Lee Hyun Ji, Seo Yerang, Kim Hyun Seung, Lee Jae Won, Lee Kuen Yong
Department of Bioengineering, Hanyang University, Seoul 04763, Republic of Korea.
Institute of Nano Science and Technology, Hanyang University, Seoul 04763, Republic of Korea.
ACS Omega. 2020 Jun 17;5(25):15567-15575. doi: 10.1021/acsomega.0c01763. eCollection 2020 Jun 30.
Modulation of the viscoelastic properties of hydrogels is critical in tissue engineering applications. In the present study, a hyaluronate-alginate hybrid (HAH) was synthesized by introducing alginate to the hyaluronate backbone with varying molecular weights (700-2500 kDa), and HAH hydrogels were prepared in the presence of calcium ions at the same cross-linking density. The storage shear moduli of the HAH hydrogels increased with the concomitant increase in the molecular weight of hyaluronate in the HAH polymer. The HAH hydrogels were also modified with arginine-glycine-aspartic acid (RGD) and histidine-alanine-valine (HAV) peptides to enhance cell-matrix and cell-cell interactions, respectively. The chondrogenic differentiation of ATDC5 cells encapsulated within the HAH hydrogels was enhanced with the increase in the storage shear moduli of the gels as well as . This approach of regulating the viscoelastic properties of hydrogels using polymers of varying molecular weights at the same cross-linking density may prove to be useful in various tissue engineering applications including cartilage regeneration.
水凝胶粘弹性性质的调节在组织工程应用中至关重要。在本研究中,通过将藻酸盐引入到不同分子量(700 - 2500 kDa)的透明质酸主链上来合成透明质酸 - 藻酸盐杂化物(HAH),并在相同交联密度下于钙离子存在的情况下制备HAH水凝胶。HAH水凝胶的储能剪切模量随着HAH聚合物中透明质酸分子量的增加而增加。HAH水凝胶还用精氨酸 - 甘氨酸 - 天冬氨酸(RGD)和组氨酸 - 丙氨酸 - 缬氨酸(HAV)肽进行了修饰,分别以增强细胞 - 基质和细胞 - 细胞相互作用。封装在HAH水凝胶中的ATDC5细胞的软骨形成分化随着凝胶储能剪切模量的增加而增强。这种在相同交联密度下使用不同分子量聚合物调节水凝胶粘弹性性质的方法可能在包括软骨再生在内的各种组织工程应用中证明是有用的。