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Treatment of rabbit growth plate injuries with an autologous tissue-engineered composite. An experimental study.

机译:自体组织工程复合材料治疗兔生长板损伤。实验研究。

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Tissue engineering has become a promising way of treating growth plate injuries. In this study, we attempted investigating the role of the autologous tissue-engineered composite in the treatment of rabbit growth plate injuries. Growth plate chondrocytes from iliac crest epiphyseal cartilage of immature New Zealand rabbits were obtained by dissection and sequential digestion with 0.2% collagenase (type II). After proliferating in monolayer culture in vitro for 3 weeks, the cells were harvested and seeded onto the demineralized bone matrix (DBM) scaffold to construct the composite. The autologous tissue-engineered composites were finally implanted into the proximal right tibia defects of the growth plate created in 12 rabbits (group A underwent the operation after obtaining chondrocytes 3 weeks beforehand), another 12 rabbits were implanted with only the DBM scaffold (group B), and the defects in group C (12 rabbits) were not implanted. The left tibias of all animals were left undone as the normal control. Two weeks after the operation, severe shortness and angulation deformity of the right tibia evaluated by X-ray were gradually observed in groups B and C. However, there were no obvious changes in group A and there were significant differences between group A and groups B and C (p < 0.05) at the 4-, 8-, and 16-weeks time points. 16 weeks after operation, histological examination revealed that the defects of the right tibias in group A had restored to almost the normal columnar structure of the growth plate. The results demonstrate that tissue-engineered composite established by combination of autologous growth plate chondrocytes and DBM can prevent the formation of a bone bridge and restore the growth of damaged growth plate.
机译:组织工程学已成为治疗生长板损伤的一种有前途的方法。在这项研究中,我们试图研究自体组织工程复合材料在治疗兔生长板损伤中的作用。通过解剖并用0.2%胶原酶(II型)顺序消化,获得了来自未成熟新西兰兔的c顶骨phy软骨的生长板软骨细胞。在体外单层培养中增殖3周后,收集细胞并将其接种到脱矿骨基质(DBM)支架上以构建复合物。最后,将自体组织工程复合材料植入到12只兔子(A组在提前3周获得软骨细胞后进行手术)所产生的生长板的右胫骨近端缺损中,再将12只兔子仅植入DBM支架(B组)。 ),未植入C组(12只兔子)的缺损。将所有动物的左胫骨做为正常对照。术后两周,B,C组逐渐观察到X线片评价的右胫骨严重短缩和弯曲畸形。但是,A组无明显变化,A组与B组差异有统计学意义。在4周,8周和16周时间点的C(p <0.05)。术后16周,组织学检查显示,A组右胫骨缺损已恢复至生长板几乎正常的柱状结构。结果表明,通过自体生长板软骨细胞与DBM结合而形成的组织工程复合材料可以防止骨桥的形成并恢复受损生长板的生长。

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