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Fabrication of Hydrogels with Steep Stiffness Gradients for Studying Cell Mechanical Response

机译:水凝胶陡刚度梯度的制造用于研究细胞力学响应

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摘要

Many fundamental cell processes, such as angiogenesis, neurogenesis and cancer metastasis, are thought to be modulated by extracellular matrix stiffness. Thus, the availability of matrix substrates having well-defined stiffness profiles can be of great importance in biophysical studies of cell-substrate interaction. Here, we present a method to fabricate biocompatible hydrogels with a well defined and linear stiffness gradient. This method, involving the photopolymerization of films by progressively uncovering an acrylamide/bis-acrylamide solution initially covered with an opaque mask, can be easily implemented with common lab equipment. It produces linear stiffness gradients of at least 115 kPa/mm, extending from ∼1 kPa to 240 kPa (in units of Young's modulus). Hydrogels with less steep gradients and narrower stiffness ranges can easily be produced. The hydrogels can be covalently functionalized with uniform coatings of proteins that promote cell adhesion. Cell spreading on these hydrogels linearly correlates with hydrogel stiffness, indicating that this technique effectively modifies the mechanical environment of living cells. This technique provides a simple approach that produces steeper gradients, wider rigidity ranges, and more accurate profiles than current methods.
机译:许多基本的细胞过程,例如血管生成,神经发生和癌症转移,被认为是由细胞外基质的硬度调节的。因此,具有良好定义的刚度分布的基质基质的可用性在细胞-基质相互作用的生物物理研究中可能非常重要。在这里,我们提出一种方法来制造具有良好定义的线性刚度梯度的生物相容性水凝胶。通过逐步发现最初用不透明掩膜覆盖的丙烯酰胺/双丙烯酰胺溶液,该方法涉及薄膜的光聚合,可以使用常规实验室设备轻松实施。它产生的线性刚度梯度至少为115 kPa / mm,从〜1 kPa扩展至240 kPa(以杨氏模量为单位)。具有较小陡峭梯度和较窄刚性范围的水凝胶可以容易地生产。可以用促进细胞粘附的均匀的蛋白质涂层将水凝胶共价官能化。细胞在这些水凝胶上的扩散与水凝胶的硬度线性相关,表明该技术有效地改变了活细胞的机械环境。该技术提供了一种简单的方法,与当前方法相比,该方法可以产生更陡峭的梯度,更宽的刚度范围和更精确的轮廓。

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