Skip to content

Clinical Evidence & Research for Hospital Disinfection

A growing clinical evidence effort focused on real-world hospital disinfection outcomes using aerosolized hydrogen peroxide.

Collaborate with leading infection preventionists and clinical researchers to generate publishable evidence—while evaluating new approaches to environmental disinfection in your facility.

EVS terminal cleaning

Why Clinical Evidence Matters in Hospital Disinfection

Healthcare-associated infections remain a persistent challenge, driven in part by inconsistent environmental disinfection and increasing pathogen resistance. Traditional methods—manual cleaning and UV—often leave gaps in coverage, consistency, and operational efficiency.

Breezy Med’s clinical program is designed to generate real-world evidence on:
  • Whole-room disinfection performance
  • Reduction in environmental bioburden and transmission risk
  • Operational efficiency and labor savings
  • Compliance and audit readiness through automated data capture

Current Clinical Studies

 🟢 Peer-Reviewed Publications

Peer-reviewed protocol describing automated aerosolized hydrogen peroxide disinfection for terminal cleaning in hospital environments.
  • Validated automated whole-room disinfection protocol
  • Demonstrated consistent microbial reduction with biological indicators
  • Established a standardized workflow for clinical implementation
Evaluated automated in-situ disinfection of hospital privacy curtains using aerosolized hydrogen peroxide. 
  • Demonstrated ≥4-log reduction of resistant bacterial spores
  • Complete biological indicator inactivation in less than 15 minutes
  • Supports an alternative to routine curtain removal and laundering

 🟡 Scientific Presentations & Conference Abstracts  

Clinical Outcomes

Reduced C. auris with Aerosolized Hydrogen Peroxide Dry Fogging Disinfection System in a Preclinical Setting (to be presented at IDWeek 2026)
Evaluated automated aerosolized hydrogen peroxide against Candidozyma auris (formerly Candida auris) in a simulated patient room.
  • Approximately 4-log (99.98–99.99%) reduction throughout the chamber
  • Consistent efficacy across multiple locations and inverted surfaces
  • Supports upcoming hospital-based C. auris clinical studies
Improving Performance: Hospital Disinfection with Smart Aerosolized Hydrogen Peroxide (to be presented at AHE Exchange26)
Evaluated microbiological, workflow, and documentation outcomes from automated hospital disinfection.  
  • Demonstrated reductions in environmental contamination
  • Reduced manual labor and documentation burden
  • Improved audit readiness through automated data collection
Evaluated automated aerosolized hydrogen peroxide within a multidisciplinary infection prevention program.  
  • Associated with significantly reduced CRO transmission
  • Incorporated automated disinfection into antimicrobial stewardship and compliance initiatives
  • Improved audit readiness through automated data collection

Technology Validation

Operating Room Coverage and Droplet Dispersion of Automated Aerosolized Hydrogen Peroxide Dry Fogging (to be presented at IDWeek 2026)
Used computational modeling to evaluate aerosol dispersion in a simulated operating room.
  • Complete operating room coverage within 5 minutes
  • Demonstrated rapid, uniform aerosol dispersion
  • Supports whole-room disinfection in complex clinical environments
Computational modeling of aerosolized hydrogen peroxide coverage in a standardized patient room.
  • Complete room coverage within 1 minute
  • Demonstrated rapid, uniform aerosol  distribution 
  • Established the foundation for later operating room coverage studies

Workflow & Operational Impact

Modeled the direct labor cost impact of automated disinfection in a typical U.S. hospital.
  • Estimated >$22,000 annual labor savings
  • Reduced costs through faster room turnover 
  • Established the foundation for ongoing health economics research
Evaluated the operational impact of automated disinfection on environmental services workflows.
  • 10–35 minutes saved per room
  • Up to three additional room turnovers per shift
  • Supports improved EVS productivity and workflow efficiency

 🔵 Ongoing Clinical Research   

Clinical C. auris HAI Reduction Study 
Evaluating the impact of automated aerosolized hydrogen peroxide on C. auris transmission in clinical hospital environments. 
CRO / MDRO Reduction Study
Clinical program evaluating the impact of automated disinfection on carbapenem-resistant organisms (CROs). 
Time-Driven Cost Savings of Automated Aerosolized Hydrogen Peroxide
Evaluating the economic impact of automated disinfection on workflow, room turnover, and hospital operations. 

Become a Co-Author on Upcoming Clinical Studies

Join a growing network of hospitals and infection prevention leaders contributing to real-world clinical evidence in hospital disinfection.

Participants provide access to their clinical environment and operational data, while Breezy Med supports study design, data collection, analysis, and manuscript development—minimizing additional workload for your team. The result is high-quality, publishable research grounded in real-world hospital practice.

This is an opportunity to advance infection prevention, evaluate automated, whole-room disinfection in your facility, and participate as a co-author on peer-reviewed publications.

 Real-World Evidence from Clinical Environments

Collaborating Institutions & Clinical Contributors

UT Southwestern Medical Center • Little Colorado Medical Center • Rehabilitation Hospital of Southern New Mexico • Mount Graham Regional Medical Center • Northwestern University • University of Arizona • Banner Desert Medical Center • Isleta Health Center

Presented at Leading Conferences

APIC • AHE • IDWeek • JoVE (peer-reviewed publication) • AJIC (peer-reviewed publication)

Demonstrated Outcomes from Real-World Hospital Environments 

Hospitals participating in Breezy Med’s clinical evidence network gain early access to emerging disinfection protocols and contribute to a growing body of real-world data in infection prevention.

Clinical studies and pilot programs have demonstrated:
  • High-level microbial reduction across surfaces and complex environments
  • Improved consistency and reduced variability in terminal cleaning
  • Measurable labor savings and workflow efficiency gains
  • Automated, audit-ready documentation for compliance and reporting

This collaborative approach is designed to generate practical, publishable evidence—developed in partnership with the clinical teams who implement it every day.