Related Experiment Video
Updated: Jan 4, 2026

Author Spotlight: Microbial Control and Monitoring Strategies for Cleanroom Environments and Cellular Therapies
Published on: March 17, 2023
Challenges in achieving effective high-level disinfection in endoscope reprocessing
Cori L Ofstead1, Krystina M Hopkins1, Brandy L Buro1
1Ofstead & Associates, Inc, St. Paul, MN.
Abstract:
Endoscope reprocessing is often ineffective, and microbes frequently remain on endoscopes after the use of high-level disinfectants (HLDs). Several factors impact reprocessing effectiveness, including non-adherence to guidelines, use of damaged endoscopes, use of insoluble products during endoscopy, insufficient cleaning, contaminated rinse water, and inadequate drying before storage. Our team suspected that issues with HLD chemistries and monitoring could also contribute to reprocessing failures. We conducted a mixed-methods analysis of published literature, our interviews with frontline personnel, and evidence from our previous studies. The evidence showed that reusable HLDs commonly failed tests for minimum effective concentration (MEC) before their maximum usage periods. MEC tests also detected failures associated with single-use HLDs that did not fully deploy. These failures were due to product issues, process complexities, and personnel non-adherence with guidelines and manufacturer instructions. HLDs will likely continue to be used for the foreseeable future. More research is needed to assess real-world practice patterns related to the high-level disinfection step and MEC testing and to establish more realistic usage periods for reusable HLD chemistries. Manufacturers and researchers should evaluate the ability of technological solutions and engineered safeguards to overcome human error. Recognition of the need for quality improvement is growing, and infection preventionists should take action to build on this momentum and collaborate with manufacturers, endoscopists, and reprocessing personnel to improve the effectiveness of high-level disinfection.
Insights
High-level disinfectants (HLDs) often fail to effectively reprocess endoscopes due to issues with chemistry, monitoring, and adherence to guidelines. Improving endoscope disinfection requires addressing product and process complexities to prevent microbial contamination.
Area of Science:
- Infection Prevention and Control
- Medical Device Reprocessing
- Microbiology
Background:
- Endoscope reprocessing failures are common, with microbes persisting after high-level disinfection (HLD).
- Factors contributing to reprocessing ineffectiveness include guideline non-adherence, damaged scopes, and inadequate cleaning, drying, or rinsing.
- The study investigates potential failures related to high-level disinfectant (HLD) chemistries and monitoring.
Purpose of the Study:
- To analyze the effectiveness of high-level disinfectants (HLDs) in endoscope reprocessing.
- To identify factors contributing to HLD failures in clinical practice.
- To provide recommendations for improving endoscope disinfection efficacy.
Main Methods:
- Mixed-methods analysis integrating published literature.
- Interviews with frontline healthcare personnel involved in reprocessing.
- Review of evidence from previous studies on HLD performance.
Main Results:
- Reusable HLDs frequently failed minimum effective concentration (MEC) tests before their expiration.
- Single-use HLDs also showed failures, often due to incomplete deployment.
- Failures stemmed from product issues, complex processes, and non-adherence to guidelines and instructions.
Conclusions:
- HLD effectiveness is compromised by product and process issues, as well as human error.
- Further research is needed on real-world HLD practices and MEC testing.
- Collaboration and technological solutions are essential to enhance endoscope reprocessing and patient safety.
More Related Videos
07:00Failure of Cleaning Verification in Pharmaceutical Industry Due to Uncleanliness of Stainless Steel Surface
Published on: August 11, 2017
11:47Evaluation of the Efficacy of Organic Peroxyacids for Eradicating Dairy Biofilms Using an Approach Combining Static and Dynamic Methods
Published on: December 9, 2022
Related Concept Videos
Cleaning, Sterilization, and Disinfection
Cleaning
The cleaning process usually involves using water with detergents or enzymatic cleaner and removing foreign material from objects and surfaces, including organic material such as body fluids or inorganic material like soil. Cleaning is performed before high-level disinfection and sterilization because foreign materials on the cover of the devices interfere with process...
Methods of Sterilization II: Chemical Methods
Using chemical sterilization rather than heat to clean out equipment is recommended. It eradicates and removes all bacteria,...
Methods of Sterilization I: Physical Methods
Steam sterilization uses non-toxic, low-cost moist heat in the form of saturated steam under pressure, which is fast, microbicidal, and sporicidal, and quickly warms and penetrates fabrics. Autoclaves, or steam sterilizers, expose each item to direct steam contact for a predetermined time at the necessary...
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Antimicrobial Effectiveness
Hand hygiene
Hand washing...