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Evaluation of the microbiological quality of some dairy products

 und    | 24. Dez. 2018

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[1] A. Agarwal, V. Awasthi, A. Dua, S. Ganguly, V. Garg, S. S. Marwaha, Microbiological profile of milk: impact of household practices. Indian Journal of Public Health, 56. 1. (2012) 88–94.10.4103/0019-557X.96984Search in Google Scholar

[2] M. H. Al-Khafaji, M. T. Flayyih, Relationship between methicillin resistance and the presence of femA and mecAgenes in coagulase positive and negative staphylococci isolated from milk and cheese. World Journal of Experimental Biosciences, 3. (2015) 50–56.Search in Google Scholar

[3] S. Andre, T. Vallaeys, S. Planchon, Spore-forming bacteria responsible for food spoilage. Research in Microbiology, 168. (2017) 379–387.10.1016/j.resmic.2016.10.00327989764Search in Google Scholar

[4] N. A. Andreani, L. Fasolato, Pseudomonas and related Genera. In: A. Bevilacqua, M. R. Corbo, M. Sinigaglia (eds.), The microbiological quality of food. Woodhead Publishing. Amsterdam (2017).10.1016/B978-0-08-100502-6.00005-4Search in Google Scholar

[5] A. K. Biswas, P. K. Mandal, Meat-borne pathogens and use of natural antimicrobials for food safety. In: Om V. Singh (ed.), Foodborne pathogens and antibiotic resistance. John Wiley & Sons, Inc. Published, Hoboken (2017).10.1002/9781119139188.ch10Search in Google Scholar

[6] M. Brasca, M. Decimo, S. Morandi, S. G. Machado, F. Bagliniére, M. C. D. Vanetti, Psychrotrophic bacteria. In: P. Poltronieri (ed.), Microbiology in dairy processing: challenges and opportunities. Wiley-Blackwell (2018).10.1002/9781119115007.ch3Search in Google Scholar

[7] V. Carfora, A. Caprioli, N. Marri, D. Sagrafoli, C. Boselli, G. Giacinti, G. Giangolini, L. Sorbara, S. Dottarelli, A. Battisti, S. Amatiste, Enterotoxin genes, enterotoxin production, and methicillin resistance in Staphylococcus aureus isolated from milk and dairy products in Central Italy. International Dairy Journal, 42. (2015) 12–15.10.1016/j.idairyj.2014.10.009Search in Google Scholar

[8] W. Chajęcka-Wierzchowska, A. Zadernowska, Antibiotic resistance of coagulase-positive and coagulase-negative Staphylococci isolated from food. In: Om. V. Singh (ed.), Foodborne pathogens and antibiotic resistance. John Wiley & Sons, Inc. Published, Hoboken (2017).10.1002/9781119139188.ch15Search in Google Scholar

[9] T. Deák, J. Farkas, Microbiology of thermally preserved foods, canning and novel physical methods. DEStech Publications, Pennsylvania (2013).Search in Google Scholar

[10] T. Douëllou, S. Delannoy, S. Ganet, P. Mariani-Kurkdjian, P. Fach, E. Loukiadis, M. Montel, D. Thevenot-Sergentet, Shiga toxin-producing Escherichia coli strains isolated from dairy products – Genetic diversity and virulence gene profiles. International Journal of Food Microbiology, 232. (2016) 52–62.10.1016/j.ijfoodmicro.2016.04.03227257743Search in Google Scholar

[11] EFSA, Opinion of the scientific panel on biological hazards on Bacillus cereus and other Bacillus spp. in foodstuffs. EFSA J., 175. (2005) 1–48.Search in Google Scholar

[12] M. G. El-Ziney, Evaluation of microbiological quality and safety of milk and dairy products with reference to European and Gulf Standards. Food and Public Health, 8. 2. (2018) 47–56.Search in Google Scholar

[13] D. Ercan, F. Korel, H. Orsahin, Microbiological quality of artisanal Sepet cheese. International Journal of Dairy Technology, 67. 3. (2014) 384–393.10.1111/1471-0307.12125Search in Google Scholar

[14] A. Eroglu, M. Dogan, O. S. Toker, M. T. Yilmaz, Classification of Kashar cheeses based on their chemical, color and instrumental textural characteristics using principal component and hierarchical cluster analysis. International Journal of Food Properties, 18. (2015) 909–921.10.1080/10942912.2013.864673Search in Google Scholar

[15] L. Garnier, F. Valence, J. Mounier, Diversity and control of spoilage fungi in dairy products: an update. Microorganisms, 5(3). 42. (2017) 133.10.3390/microorganisms5030042562063328788096Search in Google Scholar

[16] A. A. Grutsch, P. S. Nimmer, R. H. Pittsley, J. L. McKillip, Bacillus spp. as Pathogens in the Dairy Industry. In: A. M. Holban, A. M. Grumezescu (eds), Foodborne Diseases. Academic Press, London (2018).10.1016/B978-0-12-811444-5.00007-5Search in Google Scholar

[17] J. Kümmel et al., Staphylococcus aureus entrance into the dairy chain: tracking S. aureus from dairy cow to cheese. Frontiers in Microbiology, 7. 1603. (2016).10.3389/fmicb.2016.01603506177627790200Search in Google Scholar

[18] J. W.-F. Law, V. Letchumanan, K.-G. Chan, B.-H. Goh, L.-H. Lee, Insights into detection and identification of foodborne pathogens. In: O. M. V. Singh (ed.), Foodborne pathogens and antibiotic resistance. John Wiley & Sons, Inc. Published (2017).Search in Google Scholar

[19] H. L. Ledenbach, R. T. Marshall, Microbiological spoilage of dairy products. In: W. H. Sperber, M. P. Doyle (eds), Compendium of the microbiological spoilage of foods and beverages, food microbiology and food safety. Springer, New York (2009).10.1007/978-1-4419-0826-1_2Search in Google Scholar

[20] S. G. Lopez-Brea, N. Gómez-Torres, M.Á. Arribas, Spore-forming bacteria in dairy products. In: P. Poltronieri (ed.), Microbiology in dairy processing: challenges and opportunities. John Wiley & Sons Ltd and the Institute of Food Technologists (2018).10.1002/9781119115007.ch2Search in Google Scholar

[21] M. Lu, N. S. Wang, Spoilage of milk and dairy products. In: A. Bevilacqua, M. R. Corbo, M. Sinigaglia (eds), The microbiological quality of food. Woodhead Publishing, Amsterdam (2017).Search in Google Scholar

[22] N. H. Martin, A. Trmčić, T.-H. Hsieh, K. J. Boor, M. Wiedmann, The evolving role of coliforms as indicators of unhygienic processing conditions in dairy foods. Frontiers in Microbiology, 7. 1549. (2016).10.3389/fmicb.2016.01549504302427746769Search in Google Scholar

[23] G. Moatsou, E. M. Barbaros, Microbiology of raw milk. In: B. Özer, G. Akdemir-Evrendilek (eds), Dairy microbiology and biochemistry: Recent developments. CRC Press (2015).10.1201/b17297-2Search in Google Scholar

[24] M. Pintado, A. Gomes da Cruz, P. B. Zacarchenco, H. Rodrigues de Sáin, Cheese Microbiology, In: B. Özer, G. Akdemir-Evrendilek (eds), Dairy microbiology and biochemistry: Recent developments. CRC Press, Boca Raton (2015).Search in Google Scholar

[25] A. Raposo, E. Pérez, C. Tinoco de Faria, M. A. Ferrús, C. Carrascosa, Food spoilage by Pseudomonas spp. – An overview. In: Om. V. Singh (ed.), Foodborne pathogens and antibiotic resistance. John Wiley & Sons, Inc. Published, Hoboken (2017).10.1002/9781119139188.ch3Search in Google Scholar

[26] F. Remize, Spore-Forming Bacteria. In: A. Bevilacqua, M. R. Corbo, M. Sinigaglia (eds), The microbiological quality of food. Woodhead Publishing, Amsterdam (2017).10.1016/B978-0-08-100502-6.00007-8Search in Google Scholar

[27] I. M. Sulaiman, Y.-H. Hsieh, Foodborne pathogens in milk and dairy products: genetic characterization and rapid diagnostic approach for food safety of public health importance. In: R. Watson, R. J. Collier, V. Preedy (eds), Dairy in human health and disease across the lifespan. Academic Press, London (2017).10.1016/B978-0-12-809868-4.00009-1Search in Google Scholar

[28] E. Tirloni, E. Ghelardi, F. Celandroni, C. Bernardi, S. Stella, Effect of dairy product environment on the growth of Bacillus cereus. Journal of. Dairy Science, 100. 9. (2017) 7026–7034.10.3168/jds.2017-1297828711259Search in Google Scholar

[29] A. Trmčić, K. Chauhan, D. J. Kent, R.D. Ralyea, N. H. Martin, K. J. Boor, M. Wiedmann, Coliform detection in cheese is associated with specific cheese characteristics, but no association was found with pathogen detection. Journal of Dairy Science, 99. 8. (2016) 6105–6120.10.3168/jds.2016-1111227289158Search in Google Scholar

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