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具有可逆光控刚度的聚丙烯酰胺水凝胶用于二维力学生物学研究

Polyacrylamide Hydrogels with Reversibly Photocontrolled Stiffness for 2D Mechanobiology.

作者信息

Abenojar Eric C, Minocha Ekta, Garcia Villatoro Emmanuel A, Kirinda Viraj C, Gupta Ashwani Kumar, Kang Boyeong, Cho Ik Sung, Zhang Vivian, Shin Jae-Won, Wertheim Jason A, Kalow Julia A

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States.

Department of Surgery, University of Arizona, Tucson, Arizona 85721, United States.

出版信息

ACS Appl Mater Interfaces. 2025 Jun 18;17(24):34997-35008. doi: 10.1021/acsami.5c02909. Epub 2025 Jun 6.

Abstract

We report the development of polyacrylamide hydrogels with photoswitchable stiffness using solely visible light and their application to cell culture. We have previously shown that azobenzenes can control the binding constants of dynamic covalent boronic ester bonds (. , , 5987; . , , 19969). Here we show that these photoswitchable dynamic bonds can be incorporated into polyacrylamide hydrogels that are stable for at least 10 days in buffer without changes in stiffness or photoresponse. Reversible stiffening and softening are achieved with green and blue irradiation, respectively. We prepared soft (877 ± 79 Pa) and stiff (8.4 ± 0.3 kPa) hydrogels that undergo rapid, photoreversible changes in modulus over at least 3 light irradiation cycles. studies show that the hydrogels are nontoxic to HepG2 cells. The cells undergo the expected changes in morphology, actin stress fiber formation, and Yes-associated protein (YAP) subcellular localization upon stiffening and softening the hydrogel substrate with visible light. These results validate the suitability of our visible-light-controlled hydrogel as a versatile platform for cellular mechanotransduction studies.

摘要

我们报道了仅使用可见光制备具有光开关刚度的聚丙烯酰胺水凝胶及其在细胞培养中的应用。我们之前已经表明,偶氮苯可以控制动态共价硼酸酯键的结合常数(……,5987;……,19969)。在此我们表明,这些可光开关的动态键可以掺入聚丙烯酰胺水凝胶中,该水凝胶在缓冲液中至少稳定10天,刚度和光响应均无变化。分别通过绿色和蓝色照射实现可逆的硬化和软化。我们制备了柔软(877±79帕斯卡)和坚硬(8.4±0.3千帕斯卡)的水凝胶,它们在至少3个光照射循环中经历了模量的快速、光可逆变化。研究表明,这些水凝胶对HepG2细胞无毒。当用可见光使水凝胶基质硬化和软化时,细胞在形态、肌动蛋白应力纤维形成和Yes相关蛋白(YAP)亚细胞定位方面发生了预期的变化。这些结果证实了我们的可见光控制水凝胶作为细胞机械转导研究通用平台的适用性。

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