A Novel Method to Sterilize Isolators for the Housing of Germ-Free Birds and Production of Germ-Free Eggs.
Chlorine dioxide dry gas effectively sterilizes isolators for germ-free avian facilities, remaining sterile for at least 3 weeks post-treatment.
Where it sits
this study against the rest of the ovagen (edl) corpusSummary and findings
This study evaluated the effectiveness of chlorine dioxide dry gas for sterilizing isolators used for housing germ-free birds and producing germ-free eggs. The sterilization process involved approximately 4 hours of exposure for PVC isolators and 6 hours for stainless-steel isolators. Microbiological analysis confirmed sterility for at least 3 weeks post-sterilization.
Abstract
<h4>Introduction</h4>The effective sterilization of isolators prior to placement of germ-free birds/eggs is crucial to ensuring that the environment is free of potential contaminants. With the use of formaldehyde for sterilization becoming less popular owing to its carcinogenicity, the need for an alternative agent with the same efficacy is essential in the preparation of isolators. Chlorine dioxide dry gas has previously been shown to be a highly effective sterilization method, providing a promising alternative for germ-free avian egg facilities.<h4>Methods</h4>Polyvinyl chloride (PVC; <i>n</i> = 32) and stainless-steel production isolators (<i>n</i> = 7) were sterilized using approximately 4 h of exposure to chlorine dioxide (PVC isolator) and after approximately 6 h of exposure to chlorine dioxide (stainless-steel production isolator).<h4>Results</h4>Each isolator type was sterilized effectively using chlorine dioxide. Samples collected for microbiological analysis from the isolators after sterilization confirmed that the isolators were sterilized and remained sterile for at least 3 weeks after sterilization.<h4>Discussion</h4>The results of this study highlight the first use of chlorine dioxide dry gas for germ-free avian sterilization practices, augmenting on its use as a fogging agent seen in germ-free mice practices. As described in previous animal laboratory studies, values >1440 ppm-h cycle achieved in this study provided consistently adequate antimicrobial efficacy for the sterilization of germ-free egg facilities.<h4>Conclusion</h4>Chlorine dioxide dry gas is a highly effective sterilization solution for germ-free avian egg facilities, providing long-lasting sterility to isolators without the safety concerns associated with other fumigants such as formaldehyde.