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Re: Clinical validation of integrated nucleic acid and protein detection on an electrochemical biosensor array for urinary tract infection diagnosis

机译:回复:用于尿路感染诊断的电化学生物传感器阵列上集成核酸和蛋白质检测的临床验证

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Background: Urinary tract infection (UTI) is a common infection that poses a substantial healthcare burden, yet its definitive diagnosis can be challenging. There is a need for a rapid, sensitive and reliable analytical method that could allow early detection of UTI and reduce unnecessary antibiotics. Pathogen identification along with quantitative detection of lactoferrin, a measure of pyuria, may provide useful information towards the overall diagnosis of UTI. Here, we report an integrated biosensor platform capable of simultaneous pathogen identification and detection of urinary bio-marker that could aid the effectiveness of the treatment and clinical management. Methodology/ principal Findings: The integrated pathogen 16S rRNA and host lactoferrin detection using the biosensor array was performed on 113 clinical urine samples collected from patients at risk for complicated UTI. For pathogen detection, the biosensor used sandwich hybridization of capture and detector oligonucleotides to the target analyte, bacterial 16S rRNA. For detection of the protein biomarker, the biosensor used an analogous electrochemical sandwich assay based on capture and detector antibodies. For this assay, a set of oligonucleotide probes optimized for hybridization at 37°C to facilitate integration with the immunoassay was developed. This probe set targeted common uropathogens including E. coli, P. mirabilis, P. aeruginosa and Enterococcus spp. as well as less common uropathogens including Serratia, Providencia, Morganella and Staphylococcus spp. The biosensor assay for pathogen detection had a specificity of 97% and a sensitivity of 89%. A significant correlation was~found between LTF concentration measured by the biosensor and WBC and leukocyte esterase (p <0.001 for both). Conclusion/significance: We successfully demonstrate simultaneous detection of nucleic acid and host immune marker on a single biosensor array in clinical samples. This platform can be used for multiplexed detection of nucleic acid and protein as the next generation of urinary tract infection diagnostics.
机译:背景:尿路感染(UTI)是常见的感染,给医疗保健造成了沉重负担,但其明确的诊断可能具有挑战性。需要一种快速,灵敏和可靠的分析方法,该方法可以早期发现尿道感染并减少不必要的抗生素。病原体鉴定以及定量检测乳铁蛋白(一种脓尿)可以为全面诊断尿路感染提供有用的信息。在这里,我们报告了一个集成的生物传感器平台,能够同时进行病原体鉴定和尿液生物标志物检测,从而有助于治疗和临床管理的有效性。方法/主要发现:对从复杂尿路感染风险患者中收集的113份临床尿液样本进行了整合的病原体16S rRNA和宿主生物铁蛋白的生物传感器检测。对于病原体检测,生物传感器使用捕获和检测寡核苷酸与靶标分析物细菌16S rRNA的夹心杂交。为了检测蛋白质生物标志物,生物传感器使用了基于捕获和检测器抗体的类似电化学夹心法。对于该测定,开发了一组寡核苷酸探针,这些寡核苷酸探针经过优化,可在37°C杂交以促进与免疫测定的整合。该探针组靶向了常见的尿路致病菌,包括大肠杆菌,奇异杆菌,铜绿假单胞菌和肠球菌。以及较少见的尿路致病菌,包括沙雷氏菌,普罗维登西亚,摩根氏菌和葡萄球菌属。用于病原体检测的生物传感器测定法的特异性为97%,灵敏度为89%。在生物传感器和白细胞和白细胞酯酶测量的LTF浓度之间发现了显着的相关性(两者p均<0.001)。结论/意义:我们成功地证明了在临床样品中的单个生物传感器阵列上同时检测核酸和宿主免疫标记。该平台可用于核酸和蛋白质的多重检测,作为下一代尿路感染的诊断方法。

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