自愈水凝胶
泊洛沙姆
材料科学
软骨发生
间充质干细胞
软骨
细胞外基质
透明质酸
再生(生物学)
肿胀 的
环糊精
生物医学工程
化学工程
生物物理学
聚合物
化学
高分子化学
复合材料
共聚物
有机化学
解剖
细胞生物学
生物化学
工程类
生物
医学
作者
Hooman Fallahi,Hamed Daemi,Fatemeh Bagheri,Mohamadreza Baghaban Eslaminejad
标识
DOI:10.1088/1748-605x/ac8bbd
摘要
Owing to the similarity of hydrogels to cartilage extracellular matrix, they have been extensively utilized in the chondral lesions. Moreover, their tunable administration properties are desirable for reducing injuries in lesion sites. Generally, injectable hydrogels are mechanically weak, requiring some modifications for being used as a cell carrier in place of articular cartilage. In this study, a combination ofβ-cyclodextrin-grafted alginate (Alg-β-CD) and pluronic-amine with multiple physical crosslinking was used for the first time. Supramolecular interactions, including electrostatic forces, host-guest interaction, and hydrophobic interaction with increasing temperature maintain injectability of hydrogels while these interactions boost mechanical properties to the extent that shear modulus surpassed 40 kPa. Vacantβ-CD cavities in conjunction with gel network were exploited for kartogenin (KGN) loading. All groups had gel time of less than one minute and gel temperature was 28 °C. No toxic effect of hydrogels on encapsulated cells was observed. While the optimum combination of polymers provided a sustainable release for KGN, it also extended thein vitrodegradation time of hydrogels from six days to two weeks. KGN facilitated encapsulated mesenchymal stem cells differentiation towards chondrocytes. Taken together, the synthesized hydrogel proved to be a promising candidate for being utilized in cartilage regeneration.
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