Leni and Peter W. May Department of Orthopedics, Icahn School of Medicine at Mount Sinai , New York, NY, USA.
Departments of Orthopedic Surgery, Albert Einstein College of Medicine , Bronx, NY, USA ; Radiation Oncology, Albert Einstein College of Medicine , Bronx, NY, USA.
Bone Res. 2015 Oct 6;3:15015. doi: 10.1038/boneres.2015.15. eCollection 2015.
Mesenchymal stem cell (MSC)-based treatments have shown promise for improving tendon healing and repair. MSCs have the potential to differentiate into multiple lineages in response to select chemical and physical stimuli, including into tenocytes. Cell elongation and cytoskeletal tension have been shown to be instrumental to the process of MSC differentiation. Previous studies have shown that inhibition of stress fiber formation leads MSCs to default toward an adipogenic lineage, which suggests that stress fibers are required for MSCs to sense the environmental factors that can induce differentiation into tenocytes. As the Rho/ROCK signal transduction pathway plays a critical role in both stress fiber formation and in cell sensation, we examined whether the activation of this pathway was required when inducing MSC tendon differentiation using rope-like silk scaffolds. To accomplish this, we employed a loss-of-function approach by knocking out ROCK, actin and myosin (two other components of the pathway) using the specific inhibitors Y-27632, Latrunculin A and blebbistatin, respectively. We demonstrated that independently disrupting the cytoskeleton and the Rho/ROCK pathway abolished the expression of tendon differentiation markers and led to a loss of spindle morphology. Together, these studies suggest that the tension that is generated by MSC elongation is essential for MSC teno-differentiation and that the Rho/ROCK pathway is a critical mediator of tendon differentiation on rope-like silk scaffolds.
基于间充质干细胞(MSC)的治疗方法已显示出改善肌腱愈合和修复的潜力。MSCs 具有在响应特定化学和物理刺激(包括成纤维细胞)的情况下分化为多个谱系的潜力。细胞伸长和细胞骨架张力已被证明对 MSC 分化过程至关重要。先前的研究表明,抑制应力纤维形成会导致 MSC 默认向脂肪生成谱系分化,这表明应力纤维是 MSC 感知可诱导其分化为成纤维细胞的环境因素所必需的。由于 Rho/ROCK 信号转导通路在应力纤维形成和细胞感知中都起着关键作用,我们研究了在使用绳状丝支架诱导 MSC 肌腱分化时,该通路的激活是否是必需的。为了实现这一目标,我们采用了一种功能丧失的方法,分别使用特异性抑制剂 Y-27632、Latrunculin A 和 blebbistatin 敲除 ROCK、肌动蛋白和肌球蛋白(该通路的另外两个组成部分)。我们证明,独立破坏细胞骨架和 Rho/ROCK 通路会消除肌腱分化标志物的表达,并导致纺锤体形态的丧失。总之,这些研究表明,MSC 伸长产生的张力对于 MSC 的肌腱分化是必需的,并且 Rho/ROCK 通路是绳状丝支架上肌腱分化的关键介质。