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Robust Self-Regeneratable Stiff Living Materials Fabricated from Microbial Cells

机译:从微生物细胞制造的强大自我再生的硬质活性材料

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摘要

Living systems have not only the exemplary capability to fabricate materials (e.g., wood, bone) under ambient conditions but they also consist of living cells that imbue them with properties like growth and self-regeneration. Like a seed that can grow into a sturdy living wood, can living cells alone serve as the primary building block to fabricate stiff materials? Here is reported the fabrication of stiff living materials (SLMs) produced entirely from microbial cells, without the incorporation of any structural biopolymers (e.g., cellulose, chitin, collagen) or biominerals (e.g., hydroxyapatite, calcium carbonate) that are known to impart stiffness to biological materials. Remarkably, SLMs are also lightweight, strong, and resistant to organic solvents and can self-regenerate. This living materials technology can serve as a powerful biomanufacturing platform to design and develop advanced structural and cellular materials in a sustainable manner.
机译:生活系统不仅具有在环境条件下制造材料(例如木材,骨骼)的示例性能力,而且它们还由活细胞组成,这些活细胞与生长和自我再生等性质拟订。 就像一种可以种植成坚固的生活木材的种子,只能用作施工块的主要建筑物的活细胞? 这里据报道,在不掺入任何结构生物聚合物(例如,纤维素,几丁质,胶原)或诸如已知赋予刚度的碳酸盐(例如,羟基磷灰石,碳酸钙)的任何结构生物聚合物(例如,纤维素,甲壳素,碳酸钙)的掺入掺入刚性刚度的生物细胞的制造 生物材料。 值得注意的是,SLMS也是轻量级,强大,耐种有机溶剂,可以自我再生。 这种生活材料技术可以作为一种强大的生物制造平台,以可持续的方式设计和开发先进的结构和细胞材料。

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