自愈水凝胶
类有机物
细胞外基质
形态发生
化学
生物物理学
细胞生物学
体外
纳米技术
材料科学
生物化学
生物
高分子化学
基因
作者
Antonius Chrisnandy,Delphine Blondel,Saba Rezakhani,Nicolas Broguière,Matthias P. Lütolf
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2021-11-15
卷期号:21 (4): 479-487
被引量:158
标识
DOI:10.1038/s41563-021-01136-7
摘要
Epithelial organoids are most efficiently grown from mouse-tumour-derived, reconstituted extracellular matrix hydrogels, whose poorly defined composition, batch-to-batch variability and immunogenicity limit clinical applications. Efforts to replace such ill-defined matrices for organoid culture have largely focused on non-adaptable hydrogels composed of covalently crosslinked hydrophilic macromolecules. However, the excessive forces caused by tissue expansion in such elastic gels severely restrict organoid growth and morphogenesis. Chemical or enzymatic degradation schemes can partially alleviate this problem, but due to their irreversibility, long-term applicability is limited. Here we report a family of synthetic hydrogels that promote extensive organoid morphogenesis through dynamic rearrangements mediated by reversible hydrogen bonding. These tunable matrices are stress relaxing and thus promote efficient crypt budding in intestinal stem-cell epithelia through increased symmetry breaking and Paneth cell formation dependent on yes-associated protein 1. As such, these well-defined gels provide promising versatile matrices for fostering elaborate in vitro morphogenesis.
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