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In Vitro Analysis of Cartilage Regeneration Using a Collagen Type I Hydrogel (CaReS) in the Bovine Cartilage Punch Model

机译:使用胶原软骨冲床模型中使用胶原蛋白I型水凝胶(Cares)的软骨再生体外分析

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Objective Limitations of matrix-assisted autologous chondrocyte implantation to regenerate functional hyaline cartilage demand a better understanding of the underlying cellular/molecular processes. Thus, the regenerative capacity of a clinically approved hydrogel collagen type I implant was tested in a standardized bovine cartilage punch model. Methods Cartilage rings (outer diameter 6 mm; inner defect diameter 2 mm) were prepared from the bovine trochlear groove. Collagen implants (+/- bovine chondrocytes) were placed inside the cartilage rings and cultured up to 12 weeks. Cartilage-implant constructs were analyzed by histology (hematoxylin/eosin; safranin O), immunohistology (aggrecan, collagens 1 and 2), and for protein content, RNA expression, and implant push-out force. Results Cartilage-implant constructs revealed vital morphology, preserved matrix integrity throughout culture, progressive, but slight proteoglycan loss from the "host" cartilage or its surface and decreasing proteoglycan release into the culture supernatant. In contrast, collagen 2 and 1 content of cartilage and cartilage-implant interface was approximately constant over time. Cell-free and cell-loaded implants showed (1) cell migration onto/into the implant, (2) progressive deposition of aggrecan and constant levels of collagens 1 and 2, (3) progressively increased mRNA levels for aggrecan and collagen 2, and (4) significantly augmented push-out forces over time. Cell-loaded implants displayed a significantly earlier and more long-lasting deposition of aggrecan, as well as tendentially higher push-out forces. Conclusion Preserved tissue integrity and progressively increasing cartilage differentiation and push-out forces for up to 12 weeks of cultivation suggest initial cartilage regeneration and lateral bonding of the implant in this in vitro model for cartilage replacement materials.
机译:基质辅助自体软骨细胞植入重新生成功能透明软骨的目的局限性地需要更好地了解潜在的细胞/分子过程。因此,在标准化的牛软骨冲头模型中测试了临床批准的水凝胶胶原蛋白型I植入物的再生能力。方法用牛Trochlear槽制备软骨环(外径6mm;内缺陷直径2 mm)。将胶原蛋白植入物(+/-牛软骨细胞)置于软骨环内并培养至12周。通过组织学(苏木精/曙红; Safranin O),免疫组织(蛋白,胶原1和2)和蛋白质含量,RNA表达和植入式推出力分析软骨植入物构建体。结果软骨植入物构建体揭示了重要形态,保存了培养物的基质完整性,进行了培养,但从“宿主”软骨或其表面损失并降低蛋白多糖释放到培养上清液中的较小蛋白质增生。相反,随着时间的推移,胶原蛋白2和1含量的软骨和软骨植入物界面大致恒定。无细胞和载能的植入物显示(1)细胞迁移到植入物上,(2)骨癌和蛋白1和2的恒定水平,(3)逐渐增加的骨髓和胶原2的mRNA水平,以及(4)随着时间的推移,显着增强的推出力。植入物的植入物显着较早显示出纤维的沉积和更长的沉积,以及倾向于更高的推出力。结论保存的组织完整性和逐步增加的软骨分化和推出力长达12周的培养表明植入物在这种软骨替代材料的体外模型中的初始软骨再生和侧向粘合。

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