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Stretchable living materials and devices with hydrogel–elastomer hybrids hosting programmed cells

机译:具有可程序化细胞的水凝胶-弹性体杂化物的可拉伸生物材料和装置

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摘要

Living systems, such as bacteria, yeasts, and mammalian cells, can be genetically programmed with synthetic circuits that execute sensing, computing, memory, and response functions. Integrating these functional living components into materials and devices will provide powerful tools for scientific research and enable new technological applications. However, it has been a grand challenge to maintain the viability, functionality, and safety of living components in freestanding materials and devices, which frequently undergo deformations during applications. Here, we report the design of a set of living materials and devices based on stretchable, robust, and biocompatible hydrogel–elastomer hybrids that host various types of genetically engineered bacterial cells. The hydrogel provides sustainable supplies of water and nutrients, and the elastomer is air-permeable, maintaining long-term viability and functionality of the encapsulated cells. Communication between different bacterial strains and with the environment is achieved via diffusion of molecules in the hydrogel. The high stretchability and robustness of the hydrogel–elastomer hybrids prevent leakage of cells from the living materials and devices, even under large deformations. We show functions and applications of stretchable living sensors that are responsive to multiple chemicals in a variety of form factors, including skin patches and gloves-based sensors. We further develop a quantitative model that couples transportation of signaling molecules and cellular response to aid the design of future living materials and devices.
机译:诸如细菌,酵母和哺乳动物细胞之类的生物系统可以通过合成电路进行遗传编程,这些合成电路可以执行传感,计算,记忆和响应功能。将这些功能性生活组件整合到材料和设备中,将为科学研究提供强大的工具并实现新技术应用。然而,在独立的材料和设备中维持活动组件的生存能力,功能性和安全性是一个巨大的挑战,而独立的材料和设备在应用过程中经常会发生变形。在这里,我们报告了一组基于可拉伸,坚固且具有生物相容性的水凝胶-弹性体杂合体的生活材料和装置的设计,该杂合体包含各种类型的基因工程细菌细胞。水凝胶可提供可持续的水和养分供应,而弹性体是透气的,可长期保持被囊化细胞的活力和功能。通过水凝胶中分子的扩散,可以实现不同细菌菌株之间以及与环境之间的交流。水凝胶-弹性体杂化物的高拉伸性和坚固性可防止细胞从活物质和装置中泄漏,即使在大变形下也是如此。我们展示了可伸展的生命传感器的功能和应用,这些传感器可对多种化学形态的多种化学物质做出响应,包括皮肤斑块和基于手套的传感器。我们进一步开发了一个定量模型,该模型将信号分子的运输和细胞反应耦合在一起,以帮助设计未来的生活材料和设备。

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