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D2O probed Raman Microspectroscopy quantifies tigecycline resistance in Acinetobacter baumannii.
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The RAGE-Seq technology enables pathogen identification, metabolism-inhibition based antimicrobial susceptibility test and high-coverage genome sequence simultaneously at precisely one-cell resolution from a clinical urine sample.
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The concept of MIC-MA and the instrument of CAST-R were introduced as a universally applicable approach for rapid antimicrobial susceptibility test and quantitative assessment of drug efficacy, based on metabolic activity inhibition at single-cell resolution.
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Raman Barcode of Cellular-response to Stress (RBCS) was proposed to profile and distinguish the mechanisms of drug-response via Ramanome, which is useful for antibiotics evaluation, screening of drug-resistant bacteria and cell-drug interaction studies.
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Heavy water (D2O) probed Raman Microspectroscopy was used for identifying and sorting active microbial cells in mouse cecum samples under various carbohydrates.