首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Improved tissue repair in articular cartilage defects in vivo by rAAV-mediated overexpression of human fibroblast growth factor 2.
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Improved tissue repair in articular cartilage defects in vivo by rAAV-mediated overexpression of human fibroblast growth factor 2.

机译:通过rAAV介导的人类成纤维细胞生长因子2的过表达改善体内关节软骨缺损的组织修复。

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摘要

Therapeutic gene transfer into articular cartilage is a potential means to stimulate reparative activities in tissue lesions. We previously demonstrated that direct application of recombinant adeno-associated virus (rAAV) vectors to articular chondrocytes in their native matrix in situ as well as sites of tissue damage allowed for efficient and sustained reporter gene expression. Here we test the hypothesis that rAAV-mediated overexpression of fibroblast growth factor 2 (FGF-2), one candidate for enhancing the repair of cartilage lesions, would lead to the production of a biologically active factor that would facilitate the healing of articular cartilage defects. In vitro, FGF-2 production from an rAAV-delivered transgene was sufficient to stimulate chondrocyte proliferation over a prolonged period of time. In vivo, application of the therapeutic vector significantly improved the overall repair, filling, architecture, and cell morphology of osteochondral defects in rabbit knee joints. Differences in matrix synthesis were also observed, although not to the point of statistical significance. This process may further benefit from cosupplementation with other factors. These results provide a basis for rAAV application to sites of articular cartilage damage to deliver agents that promote tissue repair.
机译:治疗性基因转移到关节软骨中是刺激组织损伤中修复活性的潜在手段。我们以前证明重组腺相关病毒(rAAV)载体直接应用到其天然基质中的关节软骨细胞的原位以及组织损伤的位置允许有效和持续的报告基因表达。在这里,我们检验了一种假设,即rAAV介导的成纤维细胞生长因子2(FGF-2)的过表达,一种增强软骨损伤修复的候选物,将导致产生生物活性因子,从而促进关节软骨缺损的愈合。 。在体外,从rAAV传递的转基因中产生FGF-2足以刺激软骨细胞在较长时间内增殖。在体内,治疗载体的应用显着改善了兔膝关节骨软骨缺损的整体修复,充盈,结构和细胞形态。尽管没有达到统计学意义,也观察到了基质合成的差异。该过程可能会进一步受益于其他因素的补充。这些结果提供了rAAV应用于关节软骨损伤部位以递送促进组织修复的试剂的基础。

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