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Multianalyte antibiotic detection on an electrochemical microfluidic platform

机译:在电化学微流体平台上进行多分析抗生素检测

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摘要

The excessive use of antibiotics in human and veterinary medicine causes the emergence of multidrug resistant bacteria. In this context, the surveillance of many different antibiotics provokes a worldwide challenge. Hence, fast and versatile multianalyte single-use biosensors are of increasing interest for many fields such as medical analysis or environmental and food control. Here we present a microfluidic platform enabling the electrochemical readout of up to eight enzyme-linked assays (ELAs), simultaneously. To demonstrate the applicability of this platform for the surveillance and monitoring of antibiotics, we used highly sensitive biomolecular sensor systems for the simultaneous detection of two commonly employed antibiotic classes tetracycline and streptogramin. Thus, microfluidic channel networks are designed, comprising distinct numbers of immobilization sections with a very low volume of 680 nL each. These passively metered sections can be actuated separately for an individual assay procedure. The limits of detection (LOD) are determined, with high precision, to 6.33 and 9.22 ng mL–1 for tetracycline and pristinamycin, respectively. The employed channel material, dry film photoresist (DFR), allows an easy storage of preimmobilized assays with a shelf life of at least 3 months. Multianalyte measurements in a complex medium are demonstrated by the simultaneous detection of both antibiotics in spiked human plasma within a sample-to-result time of less than 15 min.
机译:人和兽药中抗生素的过度使用导致出现多药耐药细菌。在这种情况下,对许多不同抗生素的监视引起了世界范围的挑战。因此,对于许多领域,例如医学分析或环境和食品控制,快速,通用的多分析物一次性生物传感器越来越引起人们的关注。在这里,我们提出了一种微流体平台,该平台能够同时电化学读取多达8种酶联测定(ELA)。为了证明该平台对抗生素的监测和监视的适用性,我们使用高灵敏度的生物分子传感器系统同时检测两种常用的抗生素类四环素和链霉菌素。因此,设计了微流体通道网络,包括不同数量的固定部分,每个固定部分的体积非常低,仅为680 nL。这些被动计量的部分可针对单独的测定程序分别启动。四环素和原始霉素的检出限(LOD)高精度确定为6.33和9.22 ng mL-1。使用的通道材料,干膜光刻胶(DFR),可以轻松地存储预先固定的测定,且保质期至少为3个月。通过在不到15分钟的样品到结果时间内同时检测加标的人血浆中的两种抗生素,可以证明在复杂培养基中进行多分析物测量。

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