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Dynamic Manipulation of Hydrogels to Control Cell Behavior: A Review

机译:动态控制水凝胶控制细胞行为的研究进展

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摘要

For many tissue engineering applications and studies to understand how materials fundamentally affect cellular functions, it is important to have the ability to synthesize biomaterials that can mimic elements of native cell–extracellular matrix interactions. Hydrogels possess many properties that are desirable for studying cell behavior. For example, hydrogels are biocompatible and can be biochemically and mechanically altered by exploiting the presentation of cell adhesive epitopes or by changing hydrogel crosslinking density. To establish physical and biochemical tunability, hydrogels can be engineered to alter their properties upon interaction with external driving forces such as pH, temperature, electric current, as well as exposure to cytocompatible irradiation. Additionally, hydrogels can be engineered to respond to enzymes secreted by cells, such as matrix metalloproteinases and hyaluronidases. This review details different strategies and mechanisms by which biomaterials, specifically hydrogels, can be manipulated dynamically to affect cell behavior. By employing the appropriate combination of stimuli and hydrogel composition and architecture, cell behavior such as adhesion, migration, proliferation, and differentiation can be controlled in real time. This three-dimensional control in cell behavior can help create programmable cell niches that can be useful for fundamental cell studies and in a variety of tissue engineering applications.
机译:对于许多组织工程应用和研究来说,要了解材料如何从根本上影响细胞功能,重要的是要具有能够模仿天然细胞-细胞外基质相互作用元素的生物材料的能力。水凝胶具有许多研究细胞行为所需的特性。例如,水凝胶是生物相容性的,并且可以通过利用细胞粘附表位的呈现或通过改变水凝胶的交联密度来进行生化和机械改变。为了建立物理和生物化学的可调性,可以对水凝胶进行工程改造,使其在与外部驱动力(例如pH,温度,电流以及暴露于细胞相容性辐射)的相互作用下改变其性质。另外,可以将水凝胶工程化以响应细胞分泌的酶,例如基质金属蛋白酶和透明质酸酶。这篇综述详细介绍了可以动态操纵生物材料(特别是水凝胶)以影响细胞行为的不同策略和机制。通过采用刺激和水凝胶组成与结构的适当组合,可以实时控制细胞行为,如粘附,迁移,增殖和分化。这种对细胞行为的三维控制可帮助创建可编程的细胞壁ches,这些壁ni可用于基础细胞研究和各种组织工程应用。

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