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Clinical Utility of Rapid Pathogen Identification for Detecting the Causative Organisms in Sepsis: A Single-Center
Won-Young Kim1, Eun Suk Jeong1, Insu Kim1
1Division of Pulmonary, Allergy and Critical Care Medicine, Department of Internal Medicine, Pusan National University School of Medicine, Busan 49241, Republic of Korea.
Purpose:
The aim of this pre- and postintervention cohort study was evaluating how effectively rapid pathogen identification with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) detected the causative organisms in sepsis.
Methods:
All consecutive adult patients who had bacteremia within 72 h of intensive care unit admission and met ≥2 quick Sequential Organ Failure Assessment criteria at intensive care unit admission were analyzed. The patients whose microorganisms were identified via MALDI-TOF MS between March 2014 and February 2016 formed the postintervention group. The patients whose microorganisms were identified by using conventional methods between March 2011 and February 2013 formed the preintervention group.
Results:
The postintervention group (n=58) had a shorter mean time from blood draw to receiving the antimicrobial susceptibility results than the preintervention group (n=40) (90.2 ± 32.1 vs. 108.7 ± 43.1 h; p=0.02). The postintervention group was also more likely to have received active antimicrobial therapy by the time the susceptibility report became available (77% vs. 47%; p=0.005). Its 28-day mortality was also lower (40% vs. 70%; p=0.003). Univariate analysis showed that identification via MALDI-TOF MS (odds ratio, 0.28; 95% confidence interval, 0.12-0.66; p=0.004) and active therapy (odds ratio, 0.38; 95% confidence interval, 0.16-0.95; p=0.04) were associated with lower 28-day mortality.
Conclusion:
Rapid microorganism identification via MALDI-TOF MS followed by appropriate antimicrobial therapy may improve the clinical outcomes of patients with sepsis.
Insights
Rapid pathogen identification using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) significantly reduced sepsis patient mortality. This faster method improved antimicrobial therapy timing and clinical outcomes.
Area of Science:
- Microbiology
- Infectious Diseases
- Clinical Diagnostics
Background:
- Sepsis diagnosis and treatment are time-sensitive.
- Traditional microbial identification methods can delay appropriate antimicrobial therapy.
- Rapid pathogen identification is crucial for improving sepsis patient outcomes.
Purpose of the Study:
- To evaluate the effectiveness of rapid pathogen identification using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) in sepsis.
- To compare the time to antimicrobial susceptibility results between MALDI-TOF MS and conventional methods.
- To assess the impact of MALDI-TOF MS on clinical outcomes, including mortality.
Main Methods:
- A pre- and postintervention cohort study design.
- Adult patients with bacteremia in the intensive care unit were analyzed.
- Microorganisms were identified using MALDI-TOF MS (postintervention) or conventional methods (preintervention).
Main Results:
- The MALDI-TOF MS group showed a significantly shorter time to antimicrobial susceptibility results (90.2 vs. 108.7 hours).
- More patients in the MALDI-TOF MS group received active antimicrobial therapy promptly (77% vs. 47%).
- The 28-day mortality rate was significantly lower in the MALDI-TOF MS group (40% vs. 70%).
Conclusions:
- Rapid microorganism identification via MALDI-TOF MS can improve clinical outcomes in sepsis patients.
- Faster identification enables quicker initiation of appropriate antimicrobial therapy.
- MALDI-TOF MS is a valuable tool for managing sepsis in intensive care settings.
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