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The minipig model for experimental chondral and osteochondral defect repair in tissue engineering: retrospective analysis of 180 defects

机译:用于组织工程实验性软骨和骨软骨缺损修复的微型猪模型:180处缺损的回顾性分析

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Articular cartilage repair is still a challenge in orthopaedic surgery. Although many treatment options have been developed in the last decade, true regeneration of hyaline articular cartilage is yet to be accomplished. In vitro experiments are useful for evaluating cell-matrix interactions under controlled parameters. When introducing new treatment options into clinical routine, adequate animal models are capable of closing the gap between in vitro experiments and the clinical use in human beings. We developed an animal model in the Gottingen minipig (GMP) to evaluate the healing of osteochondral or full-thickness cartilage defects. The defects were located in the middle third of the medial portion of the patellofemoral joint at both distal femurs. Chondral defects were 6.3 mm, osteochondral defects either 5.4 or 6.3 mm in diameter and 8 or 10 mm deep. In both defects the endogenous repair response showed incomplete repair tissue formation up to 12 months postoperatively. Based on its limited capability for endogenous repair of chondral and osteochondral defects, the GMP is a useful model for critical assessment of new treatment strategies in articular cartilage tissue engineering.
机译:关节软骨修复仍然是整形外科的挑战。尽管在过去的十年中已经开发出许多治疗选择,但是透明关节软骨的真正再生尚待完成。体外实验可用于评估可控参数下的细胞-基质相互作用。将新的治疗方案引入临床常规时,适当的动物模型能够弥合体外实验与人类临床应用之间的鸿沟。我们在哥廷根小型猪(GMP)中开发了一个动物模型,以评估骨软骨或全层软骨缺损的愈合情况。缺陷位于两个股骨远端的both股关节内侧部分的中间三分之一处。软骨缺损为6.3 mm,骨软骨缺损直径为5.4或6.3 mm,深度为8或10 mm。在这两个缺陷中,内源性修复反应在术后12个月内均显示修复组织形成不完全。由于GMP对软骨和骨软骨缺损的内源性修复能力有限,因此GMP是一种重要模型,可用于严格评估关节软骨组织工程中的新治疗策略。

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