骨关节炎
软骨
软骨细胞
材料科学
生物医学工程
刺激
自愈水凝胶
下调和上调
钕磁铁
医学
细胞生物学
癌症研究
内科学
病理
化学
生物
解剖
基因
高分子化学
替代医学
物理
量子力学
生物化学
磁铁
作者
H. W. Liu,Xiangyi Wu,Rui Liu,Weijun Wang,Dagan Zhang,Qing Jiang
标识
DOI:10.1016/j.bioactmat.2023.10.030
摘要
Osteoarthritis (OA) is a prevalent joint disease primarily induced by overstrain, leading to disability and significantly impacting patients' quality of life. However, current OA studies lack an ideal in vitro model, which can recapitulate the high peripheral strain of the joint and precisely model the disease onset process. In this paper, we propose a novel cartilage-on-a-chip platform that incorporates a biohybrid hydrogel comprising Neodymium (NdFeB)/Poly-GelMA-HAMA remote magneto-control hydrogel film. This platform facilitates chondrocyte culture and stress loading, enabling the investigation of chondrocytes under various stress stimuli. The Neodymium (NdFeB)/Poly-GelMA-HAMA hydrogel film exhibits magneto-responsive shape-transition behavior, further dragging the chondrocytes cultured in hydrogels under magnetic stimulation. It was investigated that inflammation-related genes and proteins in chondrocytes are changed with mechanical stress stimulation in the cartilage-on-a-chip. Especially, MMP-13 and the proportion of collagen secretion are upregulated, showing a phenotype similar to that of real human osteoarthritis. Therefore, we believed that this cartilage-on-a-chip platform provides a desired in vitro model for osteoarthritis, which is of great significance in disease research and drug development.
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