Cell-based tendon therapies with tenocytes as a cell source need effective tenocyte in vitro expansion before application for tendinopathies and tendon injuries. Supplementation of tenocyte culture with biomolecules that can boost proliferation and matrix synthesis is one viable option for supporting cell expansion. In this in vitro study, the impacts of ascorbic acid or PDGF-BB supplementation on rabbit Achilles tenocyte culture were studied. Namely, cell proliferation, changes in gene expression of several ECM and tendon markers (collagen I, collagen III, fibronectin, aggrecan, biglycan, decorin, ki67, tenascin-C, tenomodulin, Mohawk, α-SMA, MMP-2, MMP-9, TIMP1, and TIMP2) and ECM deposition (collagen I and fibronectin) were assessed. Ascorbic acid and PDGF-BB enhanced tenocyte proliferation, while ascorbic acid significantly accelerated the deposition of collagen I. Both biomolecules led to different changes in the gene expression profile of the cultured tenocytes, where upregulation of collagen I, Mohawk, decorin, MMP-2, and TIMP-2 was observed with ascorbic acid, while these markers were downregulated by PDGF-BB supplementation. Vice versa, there was an upregulation of fibronectin, biglycan and tenascin-C by PDGF-BB supplementation, while ascorbic acid led to a downregulation of these markers. However, both biomolecules are promising candidates for improving and accelerating the in vitro expansion of tenocytes, which is vital for various tendon tissue engineering approaches or cell-based tendon therapy.

译文

以肌腱细胞为细胞来源的基于细胞的肌腱疗法在用于肌腱病和肌腱损伤之前需要有效的肌腱细胞体外扩增。用可以促进增殖和基质合成的生物分子补充tenocyte培养物是支持细胞扩增的一种可行选择。在这项体外研究中,研究了抗坏血酸或pdgf-bb补充剂对兔跟腱细胞培养的影响。即细胞增殖,几种ECM和肌腱标记物 (胶原蛋白I,胶原蛋白III,纤连蛋白,聚集蛋白聚糖,双聚糖,decorin,ki67,tenascin-C,tenomodulin,Mohawk,α-SMA,MMP-2,MMP-9,TIMP1,和TIMP2) 和ECM沉积 (胶原蛋白I和纤连蛋白) 进行了评估。抗坏血酸和pdgf-bb增强了腱细胞的增殖,而抗坏血酸则显着加速了胶原蛋白I的沉积。两种生物分子导致培养的肌腱细胞的基因表达谱的不同变化,其中抗坏血酸观察到胶原蛋白I,莫霍克,decorin,MMP-2和TIMP-2的上调,而这些标记物通过补充pdgf-bb下调。反之亦然,通过补充pdgf-bb,纤连蛋白,双聚糖和腱生蛋白C上调,而抗坏血酸导致这些标记物下调。然而,这两种生物分子都是改善和加速肌腱细胞体外扩增的有希望的候选者,这对于各种肌腱组织工程方法或基于细胞的肌腱治疗至关重要。

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