中的协同作用。

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摘要

We reported a technique for articular cartilage repair, consisting of microfracture, a biomaterial scaffold of perforated decalcified cortical bone matrix (DCBM) and adenovirus-bone morphogenetic protein-4 (Ad-BMP4) gene therapy. In the present study, we evaluated its effects on the quality and quantity for induction of articular cartilage regeneration. Full-thickness defects were created in the articular cartilage of the trochlear groove of rabbits. Four groups were assigned: Ad-BMP4/perforated DCBM composite (group I); perforated DCBM alone without Ad-BMP4 (group II); DCBM without perforated (group III) and microfracture alone (group IV). Animals were sacrificed 6, 12 and 24 weeks postoperation. The harvested tissues were analyzed by magnetic resonance image, scanning electron microscope, histological examination and immunohistochemistry. Group I showed vigorous and rapid repair leading to regeneration of hyaline articular cartilage at 6 weeks and to complete repair of articular cartilage and subchondral bone at 12 weeks. Groups II and III completely repaired the defect with hyaline cartilage at 24 weeks, but group II was more rapid than group III in the regeneration of repair tissue. In group IV the defects were concave and filled with fibrous tissue at 24 weeks. These findings demonstrated that this composite biotechnology can rapidly repair large areas of cartilage defect with regeneration of native hyaline articular cartilage.
机译:我们报道了一种关节软骨修复技术,包括微骨折,穿孔脱钙皮质骨基质(DCBM)生物材料支架和腺病毒骨形态发生蛋白4(Ad-BMP4)基因治疗。在本研究中,我们评估了其对诱导关节软骨再生的质量和数量的影响。在兔滑车槽的关节软骨中形成了全层缺损。分为四组:Ad-BMP4 /多孔DCBM复合材料(第一组);不含Ad-BMP4的单独穿孔DCBM(II组); DCBM无穿孔(III组)和仅微骨折(IV组)。术后6、12和24周处死动物。通过磁共振成像,扫描电子显微镜,组织学检查和免疫组织化学分析收集的组织。第一组在第6周表现出剧烈而快速的修复,导致透明关节软骨再生,在第12周时完成了关节软骨和软骨下骨的修复。 II组和III组在24周时用透明软骨完全修复了缺损,但是II组在修复组织再生方面比III组更快。在第IV组中,缺损为凹形并在24周时充满了纤维组织。这些发现表明,这种复合生物技术可以通过天然透明关节软骨的再生快速修复大面积的软骨缺损。

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