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PEG-Phosphorylcholine Hydrogels As Tunable and Versatile Platforms for Mechanobiology

机译:PEG-磷酸胆碱水凝胶作为力学生物学的可调平台和多功能平台

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We report here the synthesis of a new class of hydrogels with an extremely wide range of mechanical properties suitable for cell studies. Mechanobiology has emerged as an important field in bioengineering, in part due to the development of synthetic polymer gels and fibrous protein biomaterials to control and quantify how cells sense and respond to mechanical forces in their microenvironment. To address the problem of limited availability of biomaterials, in terms of both mechanical range and optical clarity, we have prepared hydrogels that combine poly(ethylene glycol) (PEG) and phosphorylcholine (PC) zwitterions. Our goal was to create a hydrogel platfoi-m that exceeds the range of Young's moduli reported for similar hydrogels, while being simple to synthesize and manipulate. The Young's modulus of these "PEG-PC" hydrogels can be tuned over 4 orders of magnitude, much,greater than commonly used hydrogels such as PEG-diaciylate, PEG-dimethacrylate, and pplyacrylaniide, with smaller average mesh sizes and optical clarity. We prepared PEG-PC hydrogels to study how substrate mechanical properties influence cell morphology, focal adhesion structure, and proliferation across multiple mammalian cell lines, as a proof of concept. These novel PEG-PC biomaterials represent a new and useiul class of mechanically tunable hydrogels for mechanobiology.
机译:我们在这里报告了一种新型的水凝胶的合成,该水凝胶具有非常广泛的机械特性,适用于细胞研究。机械生物学已成为生物工程领域的一个重要领域,部分原因是合成聚合物凝胶和纤维蛋白生物材料的发展,以控制和量化细胞在微环境中如何感测和响应机械力。为了解决生物材料的可用性有限的问题,就机械范围和光学清晰度而言,我们制备了结合了聚乙二醇(PEG)和磷酸胆碱(PC)两性离子的水凝胶。我们的目标是创建一种水凝胶平台,该平台超过类似水凝胶报告的杨氏模量范围,同时易于合成和操作。这些“ PEG-PC”水凝胶的杨氏模量可以调整到4个数量级以上,比常用的水凝胶(例如PEG-二苯甲酸酯,PEG-二甲基丙烯酸酯和pplyacrylaniide)大得多,平均筛孔尺寸较小,并且光学透明度高。我们制备了PEG-PC水凝胶,以研究底物的机械性能如何影响细胞形态,粘着结构和跨多种哺乳动物细胞系的增殖,以此作为概念证明。这些新颖的PEG-PC生物材料代表了用于机械生物学的新型且有用的机械可调水凝胶。

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