773
Views
0
CrossRef citations to date
0
Altmetric
Research Article

In vitro antimicrobial activity of ozonated sunflower oil in milk against Escherichia coli: comparative study in cow, goat and sheep

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon show all
Pages 715-724 | Received 25 Aug 2022, Accepted 08 Nov 2022, Published online: 06 Dec 2022

References

  • Afonso RB, Moreira RHR, de Almeida PLR. 2022. Can ozone be used as antimicrobial in the dairy industry? A systematic review. J Dairy Sci. 105(2):1051–1057. doi:10.3168/jds.2021-20900.
  • Alekish M, Ismail ZB, Albiss B, Nawasrah S. 2018. In vitro antibacterial effects of zinc oxide nanoparticles on multiple drug-resistant strains of Staphylococcus aureus and Escherichia coli: an alternative approach for antibacterial therapy of mastitis in sheep. Vet World. 11(10):1428–1432. doi:10.14202/vetworld.2018.1428-1432.
  • Ariffin SM, Hasmadi N, Syawari NM, Sukiman MZ, Ariffin MFT, Hian CM, Ghazali MF. 2019. Prevalence and antibiotic susceptibility pattern of Staphylococcus aureus, Streptococcus agalactiae and Escherichia coli in dairy goats with clinical and subclinical mastitis. J Anim Health Prod. 7(1):32–37. doi:10.17582/journal.jahp/2019/7.1.32.37.
  • Ayala A, Muñoz MF, Argüelles S. 2014. Lipid peroxidation: production, metabolism, and signaling mechanisms of malondialdehyde and 4-hydroxy-2-nonenal. Oxid Med Cell Longevity. 2014, 1–31. doi:10.1155/2014/360438. Landes Bioscience.
  • Baghal Asghari F, Dehghani MH, Dehghanzadeh R, Farajzadeh D, Shanehbandi D, Mahvi AH, Yaghmaeian K, Rajabi A. 2021. Performance evaluation of ozonation for removal of antibiotic-resistant Escherichia coli and Pseudomonas aeruginosa and genes from hospital wastewater. Sci Rep. 11:1. doi:10.1038/s41598-021-04254-z.
  • Balemi A, Gumi B, Amenu K, Girma S, Gebru M, Tekle M, Rius AA, D’souza DH, Agga GE, Dego OK. 2021. Prevalence of mastitis and antibiotic resistance of bacterial isolates from cmt positive milk samples obtained from dairy cows, camels, and goats in two pastoral districts in southern Ethiopia. Animals (Basel). 11:1530. doi:10.3390/ani11061530.
  • Bergonier D, de Crémoux R, Rupp R, Lagriffoul G, Berthelot X. 2003. Mastitis of dairy small ruminants. Vet Res. 34(5):689–716. doi:10.1051/vetres:2003030.
  • Bizzini A, Greub G. 2010. Matrix-assisted laser desorption ionization time-of-flight mass spectrometry, a revolution in clinical microbial identification. Clin Microbiol Infect. 16(11):1614–1619. doi:10.1111/j.1469-0691.2010.03311.x.
  • Bradley AJ, Breen JE, Payne B, Williams P, Green MJ. 2010. The use of a cephalonium containing dry cow therapy and an internal teat sealant, both alone and in combination. J Dairy Sci. 93(4):1566–1577. doi:10.3168/jds.2009-2725.
  • Bradley AJ, Green MJ. 2001. An investigation of the impact of intramammary antibiotic dry cow therapy on clinical coliform mastitis. J Dairy Sci. 84(7):1632–1639. doi:10.3168/jds.S0022-0302(01)74598-5.
  • Conte G, Fontanelli M, Galli F, Cotrozzi L, Pagni L, Pellegrini E. 2020. Mycotoxins in feed and food and the role of ozone in their detoxification and degradation: an update. Toxins (Basel). 12(8), 486. doi:10.3390/toxins12080486. MDPI AG.
  • Cording F, Hoedemaker M, Krömker V. 2013. Relationship between residual milk and clinical mastitis in dairy cattle. Tierarztl Prax Ausg G Grosstiere Nutztiere. 41(6):379–386.
  • Córdoba-Lanús E, García-Pérez O, Rodríguez-Esparragón F, Bethencourt-Estrella CJ, Torres-Mata LB, Blanco A, Villar J, Sanz O, Díaz JJ, Martín-Barrasa JL, et al. 2022. Ozone treatment effectively eliminates SARS-CoV-2 from infected face masks. PLoS One. 17(7):e0271826. doi:10.1371/journal.pone.0271826.
  • da Soares CES, Weber A, Moecke EHS, de Souza CK, Reiter MGR, Scussel VM. 2018. Use of ozone gas as a green control alternative to beetles Alphitobius diaperinus (panzer) infestation in aviary bed utilized in the poultry industry. Chem Eng Trans. 64:589–594. doi:10.3303/CET1864099.
  • Davis MA, Reinemann DJ. 2001. Methodology of measuring strip yield. Proc 2nd Int Symp Mastit Milk Qual; Sep 12–14; Vancouver, British Columbia. pp. 13–15.
  • de Prado-Taranilla AI, Holstege MMC, Bertocchi L, Appiani A, Becvar O, Davidek J, Bay D, Jimenez LM, Roger N, Krömker V, et al. 2020. Incidence of milk leakage after dry-off in European dairy herds, related risk factors, and its role in new intramammary infections. J Dairy Sci. 103(10):9224–9237. doi:10.3168/jds.2019-18082.
  • Díaz MF, Gavín Sazatornil JA, Ledea O, Hernández F, Alaiz M, Garcés R. 2005. Spectroscopic characterization of ozonated sunflower oil. Ozone: Sci Eng. 27(3):247–253. doi:10.1080/01919510590945822.
  • Duričić D, Valpotić H, Samardžija M. 2015. Prophylaxis and therapeutic potential of ozone in Buiatrics: current knowledge. Anim Reprod Sci. 159:1–7. doi:10.1016/j.anireprosci.2015.05.017. Elsevier B.V.
  • Epelle EI, Macfarlane A, Cusack M, Burns A, Thissera B, Mackay W, Rateb ME, Yaseen M. 2022. Bacterial and fungal disinfection via ozonation in air. J Microbiol Methods. 194, 106431. doi:10.1016/j.mimet.2022.106431
  • Fitzpatrick E, Holland OJ, Vanderlelie JJ. 2018. Ozone therapy for the treatment of chronic wounds: a systematic review. Int Wound J. 15(4):633–644. doi:10.1111/iwj.12907.
  • Getaneh AM, Gebremedhin EZ. 2017. Meta-analysis of the prevalence of mastitis and associated risk factors in dairy cattle in Ethiopia. Trop Anim Health Prod. 49(4):697–705. doi:10.1007/s11250-017-1246-3.
  • Giagu A, Penati M, Traini S, Dore S, Addis MF. 2022. Milk proteins as mastitis markers in dairy ruminants - a systematic review. Vet Res Commun. 46(2):329–351. doi:10.1007/s11259-022-09901-y.
  • Ginel PJ, Negrini J, Guerra R, Lucena R, Ruiz-Campillo MT, Mozos E. 2021. Effect of topical ozonated sunflower oil on second intention wound healing in turtles: a randomised experimental study. J Vet Sci. 22:1–13. doi:10.4142/jvs.2021.22.e27.
  • Gonzalo C, Linage B, Carriedo JA, Juárez MT, Beneitez E, Martínez A, de La Fuente LF. 2009. Short communication: effect of dry therapy using an intramammary infusion on bulk tank somatic cell count in sheep. J Dairy Sci. 92(1):156–159. doi:10.3168/jds.2008-1403.
  • Grandi G, Cavallo R, Zanotto E, Cipriani R, Panico C, Protti R, Scapagnini G, Davinelli S, Costagliola C. 2022. In vitro antimicrobial activity of ozonated oil in liposome eyedrop against multidrug-resistant bacteria. Open Med. 17(1):1057–1063. doi:10.1515/med-2022-0495.
  • Gutiérrez-Falcón AI, Ramos-Nuez AM, de los Monteros y Zayas AE, Castillo DFP, García-Laorden MI, Chamizo-López FJ, Real Valcárcel F, Campelo FA, Benítez AB, Salgueiro PN, et al. 2021. Probiotic properties of Alcaligenes faecalis isolated from Argyrosomus regius in experimental peritonitis (Rat model). Probiotics Antimicrob Proteins. 13(5):1326–1337. doi:10.1007/s12602-021-09767-7.
  • Güzel-Seydim Z, Bever PI, Greene AK. 2004. Efficacy of ozone to reduce bacterial populations in the presence of food components. Food Microbiol. 21(4):475–479. doi:10.1016/j.fm.2003.10.001.
  • Hogan J, Larry Smith K. 2003. Coliform mastitis. Vet Res. 34(5):507–519. doi:10.1051/vetres:2003022.
  • Islas-Rodrìguez AE, Marcellini L, Orioni B, Barra D, Stella L, Mangoni ML. 2009. Esculentin 1-21: a linear antimicrobial peptide from frog skin with inhibitory effect on bovine mastitis-causing bacteria. J Pept Sci. 15(9):607–614. doi:10.1002/psc.1148.
  • Ismail ZB. 2017. Molecular characteristics, antibiogram and prevalence of multi-drug resistant Staphylococcus aureus (MDRSA) isolated from milk obtained from culled dairy cows and from cows with acute clinical mastitis. Asian Pac J Trop Biomed. 7(8):694–697. doi:10.1016/j.apjtb.2017.07.005.
  • Jahan M, Rahman M, Parvej MS, Chowdhury SMZH, Haque ME, Talukder MAK, Ahmed S. 2015. Isolation and characterization of Staphylococcus aureus from raw cow milk in Bangladesh. J Adv Vet Anim Res. 2(1):49–55. doi:10.5455/javar.2015.b47.
  • Jingar SC, Singh M, Roy AK. 2017. Economic losses due to clinical mastitis in cross-bred cows. Dairy and Vet Sci J. 3:2. doi:10.19080/JDVS.2017.03.555606.
  • Johns PJ, Turberg M, Willard K, Matagne D, Cheesman D. 2001. Stability of a second-generation cephalosporin veterinary mastitis formulation after electron beam irradiation. AAPS PharmSciTech. 2(4):28–34. http://www.pharmscitech.com.
  • Kannan G, Mahapatra AK, Degala HL. 2021. Preharvest management and postharvest intervention strategies to reduce Escherichia coli contamination in goat meat: a review. Animals (Basel) 11(10), 2943. doi:10.3390/ani11102943. MDPI.
  • Koseman A, Seker I, Risvanli A. 2019. Influence of intra-mammary ozone administration on udder health in herds with contagious mastitis in the context of management practices. Pol J Vet Sci. 22(4):703–710. doi:10.24425/pjvs.2019.129983.
  • Lakew BT, Fayera T, Ali YM. 2019. Risk factors for bovine mastitis with the isolation and identification of Streptococcus agalactiae from farms in and around Haramaya district, eastern Ethiopia. Trop Anim Health Prod. 51(6):1507–1513. doi:10.1007/s11250-019-01838-w.
  • Lim GH, Kelton DF, Leslie KE, Timms LL, Church C, Dingwell RT. 2007. Herd management factors that affect duration and variation of adherence of an external teat sealant. J Dairy Sci. 90(3):1301–1309. doi:10.3168/jds.S0022-0302(07)71618-1.
  • Martín-Barrasa JL, Cordovez CM, de Los Monteros Y Zayas AE, de Santa Ana MCJ, Varas BC, Thomas PH, Benitez AB, Montoya-Alonso JA, García-Bello M, Campelo FA, Tejedor-Junco MT. 2015. Rectal pre-treatment with ozonized oxygen (O3) aggravates clinic status in septic rats treated with amoxicillin/clavulanate. Enfermedades Infecciosas y Microbiología Clínica. 33(7):469–475. doi:10.1016/j.eimc.2014.09.006.
  • Megersa B, Tadesse C, Abunna F, Regassa A, Mekibib B, Debela E. 2010. Occurrence of mastitis and associated risk factors in lactating goats under pastoral management in Borana, Southern Ethiopia. Trop Anim Health Prod. 42(6):1249–1255. doi:10.1007/s11250-010-9557-7.
  • Meyer D, Haeussermann A, Hartung E. 2022. Amount and variation of strip yields collected by a defined hand-milking method after machine milking of Holstein dairy cows. Animal. 16(5):100508. doi:10.1016/j.animal.2022.100508.
  • Moatsou G, Park YW. 2017. Goat milk products: types of products, manufacturing technology, chemical composition, and marketing. In: Young W. Park, D. Min, George F. W. Haenlein, William L. Wendorff, editors. Handb milk non-bovine mamm. Hoboken (NJ): John Wiley & Sons, Ltd; p. 84–150. doi:10.1002/9781119110316.ch2.3.
  • Ogata A, Nagahata H. 2000. Intramammary application of ozone therapy to acute clinical mastitis in dairy cows. J Vet Med Sci. 62(7):681–686.
  • Ohtsuka H, Ogata A, Terasaki N, Koiwa M, Kawamura S. 2006. Changes in leukocyte population after ozonated autohemoadministration in cows with inflammatory diseases. J Vet Med Sci. 68(2):175–178 . doi:10.1292/jvms.68.175.
  • Önyay F, Küçükaslan İ, Ay SS, Findik M. 2015. Ozone treatment in veterinary gynecology and obstetrics: review. Turkiye Klinikleri J Vet Sci. 6(2):48–53. doi:10.5336/vetsci.2015-47260.
  • Patil S, Bourke P, Frias JM, Tiwari BK, Cullen PJ. 2009. Inactivation of Escherichia coli in orange juice using ozone. Inno Food Sci Emerg Technol. 10(4):551–557. doi:10.1016/j.ifset.2009.05.011.
  • Piletić K, Kovač B, Perčić M, Žigon J, Broznić D, Karleuša L, Lučić Blagojević S, Oder M, Gobin I. 2022. Disinfecting action of gaseous ozone on OXA-48-producing Klebsiella pneumoniae biofilm in vitro. Int J Environ Res Public Health. 19(10):6177. doi:10.3390/ijerph19106177.
  • Pollock J, Salter SJ, Nixon R, Hutchings MR. 2021. Milk microbiome in dairy cattle and the challenges of low microbial biomass and exogenous contamination. Anim Microbiome. 3:1. doi:10.1186/s42523-021-00144-x.
  • Rainard P, Foucras G, Martins RP. 2022. Adaptive cell-mediated immunity in the mammary gland of dairy ruminants. Front Vet Sci. 9. doi:10.3389/fvets.2022.854890.
  • Ramirez-Peña AM, Sánchez-Pérez A, Campos-Aranda M, Hidalgo-Tallón FJ. 2022. Ozone in patients with periodontitis: a clinical and microbiological study. J Clin Med. 11(10):2946. doi:10.3390/jcm11102946.
  • Rangel K, Cabral FO, Lechuga GC, Carvalh JPRS, Villas-Bôas MHS, Midlej V, De-Simone SG. 2022. Detrimental effect of ozone on pathogenic bacteria. Microorganisms. 10:40. doi:10.3390/microorganisms10010040.
  • Remondino M, Valdenassi L. 2018. Different uses of ozone: environmental and corporate sustainability. literature review and case study. Sustainability. 10(12):4783. doi:10.3390/su10124783.
  • Sechi LA, Lezcano I, Nunez N, Espim M, Dupre Á I, Pinna A, Molicotti P, Fadda G, Zanetti S. 2001. Antibacterial activity of ozonized sunflower oil (Oleozon). J Appl Microbiol. 90(2):279–284. doi:10.1046/j.1365-2672.2001.01235.x.
  • Shinozuka Y, Hirata H, Ishibashi I, Okawa Y, Kasuga A, Takagi M, Taura Y. 2009. Therapeutic efficacy of mammary irrigation regimen in dairy cattle diagnosed with acute coliform mastitis. J Vet Med Sci. 71(3):269–273.
  • Skalska K, Ledakowicz S, Perkowski J, Sencio B. 2009. Germicidal properties of ozonated sunflower oil. Ozone: Sci Eng. 31(3):232–237. doi:10.1080/01919510902838669.
  • Sunder J, De AK, Jeyakumar S, Kundu A. 2013. Effect of feeding of Morinda citrifolia fruit juice on the biophysical parameters of healthy as well as mastitis-affected cow milk. J Appl Anim Res. 41(1):29–33. doi:10.1080/09712119.2012.738212.
  • Taga I, Lan CQ, Altosaar I. 2012. Plant essential oils and mastitis disease: their potential inhibitory effects on pro-inflammatory cytokine production in response to bacteria related inflammation.. Nat Prod Commun. 7(5):675–682. PMID: 22799106.
  • Tomasinsig L, de Conti G, Skerlavaj B, Piccinini R, Mazzilli M, D’Este F, Tossi A, Zanetti M. 2010. Broad-spectrum activity against bacterial mastitis pathogens and activation of mammary epithelial cells support a protective role of neutrophil cathelicidins in bovine mastitis. Infect Immun. 78(4):1781–1788. doi:10.1128/IAI.01090-09.
  • Torres-Mata LB, García-Pérez O, Rodríguez-Esparragón F, Blanco A, Villar J, Ruiz-Apodaca F, Martín-Barrasa JL, González-Martín JM, Serrano-Aguilar P, Piñero JE, et al. 2022. Ozone eliminates SARS-CoV-2 from difficult-to-clean office supplies and clinical equipment. Int J Environ Res Public Health. 19:8672. doi:10.3390/ijerph19148672.
  • Vishnupriya S, Antony PX, Mukhopadhyay HK, Pillai RM, Thanislass J, Vivek Srinivas VM, Sumanth Kumar R. 2014. Methicillin resistant staphylococci associated with bovine mastitis and their zoonotic importance. Veterinary World. 7(6):422–427. doi:10.14202/vetworld.2014.422-427.
  • Wang H, Yuan L, Wang T, Cao L, Liu F, Song J, Zhang Y. 2022. Construction of the waaF subunit and DNA vaccine against Escherichia coli in cow mastitis and preliminary study on their immunogenicity. Front Vet Sci. 9:877685. doi:10.3389/fvets.2022.877685.
  • Wang X, Liao D, Ji QM, Yang YH, Li MC, Yi XY, Li C, Chen Y, Tao HB, Zhai WH. 2022. Analysis of bactericidal effect of three medical ozonation dosage forms on multidrug-resistant bacteria from burn patients. Infect Drug Resist. 15:1637–1643. doi:10.2147/IDR.S353277.
  • Whist AC, Østerås O, Sølverød L. 2006. Clinical mastitis in Norwegian herds after a combined selective dry-cow therapy and teat-dipping trial. J Dairy Sci. 89(12):4649–4659. doi:10.3168/jds.S0022-0302(06)72515-2.
  • Zamora Rodríguez ZB, González Álvarez R, Guanche D, Merino N, Hernández Rosales F, Menéndez Cepero S, Alonso González Y, Schulz S. 2007. Antioxidant mechanism is involved in the gastroprotective effects of ozonized sunflower oil in ethanol-induced ulcers in rats. Mediat Inflamm. 2007:1–6. doi:10.1155/2007/65873.
  • Zerillo L, Polvere I, Varricchio R, Madera JR, D’Andrea S, Voccola S, Franchini I, Stilo R, Vito P, Zotti T. 2022. Antibiofilm and repair activity of ozonated oil in liposome. Microb Biotechnol. 15(5):1422–1433. https://doi.org/10.1111/1751-7915.13949.