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直接、快速检测尿液样本中的病原体。

Direct, Rapid Detection of Pathogens from Urine Samples.

作者信息

David Sorin, Munteanu Raluca-Elena, Tițoiu Ana-Maria, Petcu Ionela-Cristina, Cernat Ioana-Cristina, Leancu Corina, Gheorghiu Mihaela, Gheorghiu Eugen

机构信息

International Centre of Biodynamics, Intrarea Portocalelor 1B, 060101 Bucharest, Romania.

Faculty of Biology, University of Bucharest, Splaiul Independenței 91-95, 050095 Bucharest, Romania.

出版信息

Materials (Basel). 2022 Oct 31;15(21):7640. doi: 10.3390/ma15217640.

Abstract

The problem of rapidly detecting pathogens directly from clinical samples poses significant analytical challenges. Addressing this issue in relation to urinary tract infections, we propose an effective protocol and related immunomagnetic test kits enabling versatile screening for the presence of pathogenic bacteria in unprocessed urine samples. To achieve this, the components of a typical immunomagnetic separation protocol were optimized towards the sensitive assessment of the aggregates formed out of immunomagnetically tagged target pathogens collected from clinical samples. Specifically, a dedicated immunomagnetic material was developed via the functionalization of standardized, micron-sized magnetic beads with generic antibodies against gram-specific bacterial constituents with mannan binding lectin. As such, we demonstrate efficient procedures for achieving the enhanced, specific, and pathogen-mediated cluster formation of these tailored affinity-coated magnetic beads in complex samples. We further show how cluster analysis, in conjunction with the use of nonspecific, inexpensive fluorescent dye, allows for a straightforward optical assessment of the bacterial load directly from urine samples. The optimized sensing protocol and related kits provide, in less than 60 min, qualitative (positive/negative) information on the bacterial load with 85% specificity and 96% sensitivity, which is appropriate to empower clinical microscopy with a new analytic dimension. The procedure is prone to automation, can be conveniently used in clinical microbiology laboratories and, since it preserves the viability of the captured bacteria, can be interfaced with downstream analyses and antimicrobial susceptibility testing. Moreover, the study emphasizes a suite of practical validation assays that are useful for bringing the tool-box of immunomagnetic materials outside the academic laboratory and into real-life applications.

摘要

直接从临床样本中快速检测病原体的问题带来了重大的分析挑战。针对尿路感染解决这一问题,我们提出了一种有效的方案及相关免疫磁测试试剂盒,可对未处理尿液样本中病原菌的存在进行通用筛查。为此,对典型免疫磁分离方案的组件进行了优化,以灵敏评估从临床样本中收集的免疫磁标记目标病原体形成的聚集体。具体而言,通过用针对革兰氏特异性细菌成分的通用抗体和甘露聚糖结合凝集素对标准化的微米级磁珠进行功能化,开发了一种专用免疫磁材料。因此,我们展示了在复杂样本中实现这些定制亲和涂层磁珠增强的、特异性的和病原体介导的簇形成的有效程序。我们还展示了如何结合使用非特异性、廉价的荧光染料进行聚类分析,从而直接从尿液样本中对细菌载量进行直观的光学评估。优化后的传感方案及相关试剂盒可在不到60分钟的时间内提供有关细菌载量的定性(阳性/阴性)信息,特异性为85%,灵敏度为96%,这足以赋予临床显微镜检查新的分析维度。该程序易于自动化,可方便地用于临床微生物实验室,并且由于它保留了捕获细菌的活力,因此可与下游分析和抗菌药敏试验相衔接。此外,该研究强调了一套实用的验证试验,这些试验有助于将免疫磁材料的工具箱从学术实验室带入实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52c3/9656601/beb655544f37/materials-15-07640-sch001.jpg

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