College of Environmental & Resource Sciences, Zhejiang University, Hangzhou 310027, China.
Key Laboratory of Coastal Environment and Resources Research of Zhejiang Province, School of Engineering, Westlake University, Hangzhou 310030, China.
Biosensors (Basel). 2023 Dec 14;13(12):1028. doi: 10.3390/bios13121028.
Rapid and cost-efficient antibiotic susceptibility testing (AST) is key to timely prescription-oriented diagnosis and precision treatment. However, current AST methods have limitations in throughput or cost effectiveness, and are impractical for microbial communities. Here, we developed a high-throughput micro-well array-based colorimetric AST (macAST) system equipped with a self-developed smartphone application that could efficiently test sixteen combinations of bacteria strains and antibiotics, achieving comparable AST results based on resazurin metabolism assay. For community samples, we integrated immunomagnetic separation into the macAST (imacAST) system to specifically enrich the target cells before testing, which shortened bacterial isolation time from days to only 45 min and achieved AST of the target bacteria with a low concentration (~10 CFU/mL). This proof-of-concept study developed a high-throughput AST system with an at least ten-fold reduction in cost compared with a system equipped with a microscope or Raman spectrum. Based on colorimetric readout, the antimicrobial susceptibility of the bacteria from microbial communities can be delivered within 6 h, compared to days being required based on standard procedures, bypassing the need for precise instrumentation in therapy to combat bacterial antibiotic resistance in resource-limited settings.
快速且经济高效的抗生素药敏试验(AST)是及时进行基于处方的诊断和精准治疗的关键。然而,目前的 AST 方法在通量或成本效益方面存在局限性,并且对于微生物群落来说不切实际。在这里,我们开发了一种基于高通量微孔阵列的比色 AST(macAST)系统,并配备了自主开发的智能手机应用程序,该系统可以高效地测试十六种细菌菌株和抗生素的组合,基于 Resazurin 代谢测定法可获得可比的 AST 结果。对于群落样本,我们将免疫磁分离集成到 macAST(imacAST)系统中,在测试前专门富集目标细胞,这将细菌分离时间从数天缩短至仅 45 分钟,并实现了低浓度(~10 CFU/mL)目标细菌的 AST。这项概念验证研究开发了一种高通量 AST 系统,与配备显微镜或拉曼光谱的系统相比,其成本至少降低了十倍。基于比色读数,微生物群落中细菌的抗菌药敏性可以在 6 小时内得到确定,而根据标准程序则需要数天时间,从而在资源有限的环境中治疗细菌抗生素耐药性时无需精确的仪器。