细胞外基质
应力松弛
基质金属蛋白酶
劈理(地质)
生物物理学
基质(化学分析)
焦点粘着
放松(心理学)
化学
细胞粘附
粘附
降级(电信)
细胞生物学
材料科学
细胞
生物化学
生物
复合材料
神经科学
计算机科学
电信
蠕动
断裂(地质)
作者
Badri Narayanan Narasimhan,Stephanie I. Fraley
标识
DOI:10.1073/pnas.2416771122
摘要
In native extracellular matrices (ECM), cells utilize matrix metalloproteinases (MMPs) to degrade and remodel their microenvironment. Accordingly, synthetic matrices have been engineered to permit MMP-mediated cleavage, facilitating cell spreading, migration, and interactions. However, the interplay between matrix degradability and mechanical properties remains underexplored. We hypothesized that MMP activity induces immediate mechanical alterations in the ECM, which are subsequently detected by cells. We observed that both fibrillar collagen and synthetic degradable matrices exhibit enhanced stress relaxation following MMP exposure. Cells responded to these variations in relaxation by modulating their spreading and focal adhesions. Furthermore, we demonstrated that stress relaxation and cell spreading can be precisely controlled through the rational design of matrix degradability. These findings establish a fundamental link between matrix degradability and stress relaxation, with potential implications for a broad spectrum of biological applications.
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