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On a Robust Sensitive Cell-Free Method for Pseudomonas Sensing and Quantification in Microfluidic Templated Hydrogels

机译:鲁棒灵敏的无细胞假单胞菌敏感和定量的微流控模板水凝胶中的方法。

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摘要

Through the use of droplet microfluidics to integrate cell-free activity into inert hydrogel beads, we have developed a platform that can perform biologically relevant functions without the need for cells. Specifically, cell-free lysates serve a utility in performing cellular functions and providing biologically relevant metabolic products without requiring the optimal biological conditions for cell growth and proliferation. By teasing out specific biological components that enable transcription and translation to occur, these cell-like functions can be reconstituted in vitro without requiring the entire cell and milieu of cellular organelles. This enables the optimization of synthetic biological circuits, either by concentration or logic switches, simply through the addition or removal of genetic components (plasmids, inducers, or repressors) of regulatory elements. Here, we demonstrate an application of cell-free processes that is robust and portable, independent of a substrate, to apply for sensing and reporting functions of a quorum-sensing molecule N-3-oxododecanoyl homoserine lactone (3OC12HSL) found crucial for pathological Pseudomonas aeruginosa infection. We develop an agarose bead platform that is easily adaptable and simply programmable to fit a variety of biological and chemical sensing applications for the utility of ease of delivery and activation in remote environments—even in conditions with very little hydration.
机译:通过使用微滴微滴将无细胞活性整合到惰性水凝胶珠中,我们开发了一个无需细胞即可执行生物学相关功能的平台。具体而言,无细胞裂解物可用于执行细胞功能并提供生物学上相关的代谢产物,而无需细胞生长和增殖的最佳生物学条件。通过研究使转录和翻译发生的特定生物学成分,这些细胞样功能可以在体外重建,而无需整个细胞和细胞器的环境。这可以简单地通过添加或去除调控元件的遗传成分(质粒,诱导物或阻遏物),通过集中或逻辑转换来优化合成生物学电路。在这里,我们展示了一种无细胞过程的应用,该过程坚固且可移植,独立于底物,可用于检测和报告对病理假单胞菌至关重要的群体感应分子N-3-氧十二烷酰高丝氨酸内酯(3OC12HSL)的功能铜绿菌感染。我们开发了一种琼脂糖微珠平台,该平台易于适应且可简单编程以适合各种生物和化学传感应用,从而可在偏远环境中(即使在水合非常少的情况下)易于传递和激活。

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