Khan Zeeshan A, Siddiqui Mohd F, Park Seungkyung
School of Mechanical Engineering, Korea University of Technology and Education, Cheonan, Chungnam, 31253, South Korea.
Biotechnol Lett. 2019 Feb;41(2):221-230. doi: 10.1007/s10529-018-02638-2. Epub 2018 Dec 12.
Antibiotic susceptibility test (AST) is an umbrella term for techniques to determine the susceptibility of bacteria to antibiotics. The antibiotic-resistant bacteria are a major threat to public health and a directed therapy based on accurate AST results is paramount in resistance control. Here we have briefly covered the progress of conventional, molecular, and automated AST tools and their limitations. Various aspects of microfluidic AST such as optical, electrochemical, colorimetric, and mechanical methods have been critically reviewed. We also address the future requirements of the microfluidic devices for AST. Cumulatively, we have outlined the overview of AST that can help to expand and improve the existing techniques and emphasize that microfluidics could be the future of AST and introduction of microtechnologies in AST will be extremely advantageous, especially for point-of-care testing.
抗生素敏感性测试(AST)是用于确定细菌对抗生素敏感性的技术的统称。抗生素耐药菌是对公众健康的重大威胁,基于准确AST结果的针对性治疗对于耐药性控制至关重要。在此,我们简要介绍了传统、分子和自动化AST工具的进展及其局限性。对微流控AST的各个方面,如光学、电化学、比色和机械方法进行了批判性综述。我们还阐述了用于AST的微流控设备的未来需求。总体而言,我们概述了AST,这有助于扩展和改进现有技术,并强调微流控技术可能是AST的未来,将微技术引入AST将极具优势,特别是对于即时检测。