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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Regeneration of Defects in Articular Cartilage in Rat Knee Joints by CCN2 (Connective Tissue Growth Factor).
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Regeneration of Defects in Articular Cartilage in Rat Knee Joints by CCN2 (Connective Tissue Growth Factor).

机译:CCN2(结缔组织生长因子)在大鼠膝关节的关节软骨缺损中再生。

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摘要

CTGF/CCN2, a hypertrophic chondrocyte-specific gene product, possessed the ability to repair damaged articular cartilage in two animal models, which were experimental osteoarthritis and full-thickness defects of articular cartilage. These findings suggest that CTGF/CCN2 may be useful in regeneration of articular cartilage. INTRODUCTION: Connective tissue growth factor (CTGF)/CCN2 is a unique growth factor that stimulates the proliferation and differentiation, but not hypertrophy, of articular chondrocytes in vitro. The objective of this study was to investigate the therapeutic use of CTGF/CCN2. MATERIALS AND METHODS: The effects of recombinant CTGF/CCN2 (rCTGF/CCN2) on repair of damaged cartilage were evaluated by using both the monoiodoacetic acid (MIA)-induced experimental rat osteoarthritis (OA) model and full-thickness defects of rat articular cartilage in vivo. RESULTS: In the MIA-induced OA model, quantitative real-time RT-PCR assays showed a significant increase in the level of CTGF/CCN2 mRNA, and immunohistochemical analysis and in situ hybridization revealed that the clustered chondrocytes, in which clustering indicates an attempt to repair the damaged cartilage, produced CTGF/CCN2. Therefore, CTGF/CCN2 was suspected to play critical roles in cartilage repair. In fact, a single injection of rCTGF/CCN2 incorporated in gelatin hydrogel (rCTGF/CCN2-hydrogel) into the joint cavity of MIA-induced OA model rats repaired their articular cartilage to the extent that it became histologically similar to normal articular cartilage. Next, to examine the effect of rCTGF/CCN2 on the repair of articular cartilage, we created defects (2 mm in diameter) on the surface of articular cartilage in situ and implanted rCTGF/CCN2-hydrogel or PBS-hydrogel therein with collagen sponge. In the group implanted with rCTGF/CCN2-hydrogel collagen, new cartilage filled the defect 4 weeks postoperatively. In contrast, only soft tissue repair occurred when the PBS-hydrogel collagen was implanted. Consistent with these in vivo effects, rCTGF/CCN2 enhanced type II collagen and aggrecan mRNA expression in mouse bone marrow-derived stromal cells and induced chondrogenesis in vitro. CONCLUSION: These findings suggest the utility of CTGF/CCN2 in the regeneration of articular cartilage.
机译:CTGF / CCN2是一种肥大的软骨细胞特异性基因产物,在两种动物模型中均具有修复受损软骨的能力,这两种动物分别是实验性骨关节炎和关节软骨的全层缺损。这些发现提示CTGF / CCN2可能在关节软骨再生中有用。引言:结缔组织生长因子(CTGF)/ CCN2是一种独特的生长因子,在体外刺激关节软骨细胞的增殖和分化,但不刺激肥大。这项研究的目的是研究CTGF / CCN2的治疗用途。材料与方法:使用单碘乙酸(MIA)诱导的实验性大鼠骨关节炎(OA)模型和大鼠关节软骨全层缺损,评估了重组CTGF / CCN2(rCTGF / CCN2)对受损软骨修复的作用。体内。结果:在MIA诱导的OA模型中,定量实时RT-PCR分析显示CTGF / CCN2 mRNA的水平显着增加,免疫组织化学分析和原位杂交表明,聚集的软骨细胞在其中聚集,表明存在尝试为修复受损的软骨,生产了CTGF / CCN2。因此,CTGF / CCN2被怀疑在软骨修复中起关键作用。实际上,在MIA诱导的OA模型大鼠的关节腔中单次注射掺入明胶水凝胶的rCTGF / CCN2(rCTGF / CCN2-水凝胶)可将其关节软骨修复到组织学上与正常关节软骨相似的程度。接下来,为了检查rCTGF / CCN2对关节软骨修复的作用,我们在关节软骨表面原位创建了缺陷(直径2毫米),并在其中植入了rCTGF / CCN2-水凝胶或PBS-水凝胶和胶原蛋白海绵。在植入rCTGF / CCN2-水凝胶胶原蛋白的组中,术后4周新的软骨填补了缺损。相反,当植入PBS-水凝胶胶原蛋白时,仅发生了软组织修复。与这些体内作用一致,rCTGF / CCN2增强了小鼠骨髓源性基质细胞中的II型胶原蛋白和聚集蛋白聚糖mRNA表达,并在体外诱导了软骨形成。结论:这些发现提示CTGF / CCN2在关节软骨再生中的实用性。

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