自愈水凝胶
类有机物
材料科学
纳米技术
微尺度化学
芯片上器官
组织工程
细胞外基质
计算机科学
生物医学工程
生物
细胞生物学
微流控
工程类
数学
数学教育
高分子化学
作者
Haitao Liu,Yaqing Wang,Kangli Cui,Yaqiong Guo,Xu Zhang,Jianhua Qin
标识
DOI:10.1002/adma.201902042
摘要
Abstract Significant advances in materials, microscale technology, and stem cell biology have enabled the construction of 3D tissues and organs, which will ultimately lead to more effective diagnostics and therapy. Organoids and organs‐on‐a‐chip (OOC), evolved from developmental biology and bioengineering principles, have emerged as major technological breakthrough and distinct model systems to revolutionize biomedical research and drug discovery by recapitulating the key structural and functional complexity of human organs in vitro. There is growing interest in the development of functional biomaterials, especially hydrogels, for utilization in these promising systems to build more physiologically relevant 3D tissues with defined properties. The remarkable properties of defined hydrogels as proper extracellular matrix that can instruct cellular behaviors are presented. The recent trend where functional hydrogels are integrated into organoids and OOC systems for the construction of 3D tissue models is highlighted. Future opportunities and perspectives in the development of advanced hydrogels toward accelerating organoids and OOC research in biomedical applications are also discussed.
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