粘弹性
自愈水凝胶
刚度
材料科学
微尺度化学
细胞外基质
变硬
纳米技术
复合材料
化学
高分子化学
数学
生物化学
数学教育
作者
Yuhang Zhang,Zhuofan Wang,Qingqing Sun,Qian Li,Shaohui Li,Xiaomeng Li
出处
期刊:Materials
[MDPI AG]
日期:2023-07-21
卷期号:16 (14): 5161-5161
被引量:15
摘要
The extracellular matrix (ECM) of natural cells typically exhibits dynamic mechanical properties (viscoelasticity and dynamic stiffness). The viscoelasticity and dynamic stiffness of the ECM play a crucial role in biological processes, such as tissue growth, development, physiology, and disease. Hydrogels with viscoelasticity and dynamic stiffness have recently been used to investigate the regulation of cell behavior and fate. This article first emphasizes the importance of tissue viscoelasticity and dynamic stiffness and provides an overview of characterization techniques at both macro- and microscale. Then, the viscoelastic hydrogels (crosslinked via ion bonding, hydrogen bonding, hydrophobic interactions, and supramolecular interactions) and dynamic stiffness hydrogels (softening, stiffening, and reversible stiffness) with different crosslinking strategies are summarized, along with the significant impact of viscoelasticity and dynamic stiffness on cell spreading, proliferation, migration, and differentiation in two-dimensional (2D) and three-dimensional (3D) cell cultures. Finally, the emerging trends in the development of dynamic mechanical hydrogels are discussed.
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