Shanghai D-band Medical Instrument Co., Shanghai 201802, China.
CAS Key Laboratory of Bio-Medical Diagnostics, Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, P. R. China.
Anal Chem. 2021 Mar 30;93(12):5098-5106. doi: 10.1021/acs.analchem.0c04709. Epub 2021 Mar 17.
Human health is at great risk due to the spreading of antimicrobial resistance (AMR). The lengthy procedure of conventional antimicrobial susceptibility testing (AST) usually requires a few days. We developed a fast Raman-assisted antibiotic susceptibility test (FRAST), which detects single bacterial metabolic activity in the presence of antibiotics, using Raman single-cell spectroscopy. It was found that single-cell Raman spectra (SCRS) would show a clear and distinguishable Raman band at the "silent zone" (2000-2300 cm), due to the active incorporation of deuterium from heavy water (DO) by antibiotic-resistant bacteria. This pilot study has compared the FRAST and the conventional AST for six clinical standard quality controls (four Gram-negative and two Gram-positive bacteria strains) in response to 38 antibiotics. In total, 3200 treatments have been carried out and approximately 64 000 SCRS have been acquired for FRAST analysis. The result showed an overall agreement of 88.0% between the FRAST and the conventional AST assay. The gram-staining classification based on the linear discriminant analysis (LDA) model of SCRS was developed, seamlessly coupling with the FRAST to further reduce the turnaround time. We applied the FRAST to real clinical analysis for nine urinary infectious samples and three sepsis samples. The results were consistent with MALDI-TOF identification and the conventional AST. Under the optimal conditions, the "sample to report" of the FRAST could be reduced to 3 h for urine samples and 21 h for sepsis samples. The FRAST provides fast and reliable susceptibility tests, which could speed up microbiological analysis for clinical practice and facilitate antibiotic stewardship.
由于抗菌药物耐药性(AMR)的传播,人类健康面临巨大风险。传统抗菌药物敏感性测试(AST)的冗长过程通常需要几天时间。我们开发了一种快速拉曼辅助抗生素药敏测试(FRAST),它使用拉曼单细胞光谱法检测抗生素存在下单个细菌的单一代谢活性。研究发现,由于耐药菌从重水(DO)中积极掺入氘,单细胞拉曼光谱(SCRS)在“静默区”(2000-2300 cm)会显示出清晰且可区分的拉曼带。这项初步研究比较了 FRAST 和传统 AST 对六种临床标准质控品(四种革兰氏阴性和两种革兰氏阳性细菌株)对 38 种抗生素的反应。总共进行了 3200 次处理,获得了大约 64000 个 SCRS 进行 FRAST 分析。结果表明,FRAST 和传统 AST 检测的总体一致性为 88.0%。基于 SCRS 的线性判别分析(LDA)模型的革兰氏染色分类,与 FRAST 无缝耦合,进一步缩短了周转时间。我们将 FRAST 应用于 9 份尿路感染样本和 3 份脓毒症样本的实际临床分析。结果与 MALDI-TOF 鉴定和传统 AST 一致。在最佳条件下,FRAST 的“样本到报告”时间可缩短为尿液样本 3 小时,脓毒症样本 21 小时。FRAST 提供快速可靠的药敏测试,可加快微生物分析,促进抗生素管理。