Quality profile of catfoods
DOI:
https://doi.org/10.33448/rsd-v10i1.12239Keywords:
Aflatoxin; Bromatological; Microbiological.Abstract
There is a series of feeds aimed at cats in the pet market, amongst which extruded feeds stand out, because their manufacturing process goes through thermal treatment. Such process is the main factor for the reduction of microbial contamination, as well as the action of the water in the feed. This is responsible for controlling degradation by bacteria and fungi after the manufacturing process. After opening the packages, there are several ways and factors that lead to contamination in feed. This study aimed at assessing cat feeds for their microbioligical and brotmathological content. For this, we analyzed different kinds of cat feed in the original package and traded in bulk, with different types of classification as to their quality. The assessments consisted in finding if the nutrients of the feeds were within the minimum levels required by the Manual Pet Food Brazil (2014). Analyses were performed to determine the presence of Salmonellae spp., Eschirichia coli, coliforms at 35ºC e 45ºC, Aspergillus spp e Penicillium spp; and also, for the existence of aflatoxin in the feeds. The microbiological results showed that the feeds traded unpackaged in the city of Alfenas Minas Gerais obtained results with higher levels of contamination in relation to those traded in their original packaging. This showed that the feeds exposed to the environment may compromise their microbiological quality and endanger the pets’ health. These results prove the need of greater restrictions to the trading of feeds in bulk, so that the degradation of the product is reduced, thus preserving the quality of the feed and the safety of the cats.
References
Andrade, R. M. D., & Nascimento, J. S. D. (2005). Presença de fungos filamentosos em ração para cães comercializadas na cidade de Pelotas–RS. Rio Grande do Sul.
Animal-CBAA, C. B. D. A. (2009). Guia de métodos analíticos. São Paulo: Sindirações.
Aquino, S., Morales, M. A., Esper, R. H., Reis, F. C., Manginelli, S., & Potenza, M. R. (2011). Determinação da contaminação fúngica e análise da atividade de água de rações vendidas a granel no município de São Paulo. Revista de Educação Continuada em Medicina Veterinária e Zootecnia do CRMV-SP, 9(2), 32-32. https://www.revistamvez-crmvsp.com.br/index.php/recmvz/article/view/387
Balbani, A. P. S., & Butugan, O. (2001). Contaminação biológica de alimentos. Pediatria, 23(4), 320-328. http://files.professorafernandatome.webnode.com/200000118-38e663ad9e/Artigo%20-%20contaminacao%20biologica%20alimento.pdf
Barbosa, I. P., Rodrigues, A. M. D., Muratori, M. C. S., de Sousa Ferreira, M. D., das Chagas Cardoso Filho, F., & Pereira, M. M. G. (2014). Espécies fúngicas isoladas de ração para gatos comercializadas. PUBVET, 8, 1822-1939. http://www.pubvet.com.br/artigo/1402/p-styletext-align-justify-aligncenterstrongespeacutecies-fuacutengicas-isoladas-de-raccedilatildeo-para-gatos-comercializadasstrongp
Berchieri Junior, A. (1983). Contaminação por Salmonella em farinhas de origem animal utilizadas no preparo de rações. https://pesquisa.bvsalud.org/portal/resource/pt/ses-25028
Berchieri Junior, A., Adachi, S. Y., Calzada, C. T., Paulilo, A. C., Schoken-Iturrino, R. P., & Tavechio, A. T. (1989). Farinha de carne como fonte de Salmonella em granja avícola. Pesqui. vet. bras, 9-12. https://pesquisa.bvsalud.org/portal/resource/pt/lil-114040
Bernardi, E., & NASCIMENTO, J. D. (2005). Fungos Anemófilos na praia do Laranjal, Pelotas, Rio Grande do Sul, Brasil. Arquivo do Instituto Biológico de São Paulo, 72(1), 93-97. http://www.biologico.sp.gov.br/uploads/docs/arq/V72_1/bernardi.PDF
Butolo, J. E. (2002). Qualidade de ingredientes na alimentação animal. JE Butolo.
Cappelli, S., Lunedo, P., Freitas, C. P., Raber, H. R., Manica, E., Hashimoto, J. H., & Oliveira, V. (2016). Avaliação química e microbiológica das rações secas para cães e gatos adultos comercializadas a granel. Revista Brasileira de Higiene e Sanidade Animal, 10(1), 90-102. http://www.higieneanimal.ufc.br/seer/index.php/higieneanimal/article/view/304
Carciofi, A. (2007). Como a dieta influencia o pH urinário e a formação de cálculos em cães e gatos. Anais do Simpósio sobre nutrição de animais de estimação. Campinas, CBNA, 13-26.
Cardoso Filho, F. D. C., Calvet, R. M., Rosa, C. A. D. R., Pereira, M. M. G., Costa, A. P. R., & Muratori, M. C. S. (2013). Monitoramento de fungos toxigênicos e aflatoxinas em rações utilizadas em piscicultura. Ciência Animal Brasileira, 14(3), 305-311. https://www.scielo.br/scielo.php?pid=S1809-68912013000300005&script=sci_arttext
Case, L. P., Carey, D. P., & Hirakawa, D. A. (1997). Nutrição canina e felina: manual para profissionais. Harcourt Brace de España.
Cho, J. I., Hong, K. W., & Kang, K. J. (2000). Control of Aflatoxin Production of Aspergillus flavus by Inghbitory Action of Antagonistic Bacteria. Journal of microbiology and biotechnology, 10(2), 154-160.
Copetti, M. V. (2005). Avaliação micológica de rações comerciais para cães e gatos e potencial micotoxinogênico de espécies selecionadas. https://www.koreascience.or.kr/article/JAKO200011919943913.page
da Silva, N. (2007). Manual de métodos de análise microbiológica de alimentos. Varela.
da Silva, N., Junqueira, V. C. A., de Arruda Silveira, N. F., Taniwaki, M. H., Gomes, R. A. R., & Okazaki, M. M. (2017). Manual de métodos de análise microbiológica de alimentos e água. Editora Blucher.
França, J., Saad, F. M. O. B., Saad, C. E. P., Silva, R. C., & Reis, J. S. (2011). Avaliação de ingredientes convencionais e alternativos em rações de cães e gatos. Revista Brasileira de Zootecnia, 40, 222-231.
Hillmann, F., Novohradská, S., Mattern, D. J., Forberger, T., Heinekamp, T., Westermann, M., ... & Brakhage, A. A. (2015). Virulence determinants of the human pathogenic fungus A spergillus fumigatus protect against soil amoeba predation. Environmental microbiology, 17(8), 2858-2869.
Horwitz, W. (2010). Official methods of analysis of AOAC International. Volume I, agricultural chemicals, contaminants, drugs/edited by William Horwitz. Gaithersburg (Maryland): AOAC International, 1997... https://sfamjournals.onlinelibrary.wiley.com/doi/abs/10.1111/1462-2920.12808
Keller, m., queiroz, b., keller l, a. M., ribeiro, j. M. M., & rosa, c. (2005). Isolados de amostras de rações destinadas a alimentação de equinos no Estado do Rio deJaneiro. Revista Universidade Rural Série Ciências da Vida, 25(1), 93-96.
Klowden, M. J., & Greenberg, B. (1976). Salmonella in the American cockroach: evaluation of vector potential through dosed feeding experiments. Epidemiology & Infection, 77(1), 105-111. https://ambridge.org/core/journals/epidemiology-and-infection/article/salmonella-in-the-american-cockroach-evaluation-of-vector-potential-through-dosed-feeding-experiments/53ED17AD5774E7ACA944BB4EBBAE4B7C
Kopanic Jr, R. J., Sheldon, B. W., & Wright, C. G. (1994). Cockroaches as vectors of Salmonella: laboratory and field trials. Journal of food protection, 57(2), 125-135. https://meridian.allenpress.com/jfp/article/57/2/125/166901/Cockroaches-As-Vectors-of-Salmonella-Laboratory
Kumar, P., Mahato, D. K., Kamle, M., Mohanta, T. K., & Kang, S. G. (2017). Aflatoxins: a global concern for food safety, human health and their management. Frontiers in microbiology, 7, 2170. https://www.frontiersin.org/articles/10.3389/fmicb.2016.02170/full
Kwaga, J. K. P., Adesiyun, A. A., Abdullahi, S. U., & Bello, C. S. S. (1989). Prevalence of salmonellae, shigellae and Plesiomonas shigelloides in dogs in Zaria, Nigeria. British Veterinary Journal, 145(2), 174-177. https://www.sciencedirect.com/science/article/abs/pii/0007193589901012
Manual Pet Food Brasil (2015). Associação Brasileira da Indústria de Produtos para Animais de Estimação. 8. ed. [S.1: S.N].
Maziero, M. T., & Bersot, L. D. S. (2010). Micotoxinas em alimentos produzidos no Brasil. Revista brasileira de produtos agroindustriais, 12(1), 89-99. https://www.cabdirect.org/cabdirect/abstract/20113122465
Minami, P. S. (2003). Micologia: métodos laboratoriais de diagnóstico das micoses. Revista do Instituto de Medicina Tropical de São Paulo, 45(1), 10-10.
Monferdini, R. P., & Oliveira, J. D. (2009). Nutritional management of dogs and cats with urolithiasis-review. Acta Veterinaria Brasilica, 3(1), 1-4. https://www.cabdirect.org/cabdirect/abstract/20093318813
Moreau, R. L. de M., & Siqueira, M. E. P. B. de. (2016). Toxicologia Analítica. Rio de Janeiro: Guanabara Koogan.
Riddell, R. W. (1950). Permanent stained mycological preparations obtained by slide culture. Mycologia, 42(2), 265-270. https://www.tandfonline.com/doi/abs/10.1080/00275514.1950.12017830?journalCode=umyc20
Romani, L. (2004). Immunity to fungal infections. Nature Reviews Immunology, 4(1), 11-24. https://www.nature.com/articles/nri1255?report=reader
Santos, F. C. F. (2006). Fungos em rações para camarões cultivados no Estado do Piauí (Doctoral dissertation, Dissertação (Mestrado em Ciência Animal). Universidade Federal do Piauí, Teresina).
Scudamore, K. A., Hetmanski, M. T., Nawaz, S., Naylor, J., & Rainbird, S. (1997). Determination of mycotoxins in pet foods sold for domestic pets and wild birds using linked‐column immunoassay clean‐up and HPLC. Food Additives & Contaminants, 14(2), 175-186. https://www.tandfonline.com/doi/abs/10.1080/02652039709374512
Scussel, V. M., Lorini, I., & Mike, L. H. (2002). Fatores que favorecem o desenvolvimento de fungos e produção de toxinas. LORINI, I.; MIIKE, LH: SCUSSEL, VM Armazenagem de grãos. Campinas: IBG.
Singh, S. P., Sethi, M. S., & Sharma, V. D. (1980). The occurrence of salmonellae in rodent, shrew, cockroach and ant. International journal of zoonoses, 7(1), 58-61. https://europepmc.org/article/med/7461919
Sylos, C. M. D., & Amaya, D. R. (1996). Estudo comparativo de métodos para determinaçäo de aflatoxina M1. Rev. Inst. Adolfo Lutz, 87-97. https://pesquisa.bvsalud.org/portal/resource/pt/lil-176088
Tezcan-Merdol, D. (2004). The Salmonella enterica virulence: Its role in bacterial adaption to mammalian and protozoan cells. Mikrobiologiskt och Tumörbiologiskt Centrum (MTC)/Microbiology and Tumor Biology Center (MTC). https://openarchive.ki.se/xmlui/handle/10616/43211
Viel, P., Degenhardt, R., & D’Agostini, F. M. (2014). PRESENÇA DE SALMONELLA SPP. EM FE-ZES DE GATOS NO MUNICÍPIO DE OURO, SC. Unoesc & Ciência-ACBS, 5(2), 203-208.
Volf, J., Stepanova, H., Matiasovic, J., Kyrova, K., Sisak, F., Havlickova, H., ... & Rychlík, I. (2012). Salmonella enterica serovar Typhimurium and Enteritidis infection of pigs and cytokine signalling in palatine tonsils. Veterinary microbiology, 156(1-2), 127-135. https://www.sciencedirect.com/science/article/pii/S0378113511005475
Zain, M. E. (2011). Impact of mycotoxins on humans and animals. Journal of Saudi chemical society, 15(2), 129-144. https://www.sciencedirect.com/science/article/pii/S1319610310000827
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Copyright (c) 2021 André Gomes Faria; Alexandre José de Oliveira; Géssica Corrêa; Édina de Fátima Aguiar ; Luciana Rosa Alves Rufino ; Nhayandra Christina Dias e Silva ; Nelma de Mello Silva Oliveira
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