UV-C treatments against Salmonella Typhimurium ATCC 14028 in Inoculated Peanuts and Almonds

Food Engineering Reviews - Tập 13 Số 3 - Trang 706-712 - 2021
Karla Ruiz-Hernández1, Nallely Zarahi Ramírez-Rojas1, Ezequiel Francisco Meza-Plaza1, Cristina García-Mosqueda1, D. Jáuregui-Vázquez2, R. Rojas-Laguna2, María Elena Sosa‐Morales1
1Departamento de Alimentos, Posgrado en Biociencias, División de Ciencias de la Vida, Campus Irapuato-Salamanca, Universidad de Guanajuato, 36500,, Irapuato, Guanajuato, Mexico
2Departamento de Ingeniería Electrónica, División de Ingenierías, Campus Irapuato- Salamanca, Universidad de Guanajuato, 36600,, Salamanca, Guanajuato, Mexico

Tóm tắt

Từ khóa


Tài liệu tham khảo

Otto C, Zahn S, Rost F, Zahn P, Jaros D, Rohm H (2011) Physical methods for cleaning and disinfection of surfaces. Food Eng Rev 3:171–188

Franz C, Specht I, Cho G-S, Graef V, Stahl M (2009) UV-C inactivation of microorganisms in naturally cloudy apple juice using novel inactivation equipment based on Dean vortex technology. Food Control 20(12):1103–1107

Guerrero-Beltrán JA, Barbosa-Cánovas GV (2004) Advantages and limitations on processing foods by UV light. Food Sci Technol Int 10(3):137–147

López-Malo A, Palou E (2005) Ultraviolet light and food preservation. In: Barbosa- Cánovas GV, Tapia MS, Cano MP (eds) Novel Food Processing Technologies. CRC Press, Boca Raton, FL, pp 405–421

Gabriel AA, Estilo EEC, Isnit NCC, Membrebe BNQ (2016) Suboptimal growth conditions induce heterologous ultraviolet-C adaptation in Salmonella enterica in orange juice. Food Control 62:110–116

Mani-López E, García HS, López-Malo A (2012) Organic acids as antimicrobials to control Salmonella in meat and poultry products. Food Res Int 45:713–721

Braden CR (2006) Salmonella enterica serotype Enteritidis and eggs: a national epidemic in the United States. Food Safety 43:512–517

Jeon MJ, Ha JW (2018) Efficacy of UV-A, UV-B, and UV-C irradiation on inactivation of foodborne pathogens in different neutralizing buffer solutions. LWT - Food Sci Technol 98:591–597

Villa-Rojas R, Tang J, Wang S, Gao M, Kang DH, Mah JH, Gray P, Sosa-Morales ME, López-Malo A (2013) Thermal inactivation of Salmonella Enteritidis PT 30 in almond kernels as influenced by water activity. J Food Prot 76(1):26–32

Villa-Rojas R, Zhu M-J, Paul NC, Gray P, Xu J, Shah DH, Tang J (2017) Biofilm forming Salmonella strains exhibit enhanced thermal resistance in wheat flour. Food Control 73:689–695

Holck AL, Liland KH, Dromtorp SM, Carlehög M, McLeod A (2018) Comparison of UV-C and pulsed UV light treatments for reduction of Salmonella, Listeria monocytogenes and enterohemorrhagic Escherichia coli on eggs. J Food Prot 81(1):6–16

Wallner-Pendleton EA, Sumner SS, Froning GW, Stetson LVE (1994) The use of ultraviolet radiation to reduce Salmonella and psychrotrophic bacterial contamination on poultry carcasses. Poult Sci 73:1327–1333

Sumner SS, Wallner-Pendleton EA, Froning GW, Stetson LVE (1995) Inhibition of Salmonella typhimurium on agar medium and poultry skin by ultraviolet energy. J Food Prot 59(3):319–321

Kuo FL, Carey JB, Ricke SC (1997) UV irradiation of shell eggs: effect on populations of aerobes, molds, and inoculated Salmonella typhimurium. J Food Prot 60:639–643

Turtoi M (2013) Ultraviolet light treatment of fresh fruits and vegetables surface: a review. J Agroaliment Processes Technol 19(3):325–337

Chen AJ, Luo W, Luo YB, Zhu B (2017) Combined treatment of ultraviolet‐C and L. plantarum on Salmonella enteritidis and quality control of fresh‐cut apple. J Food Process Pres 13349

Raybaudi-Massilia R, Calderón-Gabaldón MI, Mosqueda-Melgar J, Tapia MS (2013) Inactivation of Salmonella enterica ser. Poona and Listeria monocytogenes on fresh-cut ‘“Maradol”’ red papaya (Carica papaya L.) treated with UV-C light and malic acid. Journal für Verbraucherschutz und Lebensmittelsicherheit 8:37–44

Choi DS, Park SH, Choi SR, Kim JS, Chun HH (2015) The combined effects of ultraviolet-C irradiation and modified atmosphere packaging for inactivating Salmonella enterica serovar Typhimurium and extending the shelf life of cherry tomatoes during cold storage. Food Packag Shelf Life 3:19–30

Mukhopadhyay S, Ukuku D, Fan X, Juneja VK (2013) Efficacy of integrated treatment of UV light and low-dose gamma irradiation on inactivation of Escherichia coli O157:H7 and Salmonella enterica on grape tomatoes. J Food Sci 78(7):M1049–M1056

Yaun BR, Sumner SS, Eifert JD, Marcy JE (2004) Inhibition of pathogens on fresh produce by ultraviolet energy. Int J Food Microbiol 90:1–8

Mukhopadhyay S, Ukuku D, Juneja V, Fan X (2014) Effects of UV-C treatment on inactivation of Salmonella enterica and Escherichia coli O157:H7 on grape tomato surface and stem scars, microbial loads, and quality. Food Control 44:110–117

Martínez-Hernández GB, Navarro-Rico J, Gómez PA, Otón M, Artés F, Artés-Hernández F (2015) Combined sustainable sanitising treatments to reduce Escherichia coli and Salmonella Enteritidis growth on fresh-cut kailan-hybrid broccoli. Food Control 47:312–317

Graça A, Santo D, Quintas C, Nunes C (2017) Growth of Escherichia coli, Salmonella enterica and Listeria spp., and their inactivation using ultraviolet energy and electrolyzed water, on ‘Rocha’ fresh-cut pears. Food Control 77:41–49

Condón-Abanto S, Raso J, Lyng JG, Álvarez I (2016) Inactivation of Salmonella typhimurium and Lactobacillus plantarum by UV-C light in flour powder. Innov Food Sci Emerg Technol 35:1–8

Gabriel AA, Tongco AMP, Barnes AA Jr (2017) Utility of UV-C radiation as anti-Salmonella decontamination treatment for desiccated coconut flakes. Food Control 71:117–123

Ha JW, Kang DH (2013) Simultaneous near-infrared radiant heating and UV radiation for inactivating Escherichia coli O157:H7 and Salmonella enterica serovar Typhimurium in powdered red pepper (Capsicum annuum L.). Appl Environ Microbiol 79:6568–6575

Izmirlioglu G, Demirci A (2018) Inactivation of Salmonella Enteritidis on walnuts by pulsed UV treatments. 2018 ASABE Annual International Meeting 1800334

Sales JM, Resurreccion AVA (2009) Maximising resveratrol and piceid contents in UV and ultrasound treated peanuts. Food Chem 117:674–680

Bialka KL, Demirci A, Puri VM (2008) Modeling the inactivation of Escherichia coli O157:H7 and Salmonella enterica on raspberries and strawberries resulting from exposure to ozone or pulsed UV-light. J Food Eng 85:444–449

De Souza PM, Fernández A (2011) Effects of UV-C on physicochemical quality attributes and Salmonella enteritidis inactivation in liquid egg products. Food Control 22:1385–1392

Gabriel AA, Vera DD, Lazo OMY, Azarcon VB, De Ocampo CG, Marasigan JC, Sandel GT (2017) Ultraviolet-C inactivation of Escherichia coli O157:H7, Listeria monocytogenes, pseudomona aeruginosa and Salmonella enterica in liquid egg white. Food Control 73:1303–1309

Keklik NM, Demirci A, Puri VM, Heinemann PH (2012) Modeling the inactivation of Salmonella Typhimurium, Listeria monocytogenes, and Salmonella Enteritidis on poultry products exposed to pulsed light. J Food Prot 75(2):281–288

Jahid IK, Han NR, Srey S, Ha S-D (2014) Competitive interactions inside mixed-culture biofilms of Salmonella Typhimurium and cultivable indigenous microorganisms on lettuce enhance microbial resistance of their sessile cells to ultraviolet C (UV-C) irradiation. Food Res Int 55:445–454

Ochoa-Velasco CE, Díaz-Lima MC, Ávila-Sosa R, Ruiz-López II, Corona-Jiménez E, Hernández-Carranza P, López-Malo A, Guerrero-Beltrán JA (2018) Effect of UV-C light on Lactobacillus rhamnosus, Salmonella Typhimurium, and Saccharomyces cerevisiae kinetics in inoculated coconut water: survival and residual effect. J Food Eng 223:255–261

Gil MM, Miller AF, Brandao TRS, Silva CLM (2011) On the use of the Gompertz model to predict microbial thermal inactivation under isothermal and non-isothermal conditions. Food Eng Rev 3:17–25

Erkmen O (2009) Mathematical modeling of Salmonella typhimurium inactivation under high hydrostatic pressure at different temperatures. Food Bioprod Process 87:68–73

Chhabra AT, Carter WH, Linton RH, Cousin MA (2002) A predictive model that evaluates the effect of growth conditions on the thermal resistance of Listeria monocytogenes. Int J Food Microbiol 78:235–243

Linton RH, Carter WH, Pierson MD, Hackney CR (1995) Use of a modified Gompertz equation to model nonlinear survival curves for Listeria monocytogenes Scott A. J Food Prot 58:946–954

Van Boekel MAJS (2002) On the use of the Weibull model to describe thermal inactivation of microbial vegetative cells. Int J Food Microbiol 74:139–159

AOAC [Association of Official Analytical Chemists]. (1990) Official methods of analysis, 15th edn. Association of Official Analytical Chemists, Alexandria

Prestes FS, Pereira AAM, Silva ACM, Pena PO, Nascimento MS (2019) Effects of peanut drying and blanching on Salmonella spp. Food Res Int 119:411–416

Aprea E, Biasioli F, Gasperi F, Sani G, Cantini C, Märk TD (2005) Advanced oxidation in olive oil: monitoring of secondary reaction products and detection of rancid defect. In: Hansel A, Märk TD (eds) 2nd International Conference on Proton Transfer Reaction Mass Spectrometry and its Applications. Innsbruck University Press, Contributions: 144–147. http://hdl.handle.net/10449/17730

Dal Bello B, Torri L, Piochi M, Bertolino M, Zeppa G (2017) Fresh cheese as a vehicle for polyunsaturated fatty acids integration: effect on physico-chemical, microbiological and sensory characteristics. Int J Food Sci Nutr 1301891

Kwon CW, Park KM, Park JW, Lee JH, Choi SJ, Chang PS (2016) Rapid and sensitive determination of lipid oxidation using the reagent kit based on spectrophotometry (FOODLABfat System). J Chem 1468743

Wang S, Monzon M, Johnson JA, Mitcham EJ, Tang J (2007) Industrial-scale radio frequency treatments for insect control in walnuts II: Insect mortality and product quality. Postharvest Biol Technol 45(2):247–253

Bell AA, Wheeler MH (1986) Biosynthesis and function of fungal melanin. Annu Rev Phytopathol 24:411–451

Begum M, Hocking AD, Miskelly D (2009) Inactivation of food spoilage fungi by ultraviolet (UVC) irradiation. Int J Food Microbiol 129:74–77

Gardner DW, Shama G (2000) Modeling UV-induced inactivation of microorganisms on surfaces. J Food Prot 63(1):63–70

Peleg M (2000) Microbial survival curves—the reality of flat ‘“shoulders”’ and absolute thermal death times. Food Res Int 33:531–538

Liu K, Liu Y, Chen F (2018) Effect of gamma irradiation on the physicochemical properties and nutrient contents of peanut. LWT - Food Sci Technol 96:535–542

Davis JP, Dean LL (2016) Peanut composition, flavor and nutrition. In: Stalker RR, Wilson RF (eds) Peanuts: Genetics, Processing and Utilization. AOCS Press, pp 289–345

Gao M, Tang J, Villa-Rojas R, Wang Y, Wang S (2011) Pasteurization process development for controlling Salmonella in in-shell almonds using radio frequency energy. J Food Eng 104:299–306

Sánchez-Bel P, Egea I, Romojaro F, Martínez-Madrid MC (2008) Sensorial and chemical quality of electron beam irradiated almonds (Prunus amygdalus). LWT-Food Sci Technol 41:442–449