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兔关节软骨的玻璃化冷冻保存防止冷冻损伤。

Vitreous preservation of articular cartilage from cryoinjury in rabbits.

机构信息

Department of Orthopaedic Surgery, Graduate School of Medical Science, Kanazawa University, Japan.

出版信息

Cryobiology. 2012 Oct;65(2):98-103. doi: 10.1016/j.cryobiol.2012.05.006. Epub 2012 May 29.

Abstract

Frozen osteoarticular grafts treated with liquid nitrogen are utilized for joint reconstruction after tumor resection, but the joints may subsequently develop osteoarthritic changes. To preserve articular cartilage from cryoinjury, we modified a vitrification method utilized for embryo cryopreservation and demonstrated in vitro that our vitrification protocol was effective for protecting cartilage from cryoinjury. In this study, we investigated in vivo whether this vitrification method could protect against osteoarthritic changes in articular cartilage. Osteochondral plugs were obtained from the distal femur of rabbits. These grafts were divided into 3 groups: Fresh group (F-group), non-vitrification group (N-group), and vitrification group (V-group). After treatment, the plugs were re-implanted as autografts. Histological findings, chondrocyte viability, and ultrastructural examinations were examined 6, 12, and 24weeks after implantation. Histological findings of chondrocytes for the V-group showed no significant difference from those of the F-group at any time point except at 24weeks postimplantation at the non-weight bearing site (p<0.05). Viability of chondrocyte showed no significant difference from those of the F-group except at 12weeks postimplantation at the bearing site (p<0.05). In contrast, viable cells disappeared from the N-group and histology and viability significantly differed between the N-group and the V-group. Transmission electron microscopy demonstrated preservation of chondrocyte structure in the V-group and the F-group, but chondrocytes of the N-group were abnormally electron dense. Our vitrification method was effective in protecting chondrocytes from cryoinjury that might lead to cartilage degeneration. Reconstructing joints with osteoarticular grafts containing living cartilage may help to avert osteoarthritic changes. Our vitrification method could prove useful for reconstruction with frozen tumor-containing autografts and for long-term storage of living cartilage for allografts.

摘要

经液氮处理的冷冻骨-关节移植物用于肿瘤切除后的关节重建,但关节随后可能会发展为骨关节炎变化。为了防止关节软骨受到冷冻损伤,我们改良了一种用于胚胎冷冻保存的玻璃化方法,并在体外证明我们的玻璃化方案能有效保护软骨免受冷冻损伤。在这项研究中,我们研究了这种玻璃化方法是否能防止关节软骨发生骨关节炎变化。从兔的股骨远端获得骨软骨栓。这些移植物分为 3 组:新鲜组(F 组)、非玻璃化组(N 组)和玻璃化组(V 组)。处理后,将栓作为自体移植物再植入。在植入后 6、12 和 24 周,检查了组织学发现、软骨细胞活力和超微结构检查。V 组的软骨细胞的组织学发现除了在非承重部位的植入后 24 周外,与 F 组在任何时间点均无显著差异(p<0.05)。软骨细胞活力除了在承重部位的植入后 12 周外,与 F 组无显著差异(p<0.05)。相比之下,N 组的活细胞消失,N 组和 V 组的组织学和活力有显著差异。透射电子显微镜显示 V 组和 F 组的软骨细胞结构得到保存,但 N 组的软骨细胞异常电子致密。我们的玻璃化方法能有效保护软骨细胞免受可能导致软骨退变的冷冻损伤。用含有活软骨的骨-关节移植物重建关节可能有助于避免骨关节炎变化。我们的玻璃化方法可能对冷冻肿瘤自体移植物的重建和同种异体移植物的活软骨的长期储存有用。

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