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Rapid isolation and diagnosis of live bacteria from human joint fluids by using an integrated microfluidic system

机译:使用集成的微流体系统从人关节液中快速分离和诊断活细菌

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Arthroplasty is a general approach for improving the life quality for patients with degenerative or injured joints. However, post-surgery complications including periprosthetic joint infection (PJI) poses a serious drawback to the procedure. Several methods are available for diagnosing PJI, but they are time-consuming or have poor sensitivity and specificity. Alternatively, reverse-transcription PCR can detect live bacteria and reduce false-positive results but cannot avoid the cumbersome RNA handling and human contamination issues. In response, an integrated microfluidic system capable of detecting live bacteria from clinical PJi samples within 55 minutes is developed in this study. This system employs an ethidium monoazide (EMA)-based assay and a PCR with universal bacterial primers and probes to isolate and detect only the live bacteria that commonly cause PJI. The experimental results indicated that the developed system can detect bacteria in human joint fluids with a detection limit of 104 colony formation unit mL~(-1). Furthermore, nine clinical samples were analyzed using the microfluidic system. The results obtained from the microfluidic system were negative for all culture-negative cases, indicating that the proposed system can indeed reduce false-positive results. In addition, experimental results showed that the EMA sample pre-treatment process was crucial for successful detection of live bacteria. The culture-positive cases were diagnosed as positive by the proposed system only when the clinical samples were treated with EMA immediately after being sampled from patients. Based on these promising results, the developed microfluidic system can be a useful tool to detect PJI and potentially be applied in other clinical situations.
机译:关节置换术是改善关节退化或受伤患者生活质量的通用方法。但是,包括假体周围关节感染(PJI)在内的手术后并发症给该手术带来了严重的缺陷。有几种方法可用于诊断PJI,但它们很耗时或灵敏度和特异性较差。另外,逆转录PCR可以检测活细菌并减少假阳性结果,但不能避免繁琐的RNA处理和人类污染问题。作为响应,在这项研究中开发了一种集成的微流控系统,该系统能够在55分钟内从临床PJi样本中检测出活细菌。该系统采用基于单乙叠氮化物(EMA)的检测以及具有通用细菌引物和探针的PCR,以仅分离和检测通常引起PJI的活细菌。实验结果表明,该系统可以检测人体关节液中的细菌,检出限为104个菌落形成单位mL〜(-1)。此外,使用微流体系统分析了九个临床样品。从微流控系统获得的结果在所有培养阴性病例中均为阴性,表明拟议的系统确实可以减少假阳性结果。此外,实验结果表明,EMA样品的预处理过程对于成功检测活细菌至关重要。仅在从患者身上取样后立即用EMA处理临床样品时,所提出的系统才将培养阳性病例诊断为阳性。基于这些有希望的结果,开发的微流控系统可以成为检测PJI的有用工具,并有可能应用于其他临床情况。

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