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利用交叉表面浮雕光栅进行选择性尿路病原体检测。

Selective Uropathogenic Detection Using Crossed Surface-Relief Gratings.

机构信息

Department of Chemical Engineering, Queen's University, Kingston, ON K7L 3N6, Canada.

Instituto de Ciencias Aplicadas y Desarrollo Tecnológico (ICAT), Universidad Nacional Autónoma de México (UNAM), Ciudad de México 04510, Mexico.

出版信息

Sensors (Basel). 2018 Oct 26;18(11):3634. doi: 10.3390/s18113634.

Abstract

Urinary tract infections (UTIs) are one of the major burdens on public healthcare worldwide. One of the primary causes of UTIs is the invasion of the urinary tract by uropathogenic (UPEC). Improper treatment of bacterial infections like UTIs with broad-spectrum antibiotics has contributed to the rise of antimicrobial resistance, necessitating the development of an inexpensive, rapid and accurate detection of UPEC. Here, we present real-time, selective and label-free detection of UPEC using crossed surface-relief gratings (CSRGs) as nanometallic sensors incorporated into an optical sensing platform. CSRGs enable real-time sensing due to their unique surface plasmon resonance (SPR)-based light energy exchange, resulting in detection of a very-narrow-bandwidth SPR signal after the elimination of residual incident light. The platform's sensing ability is experimentally demonstrated by the detection of bulk refractive index (RI) changes, with a bulk sensitivity of 382.2 nm/RIU and a resolution in the order of 10 RIU. We also demonstrate, for the first time, CSRG-based real-time selective capture and detection of UPEC in phosphate-buffered saline (PBS) solution, in clinically relevant concentrations, as opposed to other UTI-causing Gram-negative bacteria. The platform's detection limit is calculated to be 10⁵ CFU/mL (concentration on par with the clinical threshold for UTI diagnosis), with a dynamic range spanning four orders of magnitude. This work paves the way for the development of inexpensive point-of-care diagnosis devices focusing on effective treatment of UTIs, which are a burden on public healthcare due to the rise in the number of cases and their recurrences in the recent past.

摘要

尿路感染(UTIs)是全球公共卫生保健的主要负担之一。UTIs 的主要原因之一是尿路致病性大肠杆菌(UPEC)的入侵。由于广谱抗生素对细菌感染(如 UTIs)的不当治疗,导致了抗菌药物耐药性的上升,因此需要开发一种廉价、快速且准确的 UPEC 检测方法。在这里,我们使用交叉表面浮雕光栅(CSRGs)作为纳米金属传感器,并将其整合到光学传感平台中,实现了对 UPEC 的实时、选择性和无标记检测。CSRGs 由于其独特的基于表面等离子体共振(SPR)的光能交换而实现实时传感,从而在消除残余入射光后检测到非常窄带宽的 SPR 信号。该平台的传感能力通过检测体折射率(RI)变化得到了实验验证,其体灵敏度为 382.2nm/RIU,分辨率在 10RIU 左右。我们还首次展示了基于 CSRG 的实时选择性捕获和检测磷酸盐缓冲盐水(PBS)溶液中 UPEC 的能力,其浓度与 UTI 诊断的临床阈值相当,而不是其他引起 UTI 的革兰氏阴性菌。该平台的检测限计算为 10⁵ CFU/mL(与 UTI 诊断的临床阈值相当),动态范围跨越四个数量级。这项工作为开发廉价的即时诊断设备铺平了道路,这些设备可聚焦于有效治疗 UTIs,UTIs 近年来病例数量不断增加且反复发作,给公共卫生保健带来了负担。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f193/6263983/c68a2f7a5190/sensors-18-03634-g001.jpg

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