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Ex-vivo Tendon Repair Augmented with Bone Marrow Derived Mesenchymal Stem Cells Stimulated with Myostatin for Tenogenesis

机译:ex-体内肌腱修复随着骨髓衍生的间充质干细胞增强,用肌肉素刺激肌肉素用于胎生成

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Background: To investigate the effect of myostatin (GDF-8) stimulation of bone marrow derived mesenchymal stem cells (BMSCs) on tenogenesis in the setting of tendon repair. GDF-8 has demonstrated the ability to augment tenogenesis and we sought to identify if this effect could lead to the focused differentiation of pluripotential stem cells down a tenocyte lineage ex vivo. Methods: Cadaveric upper limb flexor tendons were harvested, decellularized and divided into 1 cm segments. Sutures seeded with stem cells were passed through tendon segments to simulate repair. The repaired tendons were then cultured either with or without myostatin for 3, 5, and 7 days. The experiment was also repeated with non-decellularized tendons for a total of 4 groups. The tendons were then evaluated for the expression of scleraxis and tenomodulin, two biomarkers for tendon. Results: Myostatin stimulation led to an increase in expression of tenomodulin and scleraxis at 5 and 7 days in both the decellularized and non-decellularized tendons. Myostatin increased the differentiation of BMSCs into tenocytes and/or led to the upregu-lation of tenomodulin and scleraxis production by the native tenocytes present within the non-decellularized tendons. Conclusions: The addition of myostatin to BMSCs leads to tenocyte differentiation as evidenced by the expression of tenocyte biomarkers, scleraxis and tenomodulin. This effect is maintained in an ex vivo tendon repair model suggestive that these cells survive the passage through tendon tissue and remain metabolically active.
机译:背景:探讨肌肉抑制素(GDF-8)肌肉衍生间充质干细胞(BMSCs)刺激在肌腱修复中的遗传结核中的影响。 GDF-8证明了增强遗传功能的能力,我们试图确定这种效果是否可能导致多能干细胞的聚焦分化在腱鞘中的聚焦谱系。方法:收获尸体上肢屈肌肌腱,脱细胞,分为1cm。用干细胞播种的缝合线通过肌腱段来模拟修复。然后在3,5和7天内使用或不含肌肉素培养修复的肌腱。该实验还用非脱细胞肌腱重复,共4组。然后评价肌腱的表达,用于燃气和腱霉素,两种生物标志物用于肌腱。结果:Myostatin刺激导致在脱细胞和非脱细胞肌腱中的5和7天内替代霉素和辛劳皂组表达的增加。 Myostatin将BMSCs分化为胞胎细胞和/或导致非脱细胞肌腱内的天然代肌细胞的替代载蛋白和辛胆素的屈服度的屈服。结论:向BMSC添加肌肉抑制素导致胞胎细胞分化,这证明了胞胎生物标志物,辛辣生物调节蛋白的表达。这种效果在前体内肌腱修复模型中暗示,这些细胞通过肌腱组织存活并保持代谢活性。

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