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Harnessing the hygroscopic and biofluorescent behaviors of genetically tractable microbial cells to design biohybrid wearables

机译:利用遗传上易处理的微生物细胞的吸湿和生物荧光特性来设计生物混合可穿戴设备

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摘要

Cells’ biomechanical responses to external stimuli have been intensively studied but rarely implemented into devices that interact with the human body. We demonstrate that the hygroscopic and biofluorescent behaviors of living cells can be engineered to design biohybrid wearables, which give multifunctional responsiveness to human sweat. By depositing genetically tractable microbes on a humidity-inert material to form a heterogeneous multilayered structure, we obtained biohybrid films that can reversibly change shape and biofluorescence intensity within a few seconds in response to environmental humidity gradients. Experimental characterization and mechanical modeling of the film were performed to guide the design of a wearable running suit and a fluorescent shoe prototype with bio-flaps that dynamically modulates ventilation in synergy with the body’s need for cooling.
机译:人们已经对细胞对外部刺激的生物力学反应进行了深入研究,但很少将其应用于与人体相互作用的设备中。我们证明活细胞的吸湿和生物荧光行为可以被工程化以设计生物混合可穿戴设备,从而为人类汗水提供多功能的响应能力。通过将遗传上易处理的微生物沉积在惰性气体材料上以形成异质多层结构,我们获得了可响应环境湿度梯度在几秒钟内可逆地改变形状和生物荧光强度的生物杂化膜。对该膜进行了实验表征和机械建模,以指导可穿戴跑步服和带有生物挡板的荧光鞋原型的设计,该挡板可动态调节通风,并与人体的冷却需求协同作用。

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