钙化
生物矿化
纳米技术
矿化(土壤科学)
骨脱钙
材料科学
碱性磷酸酶
矿化组织
原细胞
组织工程
化学
生物医学工程
化学工程
生物化学
膜
复合材料
酶
有机化学
牙科
工程类
医学
病理
牙本质
氮气
作者
Rui Sun,Zhuping Yin,Molly M. Stevens,Mei Li,Stephen Mann
标识
DOI:10.1038/s41467-025-59251-x
摘要
Abstract The fabrication of cytomimetic materials capable of orchestrated and adaptive functions remains a significant challenge in bottom-up synthetic biology. Inspired by the cell/matrix integration of living bone, here we covalently tether distributed single populations of alkaline phosphatase-containing inorganic protocells (colloidosomes) onto a crosslinked organic network to establish viscoelastic tissue-like micro-composites. The prototissues are endogenously calcified with site-specific mineralization modalities involving selective intra-protocellular calcification, matrix-specific extra-protocellular calcification or gradient calcification. To mirror the interplay between osteoblasts and osteoclasts, we prepare integrated prototissues comprising a binary population of enzymatically active colloidosomes capable of endogenous calcification and decalcification and utilize chemical inputs to induce structural remodelling. Overall, our methodology opens a route to the chemically self-regulated calcification of homogeneous and gradient tissue-like mineral-matrix composites, advances the development of bottom-up synthetic biology in chemical materials research, and could provide potential opportunities in bioinspired tissue engineering, hydrogel technologies and bone biomimetics.
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