New and developing diagnostic technologies for urinary tract infections

抗菌管理 检测点注意事项 注意事项 抗菌剂 医学 鉴定(生物学) 抗生素 重症监护医学 诊断试验 抗生素耐药性 微生物学 免疫学 生物 病理 儿科 植物
作者
Michael T. Davenport,Kathleen E. Mach,Linda M. Dairiki Shortliffe,Niaz Banaei,Tza‐Huei Wang,Joseph C. Liao
出处
期刊:Nature Reviews Urology [Nature Portfolio]
卷期号:14 (5): 296-310 被引量:262
标识
DOI:10.1038/nrurol.2017.20
摘要

Timely and accurate identification and determination of the antimicrobial susceptibility of uropathogens is central to the management of UTIs and antimicrobial stewardship. In this Review, Davenport and colleagues discuss emerging technologies including biosensors, microfluidics, and other integrated platforms that could improve UTI diagnosis and treatment choice. Timely and accurate identification and determination of the antimicrobial susceptibility of uropathogens is central to the management of UTIs. Urine dipsticks are fast and amenable to point-of-care testing, but do not have adequate diagnostic accuracy or provide microbiological diagnosis. Urine culture with antimicrobial susceptibility testing takes 2–3 days and requires a clinical laboratory. The common use of empirical antibiotics has contributed to the rise of multidrug-resistant organisms, reducing treatment options and increasing costs. In addition to improved antimicrobial stewardship and the development of new antimicrobials, novel diagnostics are needed for timely microbial identification and determination of antimicrobial susceptibilities. New diagnostic platforms, including nucleic acid tests and mass spectrometry, have been approved for clinical use and have improved the speed and accuracy of pathogen identification from primary cultures. Optimization for direct urine testing would reduce the time to diagnosis, yet these technologies do not provide comprehensive information on antimicrobial susceptibility. Emerging technologies including biosensors, microfluidics, and other integrated platforms could improve UTI diagnosis via direct pathogen detection from urine samples, rapid antimicrobial susceptibility testing, and point-of-care testing. Successful development and implementation of these technologies has the potential to usher in an era of precision medicine to improve patient care and public health.
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