Recently, it has been recognized that natural extracellular matrix (ECM) and tissues are viscoelastic, while only elastic properties have been investigated in the past. How the viscoelastic matrix regulates stem cell patterning is critical for cell-ECM mechano-transduction. Here, this study fabricated different methacrylated hyaluronic acid (HA) hydrogels using covalent cross-linking, consisting of two gels with similar elasticity (stiffness) but different viscoelasticity, and two gels with similar viscoelasticity but different elasticity (stiffness). Meanwhile, a second set of dual network hydrogels are fabricated containing both covalent and coordinated cross-links. Human spinal cord organoid (hSCO) patterning in HA hydrogels and co-culture with isogenic human blood vessel organoids (hBVOs) are investigated. The viscoelastic hydrogels promote regional hSCO patterning compared to the elastic hydrogels. More viscoelastic hydrogels can promote dorsal marker expression, while softer hydrogels result in higher interneuron marker expression. The effects of viscoelastic properties of the hydrogels become more dominant than the stiffness effects in the co-culture of hSCOs and hBVOs. In addition, more viscoelastic hydrogels can lead to more Yes-associated protein nuclear translocation, revealing the mechanism of cell-ECM mechano-transduction. This research provides insights into viscoelastic behaviors of the hydrogels during human organoid patterning with ECM-mimicking in vitro microenvironments for applications in regenerative medicine.
Viscoelasticity of Hyaluronic Acid Hydrogels Regulates Human Pluripotent Stem Cell-derived Spinal Cord Organoid Patterning and Vascularization.
透明质酸水凝胶的粘弹性调节人类多能干细胞衍生的脊髓类器官的模式形成和血管化
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作者:Chen Xingchi, Liu Chang, McDaniel Garrett, Zeng Olivia, Ali Jamel, Zhou Yi, Wang Xueju, Driscoll Tristan, Zeng Changchun, Li Yan
| 期刊: | Advanced Healthcare Materials | 影响因子: | 9.600 |
| 时间: | 2024 | 起止号: | 2024 Dec;13(32):e2402199 |
| doi: | 10.1002/adhm.202402199 | 种属: | Human |
| 研究方向: | 发育与干细胞、细胞生物学 | ||
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