蓝藻
多细胞生物
光合作用
材料科学
非生物成分
微生物
发菜
光合反应器
纳米技术
细菌
工作(物理)
仿生材料
泥浆
多孔性
自愈水凝胶
聚合物
仿生学
生物
分段丝状菌
多孔介质
气凝胶
作者
Lisa Tang,Nathan T. Soulier,Tyler Chang,Zhecun Guan,Jessica Fernanda Affonso de Oliveira,Nicole F. Steinmetz,James W. Golden,Susan S. Golden,Jonathan K. Pokorski,Jinhye Bae
摘要
ABSTRACT Photosynthetic engineered living materials (PS‐ELMs) comprise an emerging field that leverages the photosynthetic metabolism of microorganisms embedded in abiotic materials to impart dynamic properties and responses. While PS‐ELMs have shown promise in several applications including bioremediation, biosynthesis, and shape‐morphing, these materials typically possess poor mechanical properties. Inspired by fiber‐reinforced, non‐living hydrogel systems, in this work we demonstrate incorporation of the filamentous cyanobacterium Nostoc commune as living fibers to reinforce PS‐ELMs. Furthermore, we investigate the relationship between filamentous bacteria and porous materials by characterizing the morphology, growth, and spatial location of Nostoc commune within alginate hydrogels. Lastly, we modulate the material system with a CaSO 4 slurry to enable direct‐ink‐writing 3D printing. These results show that filamentous cyanobacteria can act as living fibers to reinforce the PS‐ELM, in addition to providing a framework to analyze the interaction of multicellular microorganisms with materials.
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