自愈水凝胶
材料科学
机械生物学
聚丙烯酰胺
刚度
复合材料
生物物理学
纳米技术
高分子化学
解剖
生物
作者
Eric Abenojar,Ekta Minocha,Emmanuel Villatoro,Viraj C. Kirinda,Ashwani Gupta,Boyeong Kang,Ik Sung Cho,Vivian Zhang,Jae‐Won Shin,Jason A. Wertheim,Julia A. Kalow
标识
DOI:10.1021/acsami.5c02909
摘要
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 (Chem. Sci. 2018, 9, 5987; J. Am. Chem. Soc. 2020, 142, 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. In vitro 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.
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