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The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses

Currently, the most utilized antimicrobial in processing facilities is peracetic acid, PAA; however, this chemical is increasingly recognized as a hazard to human health. Preliminary evidence suggests that ozone, when introduced in a specific manner, can reduce the noxious nature of PAA. Therefore,...

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Autores principales: Dittoe, Dana Kristen, Feye, Kristina Marie, Peyton, Bob, Worlie, Drew, Draper, Michael J., Ricke, Steven C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332806/
https://www.ncbi.nlm.nih.gov/pubmed/30671030
http://dx.doi.org/10.3389/fmicb.2018.03180
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author Dittoe, Dana Kristen
Feye, Kristina Marie
Peyton, Bob
Worlie, Drew
Draper, Michael J.
Ricke, Steven C.
author_facet Dittoe, Dana Kristen
Feye, Kristina Marie
Peyton, Bob
Worlie, Drew
Draper, Michael J.
Ricke, Steven C.
author_sort Dittoe, Dana Kristen
collection PubMed
description Currently, the most utilized antimicrobial in processing facilities is peracetic acid, PAA; however, this chemical is increasingly recognized as a hazard to human health. Preliminary evidence suggests that ozone, when introduced in a specific manner, can reduce the noxious nature of PAA. Therefore, the objective of the current study was to evaluate the efficacy of TetraClean Systems aqueous ozone, O(3), in combination with PAA as an antimicrobial spray on whole chicken carcasses. This trial used 70 whole hen carcasses (7 treatments; 10 replications) that were inoculated in a 400 mL cocktail containing Salmonella, Escherichia coli, and Campylobacter (10(7) CFU/mL) and allowed to adhere for 60 min at 4°C for a final concentration of 10(5) to 10(6) CFU/g. The experimental 5 s (4×) spray treatments included: a no treatment negative control, TW; TW + O(3) (10 ppm), TW + PAA (50 ppm), TW + PAA (500 ppm), TW + O(3) + PAA (50 ppm), and TW + O(3) + PAA (500 ppm). During treatment application, ambient PAA vapor was measured with a ChemDAQ Safecide PAA vapor sensor. After treatment, carcasses were immediately rinsed in 400 mL of nBPW for 2 min. Following rinsing, the dot method was utilizing for enumeration with 10 μL of rinsate being serially diluted, plated on XLD and mCCDA agar, and incubated aerobically at 37°C for 24 h or microaerophilically at 42°C for 48 h. Log-transformed counts were analyzed using ANOVA in JMP 14.0. Means were separated using Tukey’s HSD when P ≤ 0.05. There was a significant treatment effect among Salmonella, E. coli, and Campylobacter counts, and a significant treatment effect among ambient PAA (P < 0.05). TW + O(3) + PAA (500 ppm), reduced Salmonella significantly compared to TW (5.71 and 6.30 log CFU/g). Furthermore, TW + PAA (500 ppm), reduced the presence of E. coli significantly compared to TW or no treated control (5.57 and 6.18 log CFU/g). Also, TW + PAA (50 ppm), TW + PAA (500 ppm), and TW + O(3) + PAA (500 ppm) significantly reduced Campylobacter compared to carcasses not treated (4.80, 4.81, and 4.86 log CFU/g). Lastly, the addition of ozone significantly reduced the ambient PAA when O(3) was added to 500 ppm of PAA, as TW + O(3) + PAA (500 ppm) produced less ambient PAA than TW + PAA (500 ppm) (0.052 and 0.565 ppm). In conclusion, the addition of ozone to PAA may demonstrated the ability to effectively reduce ambient PAA, thus increasing employee safety.
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spelling pubmed-63328062019-01-22 The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses Dittoe, Dana Kristen Feye, Kristina Marie Peyton, Bob Worlie, Drew Draper, Michael J. Ricke, Steven C. Front Microbiol Microbiology Currently, the most utilized antimicrobial in processing facilities is peracetic acid, PAA; however, this chemical is increasingly recognized as a hazard to human health. Preliminary evidence suggests that ozone, when introduced in a specific manner, can reduce the noxious nature of PAA. Therefore, the objective of the current study was to evaluate the efficacy of TetraClean Systems aqueous ozone, O(3), in combination with PAA as an antimicrobial spray on whole chicken carcasses. This trial used 70 whole hen carcasses (7 treatments; 10 replications) that were inoculated in a 400 mL cocktail containing Salmonella, Escherichia coli, and Campylobacter (10(7) CFU/mL) and allowed to adhere for 60 min at 4°C for a final concentration of 10(5) to 10(6) CFU/g. The experimental 5 s (4×) spray treatments included: a no treatment negative control, TW; TW + O(3) (10 ppm), TW + PAA (50 ppm), TW + PAA (500 ppm), TW + O(3) + PAA (50 ppm), and TW + O(3) + PAA (500 ppm). During treatment application, ambient PAA vapor was measured with a ChemDAQ Safecide PAA vapor sensor. After treatment, carcasses were immediately rinsed in 400 mL of nBPW for 2 min. Following rinsing, the dot method was utilizing for enumeration with 10 μL of rinsate being serially diluted, plated on XLD and mCCDA agar, and incubated aerobically at 37°C for 24 h or microaerophilically at 42°C for 48 h. Log-transformed counts were analyzed using ANOVA in JMP 14.0. Means were separated using Tukey’s HSD when P ≤ 0.05. There was a significant treatment effect among Salmonella, E. coli, and Campylobacter counts, and a significant treatment effect among ambient PAA (P < 0.05). TW + O(3) + PAA (500 ppm), reduced Salmonella significantly compared to TW (5.71 and 6.30 log CFU/g). Furthermore, TW + PAA (500 ppm), reduced the presence of E. coli significantly compared to TW or no treated control (5.57 and 6.18 log CFU/g). Also, TW + PAA (50 ppm), TW + PAA (500 ppm), and TW + O(3) + PAA (500 ppm) significantly reduced Campylobacter compared to carcasses not treated (4.80, 4.81, and 4.86 log CFU/g). Lastly, the addition of ozone significantly reduced the ambient PAA when O(3) was added to 500 ppm of PAA, as TW + O(3) + PAA (500 ppm) produced less ambient PAA than TW + PAA (500 ppm) (0.052 and 0.565 ppm). In conclusion, the addition of ozone to PAA may demonstrated the ability to effectively reduce ambient PAA, thus increasing employee safety. Frontiers Media S.A. 2019-01-08 /pmc/articles/PMC6332806/ /pubmed/30671030 http://dx.doi.org/10.3389/fmicb.2018.03180 Text en Copyright © 2019 Dittoe, Feye, Peyton, Worlie, Draper and Ricke. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Dittoe, Dana Kristen
Feye, Kristina Marie
Peyton, Bob
Worlie, Drew
Draper, Michael J.
Ricke, Steven C.
The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title_full The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title_fullStr The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title_full_unstemmed The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title_short The Addition of Viriditec(TM) Aqueous Ozone to Peracetic Acid as an Antimicrobial Spray Increases Air Quality While Maintaining Salmonella Typhimurium, Non-pathogenic Escherichia coli, and Campylobacter jejuni Reduction on Whole Carcasses
title_sort addition of viriditec(tm) aqueous ozone to peracetic acid as an antimicrobial spray increases air quality while maintaining salmonella typhimurium, non-pathogenic escherichia coli, and campylobacter jejuni reduction on whole carcasses
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332806/
https://www.ncbi.nlm.nih.gov/pubmed/30671030
http://dx.doi.org/10.3389/fmicb.2018.03180
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