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Development of a whole-cell biosensor for the determination of tyrosine in urine for point-of-care diagnostics

机译:用于尿液中酪氨酸测定的全细胞生物传感器的开发,用于即时诊断

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Most disorders associated with tyrosine metabolism lead to elevated tyrosine levels in biological fluids. In this work, we used genetic engineering techniques to develop a simple and low-cost biosensor for tyrosine quantification. Here, two tyrosine-responsive promoters are used to differentially control the production of red and green fluorescent proteins signals in response to tyrosine levels in a culture. We also conducted a systematic examination of various modular components (promoters and ribosome binding sites) in order to ensure that our biosensor was capable of rapidly producing a pronounced fluorescence signal. To make the device more user-friendly, we developed a reagentless platform in which biocompatible agarose is used as an entrapment agent with cell sensors and growth media mounted within the gel matrix.
机译:大多数与酪氨酸代谢有关的疾病会导致生物体液中酪氨酸水平升高。在这项工作中,我们使用基因工程技术开发了一种简单且低成本的酪氨酸定量生物传感器。在这里,使用两个酪氨酸响应性启动子来响应培养物中的酪氨酸水平差异控制红色和绿色荧光蛋白信号的产生。我们还对各种模块组件(启动子和核糖体结合位点)进行了系统检查,以确保我们的生物传感器能够快速产生明显的荧光信号。为了使该设备更易于使用,我们开发了一种无试剂平台,其中将生物相容性琼脂糖用作包埋剂,并将细胞传感器和生长培养基安装在凝胶基质中。

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