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Development of a paper-immobilized yeast biosensor for the detection of physiological concentrations of doxycycline in technology-limited settings

机译:在技术有限的环境中检测纸固定化酵母生物传感器,用于检测生理霉素的生理素

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To combat pharmaceutical counterfeiting and antibiotic resistance in low- and middle-income countries (LMIC), there is a need for improved low-cost, portable methods that monitor pharmaceutical concentrations relevant to dosage forms and physiological fluids. To address this problem, we turned to paper analytical devices (PADs), and have recently extended this technology by incorporating whole cell yeast biosensors into PADs to create biological paper analytical devices (bioPADs). The goals of the work presented here were to build on our initial bioPAD technology by showing that fluorescence can be used as a read-out and that the yeast-based system can function in complex matrices. More specifically, we embedded the bioengineered yeast on a paper test strip and showed that this simple biosensor can detect physiologically relevant concentrations of doxycycline in both human urine and raw bovine serum. In this work we also manufactured an inexpensive and portable device capable of reading the fluorescent signal of the bioPAD. This work demonstrates the untapped potential of fluorescent yeast biosensors for use in LMICs.
机译:为了对抗低收入国家(LMIC)的药物假冒和抗生素抗性,需要改善与剂型和生理流体相关的药物浓度的改善的低成本,便携式方法。为了解决这个问题,我们转向纸张分析装置(垫),最近通过将整个细胞酵母生物传感器掺入垫中以形成生物纸分析装置(BIOPADS)来扩展该技术。本文呈现的工作的目标是通过显示荧光可以用作读出的初始BIOPAD技术,并且基于酵母的系统可以在复杂的基质中起作用。更具体地说,我们将生物工程酵母嵌入纸张测试条上,并显示出这种简单的生物传感器可以检测人类尿液和未加工牛血清中的生理相关浓度的强霉素。在这项工作中,我们还制造了一种能够读取生物碳的荧光信号的廉价和便携式设备。这项工作证明了荧光酵母生物传感器的未开发潜力,用于LMIC。

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