纤维
细胞外基质
胶原纤维
多细胞生物
生物物理学
功能(生物学)
胶原纤维
基质(化学分析)
成核
生物
材料科学
细胞生物学
解剖
化学
生物化学
复合材料
基因
有机化学
作者
David Holmes,Yinhui Lu,Tobias Starborg,Karl E. Kadler
标识
DOI:10.1016/bs.ctdb.2018.02.004
摘要
Collagen fibrils are the major mechanical component in the extracellular matrix of a broad range of multicellular animals from echinoderms to vertebrates where they provide a stable framework for tissues. They form the key tension-resisting element of a complex fiber-composite system that has a tissue-specific hierarchical structure linked to mechanical demands. Remarkably, these tissues are self-maintaining and avoid fatigue failure over the lifetime of the animal. Collagen fibrils can assemble spontaneously from purified solutions of collagen molecules. In developing tissues, however, in addition to the intrinsic self-assembly properties, there is cellular machinery that regulates fibril nucleation, spatial orientation, and fibril size, according to the tissue and stage of development. The intricate mechanisms underlying the generation of a collagen fibril network of defined architecture and mechanical properties are now becoming apparent. Impairment of this system leads ultimately to mechanical failure or tissue fibrosis.
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