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Food Science & Technology

Activation of lactoperoxidase system and its potential for microbial inhibition and preservation of milk in the Great African Rift Valley climate

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Article: 2247691 | Received 18 Jun 2022, Accepted 09 Aug 2023, Published online: 22 Aug 2023

References

  •  
  • I. D. F. (1988). Code of practice for the preservation of raw milk by the lactoperoxidase system. In Bulletin No (Vol. 234). International Dairy Federation.
  • Al-Baarri, A. N., Damayanti, N. T., Legowo, A. M., Tekiner, E. H. J., & Hayakawa, S. (2019). Enhanced antibacterial activity of lactoperoxidase–thiocyanate–hydrogen peroxide system in reduced-lactose milk whey. International Journal of Food Science, 2019, 1–12. https://doi.org/10.1155/2019/8013402
  • Amakelew, S., Eshetu, M., Animut, G., & Gebeyew, K. (2015). Microbial quality of cow milk in Dawa Chefa District, Amhara Region, Ethiopia. Advances in Dairy Research, 3(2), 135. https://doi.org/10.4172/2329-888X.1000135
  • Ay, M., & Bostan, K. (2016). Effects of activated LPS on microbiological quality of raw milk. Kafkas üniversitesi Veteriner Fakültesi Dergisi. https://doi.org/10.9775/kvfd.2016.15993
  • Ayza, A., & Olikamo, Y. (2020). A review on the role of smallholders’ milk production in Ethiopia. Research and Reviews: Journal of Food and Dairy Technology, 8(3), 1–7. https://www.rroij.com/open-access/investigating-the-relationship-between-aspects-of-support-and-performance-amongdairy-employees.pdf
  • Bafort, F., Parisi, O., Perraudin, J. P., & Jijakli, M. H. (2014). Mode of action of lactoperoxidase as related to its antimicrobial activity: A review. Enzyme Research, 2014, 1–13. https://doi.org/10.1155/2014/517164
  • Bekele, A., Mitiku, E., Yonas, H., & Egon, B. H. (2017). Activation of LPS: Evaluation of the acidification rate, microbial quality, and shelf life of camel and cow milk. East African Journal of Sciences, 11(2), 107–116.
  • Brasesco, F., Asgedom, D., & Sommacal, V. (2019). Strategic analysis and intervention plan for cow milk and dairy products in the agro-commodities procurement zone of the pilot integrated agro-industrial park in central-Eastern Oromia, Ethiopia. FAO. www.fao.org/3/ca4200en/CA4200EN.pdf
  • Campos-Vallejo, M., Puga-Torres, B., Núñez-N, L., De la Torre-Duque, D., Morales-Arciniega, S., & Vayas, E. (2017). Evaluation of the use of sodium thiocyanate and sodium Percarbonate in the activation of the LPs in the conservation of raw milk without refrigeration in the Ecuadorian Tropics. Food and Nutrition Sciences, 8(5), 526–534. https://doi.org/10.4236/fns.2017.85036
  • Corbo, M. R., Bevilacqua, A., Campaniello, D., D’Amato, D., Speranza, B., & Sinigaglia, M. (2009). Prolonging microbial shelf life of foods through the use of natural compounds and non-thermal approaches – a review. International Journal of Food Science and Technology, 44(2), 223–241. https://doi.org/10.1111/j.1365-2621.2008.01883.x
  • Demissu, H., Fekadu, B., & Gemeda, D. (2014). Dairy productive potential, challenges and production opportunities of horro and their F1 JerseyCrossbred cows: A case of Guduru livestock production and research center and its surroundings, West Oromia, Ethiopia. Science, Technology and Arts Research Journal, 3(4), 79–84. https://doi.org/10.4314/star.v3i4.11
  • Ethiopian Standard (ES). (2009). Unprocessed whole/raw cow milk specification. Ethiopian Standard Agency, (2nd ed.). ( ES: 3460:2009).
  • Fanta, D. G., Hani, S., Fufa, D., Takele, B. T., & Dinka, A. (2019). Assessment of the effect of activated lactoperoxidase system on keeping quality of raw cow milk under different climatic zones of Ethiopia. Journal of Dairy & Veterinary Sciences, 10(5), 555796. https://doi.org/10.19080/JDVS.2019.10.555796
  • FAO/WHO. (2005). Benefits and potential risks of the LPS on raw milk preservation report of FAO/WHO technical meeting. FAO Headquarters,
  • Farrell, J. (2021). Dairy in Ethiopia. Application of the supply chain analysis for Nutrition (SCAN) tool. Global Alliance for Improved Nutrition (GAIN). Briefing Paper #7. https://doi.org/10.36072/bp.7
  • Fatine, H., Abdelmoula, E., Doha, B., & Hinde, H. (2012). Bacterial quality of informally marketed raw milk in Kenitra city, Morocco. Pakistan Journal of Nutrition, 11(8), 662–669. https://doi.org/10.3923/pjn.2012.760.767
  • Firew, K., Zelalem, Y., Getnet, A., Tadesse, B., Yohannes, G., Rahel, N., & Binyam, K. (2013). Evaluation of LP-system as raw milk preservative at different storage temperature conditions in the central highlands of Ethiopia. Livestock Research for Rural Development, 25, 4. http://www.lrrd.org/lrrd25/4/kass25068.htm
  • Food and Agriculture Organization (FAO). (2013). The LPS. Scientific excellence Industry applicability Strategic networking Global influence IDF Factsheet –January, 2013.
  • Food and Agriculture Organization (FAO). (2017). Gender assessment of dairy value chains: Evidence from Ethiopia. FAO,(Herego, E, Ed.)
  • Galeano Lopez, B. (2012). Efecto del sistema lactoperoxidasa en la conservacion de la leche cruda en dos fincas de la comunidad Monte Rosa, El Rama—RAAS, Nicaragua. Universidad Nacional Agraria de Nicaragua.
  • Gebreselassie, N. (2020). Review on challenges and opportunities of milk production in Ethiopia. Food Science, 95, 29–33. https://www.iiste.org/Journals/index.php/FSQM/article/view/51895/53632
  • Gershom, N., & Ssemakula, E. (2017). Traditional methods of milk processing and preservation by local farmers in Kashongi sub County Kiruhura District. American Journal of Science, Engineering and Technology, 2(2), 62–71. https://doi.org/10.11648/j.ajset.20170202.12
  • Golmohamadi, A., Morra, M. J., Popova, I., & Nindo, C. I. (2016). Optimising the use of Sinapis alba seed meal extracts as a source of thiocyanate (SCN–) for the lactoperoxidase system. LWT - Food Science and Technology, 72, 416–422. https://doi.org/10.1016/j.lwt.2016.05.007
  • Gould, G. (2001). Symposium on ‘Nutritional effects of new processing technologies’ New processing technologies: An overview. The Proceedings of the Nutrition Society, 60(4), 463–474. https://doi.org/10.1079/PNS2001105
  • Hamid, O. I. A., & Musa, Z. A. B. (2013). Effect of different levels of sodium thiocyanate and percarbonate for activation of lactoperoxidase on the keeping quality of raw milk. Journal of Advanced Scientific Research, 4(1), 27–30.
  • Helen, N., & Seifu, E. (2007). Effect of the LPS and container smoking on the microbial quality of cows’ milk produced in Kombolcha woreda, eastern Ethiopia. Livestock Research for Rural Development, 19, 10. http://www.lrrd.org/lrrd19/10/nigu19157.htmairy Federation (IDF).
  • Ismail, H. M., El Zubeir, I. Y. M., & Fadlelmoula, A. A. A. (2016). Influence of lactation stage and storage temperature on the activity of Lp enzyme system on microbial load of raw cow’s milk, Annals. Food Science & Technology, 17(1), 239–244. https://api.semanticscholar.org/CorpusID:9154274
  • ISO. (1998). Microbiology of food and animal feeding stuffs – Horizontal method for enumeration of Mesophilic LAB. https://www.iso.org/obp/ui/#!iso:std:26853:en
  • Jooyandeh, H., Aberoumand, A., & Nasehi, B. (2011). Application of LPS in fish and food products. American-Eurasian Journal of Agricultural & Environmental Sciences, 10(1), 89–96.
  • Kakar, M. U. H., Kakar, M. A., Shahwani, M. N., Ahmed, N., Arain, M. A., & Khaskhaili, M. (2013). Stabilization of fresh buffalo milk by activating LPS. Journal of Animal and Plant Sciences, 23(1), 90–93. https://www.researchgate.net/publication/292717349
  • Kirdar, S. S., & Atamer, M. (2021). Quality criteria of tulum cheese produced from cow’s milk preserved by activation of lactoperoxidase system. Journal of Food Processing and Preservation, 45(4), e15210. https://doi.org/10.1111/jfpp.15210
  • Köksal, Z., Kalin, R., Camadan, Y., Usanmaz, H., Almaz, Z., Gülçin, İ., Gokcen, T., Gören, A. C., & Ozdemir, H. (2016). Secondary sulfonamides as effective lactoperoxidase Inhibitors. Molecules, 22(6), 793. https://doi.org/10.3390/molecules22060793
  • Kurwijila, R. L., Hansen, K. K., Macha, I. E., Abdallah, K., & Kadigi, H. J. S. (1992). The bacteriological quality of milk from hand and machine milked dairy herds in Morongo, Tanzania. Journal of African Livestock Research, 2(2), 59–67.
  • Lara-Aguilar, S., & Alcaine, D. (2019). Lactose oxidase: A novel activator of the lactoperoxidase system in milk for improved shelf life. Journal of Dairy Science, 102(3), 1933–1942. https://doi.org/10.3168/jds.2018-15537
  • Ledenbach, L. H., & Marshall, R. T. (2009). Microbiological spoilage of dairy products. In W. Sperber & M. Doyle (Eds.), Compendium of the microbiological spoilage of foods and beverages (pp. 41–67). Springer Science Business. https://doi.org/10.1007/978-1-4419-0826-1_2
  • Marth, E. H. (1978). Standard methods for the examinations of dairy products. American Public Health Association.
  • Munsch-Alatossava, P., Quintyn, R., De Man, I., Alatossava, T., & Gauchi, J. P. (2016). Efficiency of N2 gas flushing compared to the LPS at controlling bacterial growth in bovine raw milk stored at mild temperatures. Frontiers in Microbiology, 7, 839. https://doi.org/10.3389/fmicb.2016.00839
  • Parveen, R., Kausar, R., Sameen, A., Khan, M. I., & Sana, N. (2016). Effect of activating Lacto Peroxidase system (LPs) on quality and storage Stability of Soft Cheese. Journal of Biotechnology & Biomaterials, 6(2), 224. https://doi.org/10.4172/2155-952X.1000224
  • Pokharel, P., & Laldas, S. K. (2012). Study on the extension of shelf-life by activation of inherent LPS in raw cow milk. Journal of Food Science and Technology Nepal, 7, 57–60. https://doi.org/10.3126/jfstn.v7i0.10606
  • Ponce, C. P. (2010). LPS under tropical conditions: Use, advantages and limitations in conservation of raw milk and potential applications. Review article Revista de Salud Animal, 32(3), 146–154.
  • Ponce, P. (2007). Activación del sistema lactoperoxidasa para la conservación de leche cruda en el trópico americano. Aspectos prácticos y consideraciones toxicológicas. 10-13, San José de las Lajas, La Habana-Cuba.
  • Popper, L., & Knorr, D. (1997). Inactivation of yeast and filamentous fungi by the lactoperoxidase-hydrogen peroxide-thiocyanate-system. Die Nahrung, 41(1), 29–33. https://doi.org/10.1002/food.19970410108
  • Puspitarini, O. R., Al-Baarri, A. N., Legowo, A. M., Bintoro, P., & Hintono, A. (2013). The activation method of LPs to inhibit microbial activity in fresh milk. Animal Production, 15(2), 119–126.
  • Richardson, G. H. (1985). Standard method for the examination of dairy products (15th ed.). American Public Health Association.
  • Saad, M. S. A., Zubeir, I., & Fadel Elseed, A. M. A. (2013). Effect of LPs and storage temperature on the keeping quality of sheep milk. Livestock Research for Rural Development, 25, 6. http://www.lrrd.org/lrrd25/6/saad25102.htm
  • Sarr, D., Tóth, E., Gingerich, A., & Rada, B. (2018). Antimicrobial actions of dual oxidases and lactoperoxidase. Journal of Microbiology, 56(6), 373–386. https://doi.org/10.1007/s12275-018-7545-1
  • Seifu, E., Buys, E. M., & Donkin, E. F. (2005). Significance of LPS in the dairy industry &its potential applications: A review. Trends in Food Science and Technology, 16(4), 137–154. https://doi.org/10.1016/j.tifs.2004.11.002
  • Shariat, S. Z., Jafari, N., Tavakoli, N., & Najafi, B. R. (2015). Protection of lactoperoxidase activity with sugars during lyophilisation and evaluation of its antibacterial properties. Research in Pharmaceutical Science, 10, 152–160.
  • Silva, E., Oliveira, J., Silva, Y., Urbano, S., Sales, D., Moraes, E., Rangel, A., & Anaya, K. (2020). Lactoperoxidase system in the dairy industry: Challenges and opportunities. Czech Journal of Food Sciences, 38(6), 337–346. https://doi.org/10.17221/103/2020-CJFS
  • Sisecioglu, M., Ekrem, K., Murat, C., Hasan, O., Ilhami, G., & Ali, A. (2010). The prohibitive effect of LPS (LPS) on some pathogen fungi and bacteria. African Journal of Pharmacy and Pharmacology, 4(9), 671–677.
  • Srisaikham, S., Naoki, I., & Suksombat, W. (2017). The inhibitory effect of sodium thiocyanate, sodium percarbonate ratios on microorganism growth in raw milk samples as an effective treatment to extend milk quality during storage. Songklanakarin Journal of Science and Technology, 39(1), 77–89. DOI: 10.14456/sjst-psu.2017.9.
  • U.S. Food and Drug Administration (USFDA). (2011). Spoilage bacteria. U.S Food and Drug Administration FDA.
  • Walstra, P., Wouters, J. T. M., & Geurts, T. J. (2006). In dairy Science and Technology. Taylor & Francis Group, LLC. https://doi.org/10.1201/9781420028010
  • Welk, A., Meller, C., Schubert, R., Schwahn, C., Kramer, A., & Below, H. (2009). Effect of lactoperoxidase on the antimicrobial effectiveness of the thiocyanate, hydrogen peroxide combination in a quantitative suspension test. Microbiology (Reading, England), 9(1), 134–139. https://doi.org/10.1186/1471-2180-9-134
  • Worku, T., Negera, E., Nurfeta, A., & Welearegay, H. (2012). Microbiological quality and safety of raw milk collected from Borana pastoral community, Oromia Regional state. African Journal of Food Science and Technology, 3, 213–222.
  • Yousef, A. E., & Carlstrom, C. (2003). Food Microbiology: A laboratorymanual. A John Wiley and Son, Inc.
  • Zeynep, K., Ilhami, G., & Hasan, O. (2016). An important milk enzyme: Lactoperoxidase chapter from the book milk proteins – from structure to biological properties and health aspects. World’s largest Science, Technology & Medicine Open Access book publisher pp. 142–156.