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Electrical detection of pathogenic bacteria via immobilized antimicrobial peptides

机译:通过固定的抗菌肽电检测病原菌

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摘要

The development of a robust and portable biosensor for the detection of pathogenic bacteria could impact areas ranging from water-quality monitoring to testing of pharmaceutical products for bacterial contamination. Of particular interest are detectors that combine the natural specificity of biological recognition with sensitive, label-free sensors providing electronic readout. Evolution has tailored antimicrobial peptides to exhibit broad-spectrum activity against pathogenic bacteria, while retaining a high degree of robustness. Here, we report selective and sensitive detection of infectious agents via electronic detection based on antimicrobial peptide-functionalized microcapacitive electrode arrays. The semiselective antimicrobial peptide magainin I—which occurs naturally on the skin of African clawed frogs—was immobilized on gold microelectrodes via a C-terminal cysteine residue. Significantly, exposing the sensor to various concentrations of pathogenic Escherichia coli revealed detection limits of approximately 1 bacterium/μL, a clinically useful detection range. The peptide-microcapacitive hybrid device was further able to demonstrate both Gram-selective detection as well as interbacterial strain differentiation, while maintaining recognition capabilities toward pathogenic strains of E. coli and Salmonella. Finally, we report a simulated “water-sampling” chip, consisting of a microfluidic flow cell integrated onto the hybrid sensor, which demonstrates real-time on-chip monitoring of the interaction of E. coli cells with the antimicrobial peptides. The combination of robust, evolutionarily tailored peptides with electronic read-out monitoring electrodes may open exciting avenues in both fundamental studies of the interactions of bacteria with antimicrobial peptides, as well as the practical use of these devices as portable pathogen detectors.
机译:开发用于检测病原细菌的坚固耐用的便携式生物传感器可能会影响从水质监测到药物产品细菌污染检测等领域。特别令人感兴趣的是将生物识别的自然特异性与提供电子读数的灵敏,无标签传感器相结合的检测器。 Evolution已量身定制了抗菌肽,以展现出对病原菌的广谱活性,同时又保持了高度的鲁棒性。在这里,我们报告通过基于抗菌肽功能化的微电容电极阵列的电子检测选择性地和敏感地检测传染病。半选择抗菌肽麦格宁I(天然存在于非洲爪蛙的皮肤上)通过C端半胱氨酸残基固定在金微电极上。值得注意的是,将传感器暴露于各种浓度的致病性大肠杆菌中,发现检测限约为1个细菌/微升,这是临床上有用的检测范围。该肽-微电容混合装置还能够证明革兰氏选择性检测以及细菌间菌株的分化,同时保持对大肠杆菌和沙门氏菌病原菌株的识别能力。最后,我们报告了一个模拟的“水采样”芯片,该芯片由集成到混合传感器上的微流控流通池组成,该芯片演示了对大肠杆菌细胞与抗菌肽相互作用的实时片上监测。健壮的,经过进化改良的肽与电子读出监控电极的结合,可以为细菌与抗菌肽相互作用的基础研究以及将这些装置作为便携式病原体检测仪的实际应用开辟令人兴奋的途径。

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