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首页> 外文期刊>Cytotherapy >Stimulation of chondrocytes in vitro by gene transfer with plasmids coding for epidermal growth factor (hEGF) and basic fibroblast growth factor (bFGF)
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Stimulation of chondrocytes in vitro by gene transfer with plasmids coding for epidermal growth factor (hEGF) and basic fibroblast growth factor (bFGF)

机译:通过编码表皮生长因子(hEGF)和碱性成纤维细胞生长因子(bFGF)的质粒的基因转移体外刺激软骨细胞

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摘要

Background Human epidermal growth factor (hEGF) and basic fibroblast growth factor ( bFGF) influence critical characteristics of chondrocytes. The effects on metabolism and differentiation were evaluated following transfection using specific plasmids coding for both cytokines.Methods Chondrocytes were isolated from femoral head cartilage of patients undergoing a hip arthroplasty for femoral neck fracture. Following collagenase-digestion, cells were cultured in monolayers, and cell proliferation, glucosaminoglycan-production and collagen type II expression were monitored 10 days after isolation.Results Addition of recombinant hEGF and bFGF resulted in a significant increase in cell proliferation and glucosaminoglycan production. Chondrocytes were transfected with vectors coding for either hEGF or bFGF and the production of these proteins was measured in supernatants by ELISA. Expression kinetics showed different patterns: hEGF was detectable 2.5 days following transfection and peaked at day 5.5, whereas bFGF-production reached its maximum 1.5 days after transfection, declining thereafter. Chondrocytes endogenously produced significant amounts of bFGF within 5 days following isolation. Proliferation of hEGF-transfected cells increased up to 81%; bFGF-transfection caused an increase up to 76%. Similarly, glucosaminoglycan-production was enhanced up to 120% by hEGF-transfection and 37% by bFGF transfection, respectively. Collagen type II production decreased following transfection with both plasmids.Discussion Temporary in vitro gene transfer of the growth factors hEGF and bFGF provides a method to stimulate chondrocyte proliferation and induces signs of dedifferentiation, which would limit a reasonable clinical application.
机译:背景技术人表皮生长因子(hEGF)和碱性成纤维细胞生长因子(bFGF)影响软骨细胞的关键特性。转染后,使用编码两种细胞因子的特异性质粒评估其对代谢和分化的影响。方法从髋关节置换术治疗股骨颈骨折的患者的股骨头软骨中分离软骨细胞。胶原酶消化后,将细胞单层培养,并在分离后10天监测细胞增殖,葡糖胺聚糖的产生和II型胶原的表达。结果添加重组hEGF和bFGF导致细胞增殖和葡糖胺聚糖的产生显着增加。用编码hEGF或bFGF的载体转染软骨细胞,并通过ELISA在上清液中测量这些蛋白质的产生。表达动力学表现出不同的模式:转染后2.5天可检测到hEGF,并在5.5天达到峰值,转染后1.5天bFGF产量达到最大值,此后下降。分离后5天内,软骨细胞内源性产生大量bFGF。 hEGF转染的细胞的增殖增加高达81%。 bFGF转染导致增加高达76%。类似地,通过hEGF-转染将葡糖胺聚糖的产量分别提高至120%和通过bFGF转染分别提高至37%。两种质粒均转染后,II型胶原的产量下降。讨论生长因子hEGF和bFGF的体外基因临时转移提供了一种刺激软骨细胞增殖并诱导去分化迹象的方法,这将限制合理的临床应用。

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