材料科学
多孔性
基因工程
非生物成分
微生物
陶瓷
碳纤维
细菌
蓝藻
纳米技术
多孔介质
化学工程
生态学
生物
复合材料
遗传学
复合数
工程类
生物化学
基因
作者
Alessandro Dutto,Anton Kan,Zoubeir Saraw,Aline Maillard,Daniel Zindel,André R. Studart
标识
DOI:10.1002/adma.202412555
摘要
Microorganisms hosted in abiotic structures have led to engineered living materials that can grow, sense, and adapt in ways that mimic biological systems. Although porous structures should favor colonization by microorganisms, they have not yet been exploited as abiotic scaffolds for the development of living materials. Here, porous ceramics are reported that are colonized by bacteria to form an engineered living material with self-regulated and genetically programmable carbon capture and gas-sensing functionalities. The carbon capture capability is achieved using wild-type photosynthetic cyanobacteria, whereas the gas-sensing function is generated utilizing genetically engineered E. coli. Hierarchical porous clay is used as a ceramic scaffold and evaluated in terms of bacterial growth, water uptake, and mechanical properties. Using state-of-the-art chemical analysis techniques, the ability of the living porous ceramics are demonstrated to capture CO
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