Zhu Pengfei, Ren Lihui, Zhu Ying, Dai Jing, Liu Huijie, Mao Yuli, Li Yuandong, He Yuehui, Zheng Xiaoshan, Chen Rongze, Fu Xiaoting, Zhang Lili, Sun Lijun, Zhu Yuanqi, Ji Yuetong, Ma Bo, Xu Yingchun, Xu Jian, Yang Qiwen
Single-Cell Center, CAS Key Laboratory of Biofuels, Shandong Key Laboratory of Energy Genetics and Shandong Energy Institute, Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences Qingdao China.
University of Chinese Academy of Sciences Beijing China.
mLife. 2022 Apr 18;1(3):329-340. doi: 10.1002/mlf2.12019. eCollection 2022 Sep.
Antimicrobial susceptibility tests (ASTs) are pivotal in combating multidrug resistant pathogens, yet they can be time-consuming, labor-intensive, and unstable. Using the AST of tigecycline for sepsis as the main model, here we establish an automated system of Clinical Antimicrobials Susceptibility Test Ramanometry (CAST-R), based on DO-probed Raman microspectroscopy. Featuring a liquid robot for sample pretreatment and a machine learning-based control scheme for data acquisition and quality control, the 3-h, automated CAST-R process accelerates AST by >10-fold, processes 96 paralleled antibiotic-exposure reactions, and produces high-quality Raman spectra. The Expedited Minimal Inhibitory Concentration via Metabolic Activity is proposed as a quantitative and broadly applicable parameter for metabolism-based AST, which shows 99% essential agreement and 93% categorical agreement with the broth microdilution method (BMD) when tested on 100 isolates. Further tests on 26 clinically positive blood samples for eight antimicrobials, including tigecycline, meropenem, ceftazidime, ampicillin/sulbactam, oxacillin, clindamycin, vancomycin, and levofloxacin reveal 93% categorical agreement with BMD-based results. The automation, speed, reliability, and general applicability of CAST-R suggest its potential utility for guiding the clinical administration of antimicrobials.
抗菌药敏试验(ASTs)在对抗多重耐药病原体方面至关重要,但可能耗时、费力且不稳定。以替加环素用于败血症的AST为主要模型,我们在此基于溶解氧(DO)探测拉曼光谱建立了临床抗菌药敏试验拉曼光谱法(CAST-R)自动化系统。该系统配备用于样品预处理的液体机器人以及基于机器学习的数据采集和质量控制方案,3小时的自动化CAST-R过程将AST加速了10倍以上,可处理96个平行的抗生素暴露反应,并产生高质量的拉曼光谱。提出通过代谢活性的快速最低抑菌浓度作为基于代谢的AST的定量且广泛适用的参数,在对100株分离菌进行测试时,该参数与肉汤微量稀释法(BMD)显示出99%的基本一致性和93%的分类一致性。对26份临床阳性血样进行包括替加环素、美罗培南、头孢他啶、氨苄西林/舒巴坦、苯唑西林、克林霉素、万古霉素和左氧氟沙星在内的8种抗菌药物的进一步测试,结果显示与基于BMD的结果有93%的分类一致性。CAST-R的自动化、速度、可靠性和普遍适用性表明其在指导抗菌药物临床给药方面具有潜在效用。