Nanomaterials for bacterial enrichment and detection in healthcare.

Marwa Elhariry, Alina Oknianska, Jorge Garcia-Lara, Robert Shorten, Boris Oberheitmann, Tapas Sen
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Abstract

Bacterial infections in the blood (sepsis) have been recognized as a leading cause of mortality in the clinical field due to limitations in the detection of bacteria at low concentration and their resistance to antibiotics by excessive misuse. Some of the common symptoms are fever, chills, rapid heartbeat, difficulty breathing, confusion, and changes in mental status with occasionally pale, clammy, and mottled skin. Early diagnosis and identification are the keys to a successful treatment for sepsis patients. Researchers have developed nanoparticles to enrich bacterial populations followed by detection and applied them to conventional methods such as phenotypic and molecular diagnostics to enhance different detectors' responses toward pathogens. This short review systematically overviews steps that are followed in clinical labs for bacterial detection, identification, and their drawbacks. In this context, we discuss the role that nanoparticles can play in overcoming the limits of traditional microbiology methods in terms of turnaround times (TATs) and accuracy. We believe that this short review will provide up-to-date information about the applications of nanoparticles in the enrichment, separation, and identification of bacterial infection in the clinical field and, therefore, a way of rapid treatment.

纳米材料在医疗保健中的细菌富集和检测。
血液中的细菌感染(败血症)已被认为是临床领域死亡的主要原因,因为低浓度细菌的检测存在局限性,并且过度滥用抗生素对细菌产生耐药性。一些常见的症状是发烧、发冷、心跳加快、呼吸困难、精神错乱和精神状态的变化,偶尔伴有皮肤苍白、潮湿和斑驳。早期诊断和识别是成功治疗败血症患者的关键。研究人员已经开发出纳米颗粒来丰富细菌种群,然后进行检测,并将它们应用于诸如表型和分子诊断等传统方法,以增强不同探测器对病原体的反应。这篇简短的综述系统地概述了在临床实验室中进行细菌检测、鉴定及其缺点的步骤。在这种情况下,我们讨论了纳米颗粒在克服传统微生物学方法在周转时间(TATs)和准确性方面的局限性方面所起的作用。我们相信这篇简短的综述将为纳米颗粒在细菌感染富集、分离和鉴定方面的临床应用提供最新的信息,从而为快速治疗提供一种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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