The petpopulationissteadilyincreasingworldwide,andtreats,whichaccountforapproximately15%ofthepetfoodmarket,are the fastest-growingsegmentofthepetfoodindustry.However,thewidespreaduseofantimicrobialsinpoultryfarmsmaypose a directrisktopets’health,leadingtotheemergenceofantimicrobialresistance.Forthisreason,wesoughttoassessthepossible presence ofdrugresiduesandantimicrobial-resistantbacteriainalimitedcohortof11dehydratedchickenfeetintendedasdog treats purchasedfromtheEuropeanmarket.Residuesofnicarbazin(64%),4-4Cdinitrocarbanilide(64%),semicarbazide(91%), decoquinate (9%),cypermethrin(27%),dichlorvos(9%),pirimiphos-methyl(36%),piperonylbutoxide(18%),toltrazurilsulfone (9%), doxycycline(9%),lasalocidA(9%),monensinA(9%),and37bacterialstrainsbelongingtothe Staphylococcus genus (S. warneri, S. haemolyticus, S. pasteuri, and S. intermedius) weredetectedamongallsamples. S. warneri species wasresistantto oxacillin, erythromycin,clindamycin,teicoplanin,andtetracycline(25%,25%,37.5%,6.25%,and6.25%,respectively), S. haemolyticus was alsoresistanttoerythromycin,clindamycin,teicoplanin,andtetracycline(52.9%,11.7%,29.4%,and35.2%, respectively), while S. pasteuri was resistanttobothoxacillinandclindamycin(66.6%and33.3%,respectively).Noresistancewas detected for S. intermedius. Thedetectionofmultipleresiduesfurthersuggeststhepossibilityofcumulativeorsynergistictoxic eEects, especiallywithprolongedintake.Inthissense,aOneHealthapproachtomitigaterisksassociatedwithantimicrobial resistance andchemicalexposureinpetsand,inturn,inhumansbecomesmandatory.
Screening of Chemical Residues and Antimicrobial Resistance in Dehydrated Chicken Feet Intended as Dog Treats: A Pilot Study / Marini, C., Lipani, F., Sabia, C., Nicotra, M., Iseppi, R., Biscontini, G., Cerquetella, M., Meschiari, M., Gregorio, G.D., Alagawany, M., Tardugno, R., Corbo, F., Cerbo, A.D.. - In: VETERINARY MEDICINE INTERNATIONAL (PRINT). - ISSN 2090-8113. - 2026:1(2026), pp. 1-15. [10.1155/vmi/4081691]
Screening of Chemical Residues and Antimicrobial Resistance in Dehydrated Chicken Feet Intended as Dog Treats: A Pilot Study
Lipani, FrancescoMethodology
;Sabia, Carla
Writing – Original Draft Preparation
;Iseppi, RamonaWriting – Original Draft Preparation
;Meschiari, MarcoMethodology
;Tardugno, RobertaMembro del Collaboration Group
;Cerbo, Alessandro Di
Project Administration
2026
Abstract
The petpopulationissteadilyincreasingworldwide,andtreats,whichaccountforapproximately15%ofthepetfoodmarket,are the fastest-growingsegmentofthepetfoodindustry.However,thewidespreaduseofantimicrobialsinpoultryfarmsmaypose a directrisktopets’health,leadingtotheemergenceofantimicrobialresistance.Forthisreason,wesoughttoassessthepossible presence ofdrugresiduesandantimicrobial-resistantbacteriainalimitedcohortof11dehydratedchickenfeetintendedasdog treats purchasedfromtheEuropeanmarket.Residuesofnicarbazin(64%),4-4Cdinitrocarbanilide(64%),semicarbazide(91%), decoquinate (9%),cypermethrin(27%),dichlorvos(9%),pirimiphos-methyl(36%),piperonylbutoxide(18%),toltrazurilsulfone (9%), doxycycline(9%),lasalocidA(9%),monensinA(9%),and37bacterialstrainsbelongingtothe Staphylococcus genus (S. warneri, S. haemolyticus, S. pasteuri, and S. intermedius) weredetectedamongallsamples. S. warneri species wasresistantto oxacillin, erythromycin,clindamycin,teicoplanin,andtetracycline(25%,25%,37.5%,6.25%,and6.25%,respectively), S. haemolyticus was alsoresistanttoerythromycin,clindamycin,teicoplanin,andtetracycline(52.9%,11.7%,29.4%,and35.2%, respectively), while S. pasteuri was resistanttobothoxacillinandclindamycin(66.6%and33.3%,respectively).Noresistancewas detected for S. intermedius. Thedetectionofmultipleresiduesfurthersuggeststhepossibilityofcumulativeorsynergistictoxic eEects, especiallywithprolongedintake.Inthissense,aOneHealthapproachtomitigaterisksassociatedwithantimicrobial resistance andchemicalexposureinpetsand,inturn,inhumansbecomesmandatory.| File | Dimensione | Formato | |
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