Park Heechul, Schwartzman Alan F, Tang Tzu-Chieh, Wang Lei, Lu Timothy K
Synthetic Biology Group, Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Synthetic Biology Center, Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Mater Today Bio. 2022 Nov 26;18:100504. doi: 10.1016/j.mtbio.2022.100504. eCollection 2023 Feb.
Natural materials such as bone, wood, and bamboo can inspire the fabrication of stiff, lightweight structural materials. Biofilms are one of the most dominant forms of life in nature. However, little is known about their physical properties as a structural material. Here we report an biofilm having a Young's modulus close to 10 GPa with ultra-low density, indicating a high-performance structural material. The mechanical and structural characterization of the biofilm and its components illuminates its adaptable bottom-up design, consisting of lightweight microscale cells covered by a dense network of amyloid nanofibrils on the surface. We engineered such that 1) carbon nanotubes assembled on the biofilm, enhancing its stiffness to over 30 GPa, or that 2) the biofilm sensitively detected heavy metal as an example of an environmental toxin. These demonstrations offer new opportunities for developing responsive living structural materials to serve many real-world applications.
诸如骨头、木材和竹子等天然材料能够启发人们制造出坚硬且轻质的结构材料。生物膜是自然界中最主要的生命形式之一。然而,对于它们作为一种结构材料的物理特性却知之甚少。在此,我们报告一种生物膜,其杨氏模量接近10吉帕,密度超低,表明它是一种高性能结构材料。对该生物膜及其组分的力学和结构表征揭示了其适应性的自下而上设计,该设计由表面覆盖着密集淀粉样纳米纤维网络的轻质微观细胞组成。我们进行了工程设计,使得:1)碳纳米管组装在生物膜上,将其刚度提高到超过30吉帕,或者2)该生物膜能够灵敏地检测重金属,以此作为环境毒素的一个例子。这些实例为开发响应性的活性结构材料以服务于许多实际应用提供了新机遇。