Kerch Garry
Faculty of Materials Science and Applied Chemistry, Riga Technical University, P. Valdena 3, 1048 Riga, Latvia.
Gels. 2023 Sep 16;9(9):754. doi: 10.3390/gels9090754.
Hydrogels can be considered as mimics of the extracellular matrix (ECM). Through integrins, the cytoskeleton is connected to the ECM, and cytoskeleton tension depends on ECM stiffness. A number of age-related diseases depend on cellular processes related to cytoskeleton function. Some examples of cancer initiation and progression and heart disease in relation to ECM stiffness have been analyzed. The incorporation of rigid particles into the ECM can increase ECM stiffness and promote the formation of internal residual stresses. Water migration, changes in water binding energy to biomactomolecules, and changes in the state of water from tightly bound water to free and loosely bound water lead to changes in the stiffness of the ECM. Cardiac tissue engineering, ECM stiffness and cancer, the equivalence of ECM stiffness, oxidative stress, inflammation, multi-layer polyelectrolyte complex hydrogels and bioprinting, residual internal stresses, viscoelastic hydrogels, hydrogel nanocomposites, and the effect of water have been reported. Special attention has been paid to the role of bound water and internal stresses in ECM stiffness. The risks related to rigid particle incorporation into the ECM have been discussed. The potential effect of polyphenols, chitosan, and chitosan oligosaccharide on ECM stiffness and the potential for anti-TNF-α and anti-NF-κB therapies have been discussed.
水凝胶可被视为细胞外基质(ECM)的模拟物。通过整合素,细胞骨架与ECM相连,且细胞骨架张力取决于ECM的硬度。许多与年龄相关的疾病取决于与细胞骨架功能相关的细胞过程。已分析了一些与ECM硬度相关的癌症发生发展及心脏病的实例。将刚性颗粒掺入ECM可增加ECM硬度并促进内部残余应力的形成。水迁移、水与生物大分子结合能的变化以及水从紧密结合水转变为自由和松散结合水的状态变化会导致ECM硬度改变。已报道了心脏组织工程、ECM硬度与癌症、ECM硬度的等效性、氧化应激、炎症、多层聚电解质复合水凝胶与生物打印、残余内应力、粘弹性水凝胶、水凝胶纳米复合材料以及水的作用。已特别关注结合水和内应力在ECM硬度中的作用。已讨论了将刚性颗粒掺入ECM的相关风险。已讨论了多酚、壳聚糖和壳寡糖对ECM硬度的潜在影响以及抗TNF-α和抗NF-κB疗法的潜力。