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Amniotic membrane-derived stem cells help repair osteochondral defect in a weight-bearing area in rabbits

机译:羊膜来源的干细胞有助于修复兔子负重区的软骨软骨缺损

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摘要

Our study evaluated the use of amniotic membrane-derived stem cells for repairing osteochondral defects in a weight-bearing area in rabbits. Twenty-four 3-month-old male or female New Zealand white rabbits were selected. The rabbits were randomly divided into 3 groups of eight, according to the treatment received for an experimentally inflicted femoral medial malleolus lesion, group I received a human acellular amniotic membrane seeded with bone marrow-derived mesenchymal stem cells (HAAM-BMSCs) implant; group II received a simple HAAM implant and the control group received no experimental lesion or treatment. The rabbits were sacrificed at 12 and 24 weeks after the procedures (4 rabbits in each time-point) and the cartilage repair status in each animal was evaluated under the microscope. The tissue of the HAAM-BMSCs group grew well covering an area in the visual field that was significantly larger than that of the HAAM group (p<0.05). The percentage of collagen II-positive area in the HAAM-BMSC group was significantly higher than that in HAAM group (p<0.05). The number of chondrocytes determined by toluidine blue staining was higher in the HAAM-BMSC group than that in the HAAM group (p<0.05). The Wakitani scores of the HAAM and HAAM-BMSC groups were significantly higher (worse) than those of the normal control group (p<0.05), but the score in the HAAM-BMSC group was significantly lower than that in the HAAM group (p<0.05). The Wakitani scores in the HAAM-BMSC group were not different between the two time-points taken. Based on our findings, the amniotic membrane-derived stem cells had a good therapeutic effect in repairing the osteochondral defects in the weight-bearing area, and the number of chondrocytes in the injured area was increased significantly, which accelerated the repair of the damaged tissue in rabbits.
机译:我们的研究评估了羊膜来源干细胞在兔负重区修复骨软骨缺损的用途。选择24只3个月大的雄性或雌性新西兰白兔。将兔子随机分为三组,每组八只,根据接受实验性股内侧踝损伤的治疗方法,第一组接受植入了骨髓间充质干细胞(HAAM-BMSCs)植入的人脱细胞羊膜;第二组接受简单的HAAM植入,对照组未接受任何实验性病变或治疗。在手术后12和24周处死兔子(每个时间点4只兔子),并在显微镜下评估每只动物的软骨修复状态。 HAAM-BMSCs组的组织生长良好,覆盖的视野面积明显大于HAAM组(p <0.05)。 HAAM-BMSC组的胶原II阳性面积百分比显着高于HAAM组(p <0.05)。 HAAM-BMSC组通过甲苯胺蓝染色测定的软骨细胞数量高于HAAM组(p <0.05)。 HAAM和HAAM-BMSC组的Wakitani得分显着高于(差)(p <0.05),但HAAM-BMSC组的Wakitani得分显着低于HAAM组(p <0.05)。 HAAM-BMSC组的Wakitani得分在两个时间点之间没有差异。根据我们的发现,源自羊膜的干细胞在修复负重区域的软骨软骨缺损方面具有良好的治疗效果,并且受损区域的软骨细胞数量显着增加,从而加速了受损组织的修复。在兔子里

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