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Vascular Smooth Muscle Cell Durotaxis Depends on Substrate Stiffness Gradient Strength

机译:血管平滑肌细胞的屈曲性取决于基质刚度的梯度强度

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摘要

Mechanical compliance is emerging as an important environmental cue that can influence certain cell behaviors, such as morphology and motility. Recent in vitro studies have shown that cells preferentially migrate from less stiff to more stiff substrates; however, much of this phenomenon, termed durotaxis, remains ill-defined. To address this problem, we studied the morphology and motility of vascular smooth muscle cells on well-defined stiffness gradients. Baselines for cell spreading, polarization, and random motility on uniform gels with moduli ranging from 5 to 80 kPa were found to increase with increasing stiffness. Subsequent analysis of the behavior of vascular smooth muscle cells on gradient substrata (0–4 kPa/100 μm, with absolute moduli of 1–80 kPa) demonstrated that the morphology on gradient gels correlated with the absolute modulus. In contrast, durotaxis (evaluated quantitatively as the tactic index for a biased persistent random walk) and cell orientation with respect to the gradient both increased with increasing magnitude of gradient, but were independent of the absolute modulus. These observations provide a foundation for establishing quantitative relationships between gradients in substrate stiffness and cell response. Moreover, these results reveal common features of phenomenological cell response to chemotactic and durotactic gradients, motivating further mechanistic studies of how cells integrate and respond to multiple complex signals.
机译:机械顺应性正在作为一种重要的环境提示而出现,它可以影响某些细胞行为,例如形态和运动性。近期的体外研究表明,细胞优先从刚度较小的底物迁移到刚度较大的底物。但是,这种现象很多都称为不确定度。为了解决这个问题,我们在明确定义的刚度梯度上研究了血管平滑肌细胞的形态和运动能力。发现在模量范围为5至80 kPa的均匀凝胶上,细胞扩散,极化和随机运动的基线随硬度的增加而增加。随后对梯度基质(0–4 kPa / 100μm,绝对模量为1–80 kPa)上的血管平滑肌细胞行为的分析表明,梯度凝胶的形态与绝对模量相关。相比之下,相对于梯度的durotaxis(定量地评估为有偏向的持久性随机游走的战术指数)和细胞方向都随梯度的增加而增加,但与绝对模量无关。这些观察结果为建立底物硬度梯度与细胞反应之间的定量关系提供了基础。此外,这些结果揭示了现象学细胞对趋化和durotactic梯度的响应的共同特征,从而激发了关于细胞如何整合和响应多种复杂信号的进一步机理研究。

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