Department of Mechanical and Aerospace Engineering, University of California, San Diego, La Jolla, CA, 92093, USA.
Materials Science and Engineering Program, University of California, San Diego, La Jolla, CA, 92093, USA.
Nat Commun. 2022 Jul 7;13(1):3914. doi: 10.1038/s41467-022-31705-6.
Biohybrid is a newly emerging and promising approach to construct soft robotics and soft machines with novel functions, high energy efficiency, great adaptivity and intelligence. Despite many unique advantages of biohybrid systems, it is well known that most biohybrid systems have a relatively short lifetime, require complex fabrication process, and only remain functional with careful maintenance. Herein, we introduce a simple method to create a highly robust and power-free soft biohybrid mechanoluminescence, by encapsulating dinoflagellates, bioluminescent unicellular marine algae, into soft elastomeric chambers. The dinoflagellates retain their intrinsic bioluminescence, which is a near-instantaneous light response to mechanical forces. We demonstrate the robustness of various geometries of biohybrid mechanoluminescent devices, as well as potential applications such as visualizing external mechanical perturbations, deformation-induced illumination, and optical signaling in a dark environment. Our biohybrid mechanoluminescent devices are ultra-sensitive with fast response time and can maintain their light emission capability for weeks without special maintenance.
生物杂交是一种新兴且有前途的方法,可以构建具有新颖功能、高能量效率、高适应性和智能的软机器人和软机器。尽管生物杂交系统有许多独特的优势,但众所周知,大多数生物杂交系统的寿命相对较短,需要复杂的制造工艺,并且只有在精心维护下才能保持功能。在此,我们介绍了一种简单的方法,通过将夜光虫(一种发光的单细胞海洋藻类)封装在柔软的弹性体腔室内,来创建一种高度坚固且无需电源的软生物杂交机械发光。夜光虫保留了其内在的生物发光特性,这是一种对机械力的瞬间光响应。我们展示了各种形状的生物杂交机械发光器件的坚固性,以及在黑暗环境中可视化外部机械扰动、变形诱导照明和光学信号等潜在应用。我们的生物杂交机械发光器件具有超灵敏性、快速响应时间,并且可以在没有特殊维护的情况下保持数周的发光能力。