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Tissue Engineering of Large Full-Size Meniscus Defects by a Polyurethane Scaffold: Accelerated Regeneration by Mesenchymal Stromal Cells

机译:大尺寸半月板缺陷的聚氨酯支架的组织工程:间质基质细胞的加速再生。

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The endogenous healing potential of avascular meniscal lesions is poor. Up to now, partial meniscectomy is still the treatment of choice for meniscal lesions within the avascular area. However, the large loss of meniscus substance predisposes the knee for osteoarthritic changes. Tissue engineering techniques for the replacement of such lesions could be a promising alternative treatment option. Thus, a polyurethane scaffold, which is already in clinical use, loaded with mesenchymal stromal cells, was analyzed for the repair of critical meniscus defects in the avascular zone. Large, approximately 7 mm broad meniscus lesions affecting both the avascular and vascular area of the lateral rabbit meniscus were treated with polyurethane scaffolds either loaded or unloaded with mesenchymal stromal cells. Menisci were harvested at 6 and 12 weeks after initial surgery. Both cell-free and cell-loaded approaches led to well-integrated and stable meniscus-like repair tissue. However, an accelerated healing was achieved by the application of mesenchymal stromal cells. Dense vascularization was detected throughout the repair tissue of both treatment groups. Overall, the polyurethane scaffold seems to promote the vessel ingrowth. The application of mesenchymal stromal cells has the potential to speed up the healing process.
机译:血管性半月板病变的内源性愈合潜力不佳。迄今为止,半月板切除术仍是血管区域内半月板病变的治疗选择。然而,弯液面物质的大量损失使膝盖容易发生骨关节炎。组织工程技术替代此类病变可能是一种有前途的替代治疗选择。因此,分析了已经在临床上使用的,装载了间充质基质细胞的聚氨酯支架,以修复无血管区域中的重要半月板缺陷。用装载或卸载间充质基质细胞的聚氨酯支架治疗影响兔外侧半月板的无血管和血管区域的大的,约7 mm宽的半月板损伤。初次手术后第6周和第12周收获半月板。无细胞和细胞加载的方法都导致了整合良好且稳定的半月板样修复组织。然而,通过间充质基质细胞的应用实现了加速的愈合。在两个治疗组的整个修复组织中均检测到密集的血管形成。总体而言,聚氨酯支架似乎促进了血管的向内生长。间充质基质细胞的应用有可能加速愈合过程。

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