Enhancing Biosecurity
in Research Facilities

Synexis DHP® technology works 24/7 to reduce the microbial load on surfaces and in the air — during surgeries, in occupied animal housing, and throughout food prep areas — supporting uninterrupted research.

Continuous Pathogen Control for Research Facilities

Synexis makes facilities healthier and safer with DHP® technology — a continuous, proactive method for reducing surface-level and airborne pathogens.

in areas such as:

Labs

Storage Rooms

Animal Housing

Food Prep Areas

Procedure Rooms

Common Areas

Reducing Surface-Level and Airborne Pathogens

Card 1


Touchless,
Continuous,
& Proactive
Pathogen
Control

Card 1

DHP® technology continuously reduces the microbial load in the air and on surfaces — during surgeries, in occupied
animal housing, and throughout food prep areas — supporting uninterrupted research.

OSHA-compliant* and aligned with CDC and EPA guidelines for continuous use in occupied spaces.

*29 CFR 1910.1000 Table Z-1

Card 2


Odor Reduction

Card 2

Reduces persistent odors from the environment, antiseptics, reagents, and scientific waste, all without masking agents or added fragrances.

Synexis DHP® is odorless and designed for sensitive research environments.

card 3


Complements Existing Protocols

card 3

24/7/365 automated technology and synergistic with traditional disinfection methods – no disruption of daily operations.

With quiet, touchless operation, Synexis DHP® technology helps create a safer, healthier environment for researchers and staff—without interrupting vital research.

How Synexis Technology Works

Our patented DHP® technology transforms ambient oxygen and humidity in the air into dry hydrogen peroxide, which flows freely and continuously to reduce the presence of viruses, bacteria, fungi, and volatile organic compounds (VOCs) on surfaces and in the air.  Synexis offers in-duct and stand-alone devices for scalable deployment options from small rooms to larger indoor facilities.

References:
1. Huang, Y.-J. S., et al. (2021). American Journal of Infection Control. https://doi.org/10.1016/j.ajic.2021.07.006 2. Data on File. SYN-0012. 3. Data on File. SYN-0001. 4. Data on File. SYN-0002. 5. Data on File. SYN-0003.

References:
1. Data on File. SYN-0007. 2. Data on File. SYN-0006. 3. Data on File. SYN-0006. 4. Data on File. SYN-0005. 5. Data on File. SYN-0017. 6. Data on File. SYN-0009. 7. Data on File. SYN-0014. 8. Data on File. SYN-0013. 9. Data on File. SYN‑0021

References:
1. Data on File. SYN-0010 2. Data on File. SYN-0006 3. Sutton et al. The Effect of Dry Hydrogen Peroxide on Environmental Contamination with Candida auris in an Adult Burn Unit. https://academic.oup.com/ofid/article/10/Supplement_2/ofad500.1255/7446976

References:
1. Aerosol Research and Engineering Laboratories. (2021). Formaldehyde Elimination Efficacy of the Synexis Sphere Device in a Sealed Test Chamber. (Report No. 10868.70).

Synexis and Quip Laboratories are collaborating to satisfy the growing demand for advanced microbial reduction technologies in life sciences research environments. Quip Laboratories’ 40-year history of specialized facility hygiene solutions enables US Life Sciences customers to efficiently procure, deploy, and scale Synexis DHP® technology for enhanced pathogen control.