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Molecular Microbiology- Guided Antimicrobial Stewardship Versus Standard Stewardship in Hospitalized Patients

Impact of Molecular Microbiology Integrated With Clinical Data on Antimicrobial Therapy Optimization: An Open-Label Cluster-Randomized Crossover Trial

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07684300
Acronym
PROACT
Enrollment
250
Registered
2026-07-06
Start date
2026-04-10
Completion date
2027-06-01
Last updated
2026-07-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Antimicrobial Resistance, Antimicrobial Stewardship Program, Infection, Multiplex PCR

Keywords

Multiplex PCR, Molecular Microbiology, Antimicrobial Stewardship, Antimicrobial Resistance, Antibiotic Optimization, Antimicrobial Therapy, infectious Diseases, Cluster Randomized Trial, Crossover Trial

Brief summary

The goal of this clinical trial is to learn whether integrating rapid multiplex molecular microbiology results with predefined clinical and laboratory criteria into an antimicrobial stewardship program improves antimicrobial use in hospitalized adults receiving empiric high-impact antimicrobial therapy. The main questions it aims to answer are: Does this strategy reduce the duration of exposure to high-impact antimicrobial therapy compared with standard antimicrobial stewardship practice? Does this strategy improve the appropriateness of antimicrobial treatment? Does this strategy affect clinical outcomes, including hospital readmission, intensive care unit admission, infection recurrence, mortality, and healthcare costs? Researchers will compare a protocolized antimicrobial stewardship strategy that incorporates multiplex molecular microbiology results and predefined clinical criteria with the standard antimicrobial stewardship strategy currently used in the hospital. Participants will: Receive antimicrobial management according to the stewardship strategy assigned to their hospital unit during the study period. Undergo molecular microbiology testing and routine clinical and laboratory assessments as part of standard hospital care when indicated. Be followed to evaluate antimicrobial exposure, treatment appropriateness, safety outcomes, hospital readmission, intensive care unit admission, infection recurrence, mortality, and healthcare costs.

Detailed description

Antimicrobial resistance is one of the greatest challenges facing modern healthcare and is largely driven by inappropriate antimicrobial use. Antimicrobial stewardship programs (ASPs) have become a cornerstone strategy to optimize antimicrobial prescribing and reduce the emergence of antimicrobial resistance. However, antimicrobial decision-making is frequently limited by delays in microbiological diagnosis, often resulting in prolonged exposure to broad-spectrum antimicrobial therapy. Recent advances in multiplex molecular microbiology allow rapid identification of pathogens and resistance markers directly from clinical samples, frequently several days earlier than conventional microbiological methods. Despite their excellent diagnostic performance, evidence supporting their impact on antimicrobial use and patient outcomes remains inconsistent. Most previous studies have focused on the diagnostic accuracy of these technologies or on their isolated implementation, while the optimal strategy for incorporating molecular results into real-world antimicrobial decision-making remains unclear. A major unanswered question is not whether multiplex molecular diagnostics can identify microorganisms faster, but how these results should be integrated with clinical and laboratory information to guide antimicrobial prescribing decisions. Current evidence suggests that rapid molecular diagnostics alone may be insufficient to improve outcomes unless they are incorporated into structured antimicrobial stewardship interventions. The present study addresses this knowledge gap by evaluating an innovative antimicrobial stewardship strategy that combines real-time multiplex molecular microbiology results with predefined clinical and laboratory criteria within an established multidisciplinary ASP. Rather than assessing a diagnostic test in isolation, this study evaluates a standardized decision-making framework designed to translate rapid microbiological information into actionable antimicrobial recommendations. This is an open-label, pragmatic, cluster-randomized crossover clinical trial conducted at Hospital General Universitario de Elche. Hospital units constitute the clusters and are grouped according to the type of care provided. Clusters are randomized to either the intervention strategy or the standard antimicrobial stewardship strategy during an initial study period. All eligible patients admitted to a given unit during each study period receive the stewardship strategy assigned to that unit. Individual patients are not randomized. After completion of the first intervention period, a washout period is implemented to minimize potential carry-over effects. Subsequently, the clusters cross over and receive the alternative stewardship strategy for a second study period. This design allows each participating unit to act as its own control while reducing the impact of differences in patient populations and clinical practice patterns between units. Eligible participants are hospitalized adults receiving empiric high-impact antimicrobial therapy under ASP supervision. The intervention evaluates whether integrating molecular microbiology into a structured stewardship algorithm enables earlier and more appropriate antimicrobial optimization than conventional stewardship practice. The primary objective is to determine whether this strategy reduces exposure to high-impact antimicrobial therapy. Secondary objectives include evaluating antimicrobial appropriateness, infection-related outcomes, intensive care unit admission, hospital readmission, recurrence of infection, mortality, adverse events related to antimicrobial therapy, and healthcare costs. By focusing on the implementation of a standardized stewardship strategy rather than on the diagnostic technology itself, this study seeks to generate clinically relevant evidence regarding how rapid molecular microbiology can be effectively incorporated into routine antimicrobial stewardship programs. The results may contribute to the development of more effective and reproducible antimicrobial optimization strategies and help define the role of molecular diagnostics in everyday clinical practice.

Interventions

BEHAVIORALProtocolized Antimicrobial Stewardship Strategy

A standardized antimicrobial stewardship strategy integrating multiplex molecular microbiology results with predefined clinical and laboratory criteria to support antimicrobial prescribing decisions.

BEHAVIORALStandard Antimicrobial Stewardship

Routine antimicrobial stewardship practice based on standard clinical assessment and conventional microbiological information.

Sponsors

Maria Espinosa Perez
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
HEALTH_SERVICES_RESEARCH
Masking
NONE

Masking description

Blinding is not feasible because the intervention consists of an antimicrobial stewardship strategy implemented at the hospital-unit level. Investigators and treating clinicians are aware of the assigned strategy, and individual patients are not blinded.

Intervention model description

This is a cluster-randomized crossover trial in which hospital units serve as the clusters. Units are paired according to the type of care provided (conventional hospitalization or critical care) and, within each pair, are randomized to either a protocolized antimicrobial stewardship strategy incorporating multiplex molecular microbiology results and predefined clinical criteria or the standard antimicrobial stewardship strategy. All eligible patients admitted to a unit receive the strategy assigned to that unit. Individual patients are not randomized. Following the initial study period, a washout phase is implemented during which all units follow standard stewardship practice to minimize potential carry-over effects. Units then cross over to the alternate strategy for a second study period. This design allows each participating unit to serve as its own control while reducing the impact of differences in patient populations, case mix, and clinical practice patterns between units.

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Age ≥18 years * Hospitalized in one of the participating study units at Hospital General Universitario de Elche. * Initiation of empiric high-impact antimicrobial therapy subject to antimicrobial stewardship program (ASP) review. * Provision of written informed consent by the participant or, when applicable, by a legally authorized representative.

Exclusion criteria

* Severe immunosuppression with profound neutropenia (\<100 neutrophils/mm³). * Previous enrollment in this clinical trial. * Expected survival of less than 48 hours. * Documented microbiological identification of the presumed causative pathogen by conventional methods in a representative and/or sterile sample before randomization and before availability of multiplex molecular microbiology results.

Design outcomes

Primary

MeasureTime frameDescription
Duration of Exposure to High-Impact Antimicrobial TherapyUp to 30 days after initiation of high-impact antimicrobial therapyTotal number of days of exposure to high-impact antimicrobial therapy from randomization until hospital discharge under antimicrobial stewardship program supervision.

Secondary

MeasureTime frameDescription
Infection-Related Mortality30 daysMortality within 30 days in which infection is considered the cause or a contributing factor.
Antimicrobial-Related Adverse EventsUp to 30 days after randomizationOccurrence of antimicrobial-related adverse events, including Clostridioides difficile infection, allergic reactions, acute kidney injury, hepatotoxicity, and clinically significant drug interactions.
Appropriate Antimicrobial Therapy at 24 Hours24 hours after randomizationProportion of patients receiving appropriate antimicrobial therapy, defined as active therapy against the identified pathogen and the narrowest effective antimicrobial spectrum.
Appropriate Antimicrobial Therapy at 72 Hours72 hours after randomizationProportion of patients receiving appropriate antimicrobial therapy, defined as active therapy against the identified pathogen and the narrowest effective antimicrobial spectrum.
Intensive Care Unit AdmissionUp to 30 days after randomizationRequirement for admission to the intensive care unit after randomization among participants not initially admitted to an intensive care unit.
Hospital ReadmissionWithin 10 days after hospital dischargeHospital readmission following discharge.
Recurrence of Infection30 daysRecurrence of infection requiring a new course of antimicrobial therapy.
Healthcare CostsUp to 5 days after dischargeTotal healthcare costs associated with antimicrobial therapy and multiplex molecular diagnostic testing during the index hospitalization.
Infection-Related ComplicationsUp to 30 days after randomizationDevelopment of infection-related complications, including abscess formation, empyema, septic shock, or other complications attributable to the index infection.

Countries

Spain

Contacts

CONTACTMaría Espinosa Pérez, MD
espinosa_mariaper@gva.es+34 675047622
CONTACTSergio Padilla Urrea, MD, PhD
padilla_ser@gva.es
STUDY_CHAIRMar Masiá Canuto, MD, PhD

Hospital General Universitario de Elche / Universidad Miguel Hernández

STUDY_CHAIRFélix Gutiérrez Rodero, MD, PhD

Hospital General Universitario de Elche / Universidad Miguel Hernández

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 7, 2026