生物正交化学
自愈水凝胶
机械生物学
化学
体内
压力(语言学)
整合素
组织工程
细胞内
共价键
细胞外
点击化学
再生医学
生物材料
纳米技术
叠氮化物
细胞
生物物理学
生物医学工程
细胞粘附
机械转化
再生(生物学)
细胞外基质
离体
细胞生物学
作者
Natsumi Ueda,Hayato Okazaki,Akihiro Mikuma,Ayane Kunieda,Soma Kawashima,Takeru Torii,Keiko Kawauchi,Masatake Matsuoka,Tomohiro Onodera,Norimasa Iwasaki,Koji Nagahama
标识
DOI:10.1038/s41467-025-64656-9
摘要
Integrating the latest insights from mechanobiology into tissue engineering could lead to innovative technologies. Here we show a method to effectively elicit the regenerative response of transplanted cells by utilizing mechanical stress generated in vivo. The essential feature of our method is that it does not use specific ligands for the vital mechanosensor integrins to mechanically activate them. In our method, azide groups are introduced into the integrin, and the hydrogel is modified with cyclooctyne (DBCO) groups. Thus, bioorthogonal click reaction between the azide groups and the DBCO groups forms direct, stable, irreversible covalent bonds between the cellular integrin and the hydrogel. We demonstrate that the integrin-hydrogel linkage is in ON state regardless of the intensity of the stress, the cell cycle, or the extracellular environment, so that mechanical stress is rapidly and reliably transmitted to the nucleus through the linkage in vivo, resulting in regenerative response of the transplanted cells.
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