Related Experiment Video
Updated: Aug 5, 2026

Microbiological Rapid On-Site Evaluation for Pulmonary Infectious Diseases
Published on: March 1, 2024
PCR-based syndromic tests for antibiotic stewardship in non-ventilated patients with hospital-acquired pneumonia: a
S Kernéis1,2,3, E Canouï3, L Deconinck4
1Université Paris Cité, INSERM, IAME, Paris F-75018, France.
Objectives:
To evaluate whether syndromic multiplex PCR (mPCR) with expert guidance improves antibiotic stewardship in patients with hospital-acquired pneumonia (HAP).
Methods:
We conducted a multicentre, open-label randomized controlled trial across seven French tertiary hospitals. Adults with non-ventilator-associated HAP in intensive care unit (ICU) or non-ICU wards were randomized (1:1) to conventional microbiology or mPCR testing. Empirical therapy was clinician-guided. In the intervention group, treatment was subsequently adapted according to mPCR results with expert advice. The primary endpoint was duration of broad-spectrum antibiotics (days of therapy/100 patient-days) in patients alive at end of follow-up. Secondary outcomes included appropriateness of antibiotic therapy, adverse outcomes, length of stay and costs.
Results:
From February 2020 to August 2023, 116 patients were randomized and 109 included in follow-up (mPCR n = 55; control n = 54). Recruitment was disrupted by the COVID-19 pandemic, leading to early trial termination at half of the planned sample size. Median age was 66 years (IQR: 55-76), 66% patients were in ICU. Mean duration of broad-spectrum antibiotics was 37.6 days of therapy/100 patient-days (standard deviation, SD 44.1) in the mPCR group versus 48.7 (SD 54.5) in controls (P = 0.41). mPCR significantly increased appropriate antibiotic therapy at day 0 (47% versus 24%, P = 0.01). No differences were evidenced in adverse outcomes, length of stay or costs.
Conclusions:
In this prematurely discontinued trial, mPCR with expert guidance did not reduce broad-spectrum antibiotic exposure, but improved early appropriateness of antibiotic therapy in HAP. These findings highlight the potential role of rapid diagnostics in optimizing initial antibiotic decisions, while underscoring challenges of demonstrating reductions in antibiotic consumption.
Insights
Syndromic multiplex PCR (mPCR) with expert guidance improved early antibiotic appropriateness for hospital-acquired pneumonia (HAP). However, this rapid diagnostic test did not significantly reduce overall broad-spectrum antibiotic use in this prematurely stopped trial.
Area of Science:
- Infectious Diseases
- Clinical Microbiology
- Antibiotic Stewardship
Background:
- Hospital-acquired pneumonia (HAP) poses significant treatment challenges, often necessitating broad-spectrum antibiotics.
- Optimizing antibiotic therapy is crucial for patient outcomes and combating antimicrobial resistance.
Purpose of the Study:
- To assess if syndromic multiplex PCR (mPCR) combined with expert guidance enhances antibiotic stewardship in HAP patients.
- To evaluate the impact of mPCR on antibiotic duration, appropriateness, and clinical outcomes.
Main Methods:
- A multicenter, open-label randomized controlled trial involving adult HAP patients.
- Patients were randomized to either conventional microbiology or mPCR testing with subsequent expert-guided therapy adaptation.
- The primary endpoint was the duration of broad-spectrum antibiotic use.
Main Results:
- The trial was terminated early due to the COVID-19 pandemic, with 109 patients included.
- No significant difference was observed in the duration of broad-spectrum antibiotic use between the mPCR and control groups (P=0.41).
- mPCR significantly improved the appropriateness of antibiotic therapy at day 0 (47% vs. 24%, P=0.01).
Conclusions:
- While mPCR with expert guidance did not reduce overall antibiotic exposure in HAP, it enhanced the early appropriateness of treatment.
- Rapid diagnostics show potential for optimizing initial antibiotic decisions in HAP.
- Further research is needed to overcome challenges in demonstrating reductions in antibiotic consumption using rapid diagnostic tools.
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