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Application of computational fluid dynamics simulation in predicting food protein denaturation: numerical studies on selected food products - a review*


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ABBRING S., XIONG L., DIKS M.A.P., BAARS T., GARSSEN J., HETTINGA K., VAN ESCH B.C.A.M., 2020 – Loss of allergy-protective capacity of raw cow’s milk after heat treatment coincides with loss of immunologically active whey proteins. Food and Function 11 (6), 4982-4993. Search in Google Scholar

AGAFONKINA I. V., KOROLEV I.A., SARANTSEV T.A., 2019 – The study of thermal Denaturation of beef, pork, chicken and turkey muscle proteins using differential scanning calorimetry. Theory and practice of meat processing 4 (3), 19-23. Search in Google Scholar

AHMED I., LI J., WANG B., LI Z., CHEN H., LI J., WANG B., LI Z., HUANG G., 2021 – Enzymatic crosslinking and food allergenicity : A comprehensive review. Comprehensive Reviews in Food Science and Food Safety 20 (6), 5856-5879. Search in Google Scholar

AKITA M., NISHIKAWA Y., SHIGENOBU Y., AMBE D., MORITA T., 2020 – Correlation of proline, hydroxyproline and serine content, denaturation temperature and circular dichroism analysis of type I collagen with the physiological temperature of marine teleosts. Food Chemistry 329 (126775), 1-8. Search in Google Scholar

ALBUQUERQUE C.D. DE, CURET S., BOILLEREAUX L., 2019 – A 3D-CFD-heat-transfer-based model for the microbial inactivation of pasteurized food products. Innovative Food Science and Emerging Technologies 54, 172-181. Search in Google Scholar

ANDLINGER D.J., SCHREMPEL U., HENGST C., KULOZIK U., 2022 – Heat-induced aggregation kinetics of potato protein – Investigated by chromatography, calorimetry, and light scattering. Food Chemistry 389 (133114), 1-9. Search in Google Scholar

AYUB H., AHMAD A., 2019 - Physiochemical changes in sous-vide and conventionally cooked meat. International Journal of Gastronomy and Food Science 17, 1-8. Search in Google Scholar

AZMIR J., HOU Q., YU A., 2019 – CFD-DEM simulation of drying of food grains with particle shrinkage. Powder Technology 343, 792-802. Search in Google Scholar

BIRCAN C., BARRINGER S.A., 2002 – Determination of protein denaturation of muscle foods using the dielectric properties. Journal of Food Science 67 (1), 202-205. Search in Google Scholar

BISCHOF J.C.C., HE X., 2005 – Thermal Stability of Proteins. Annals of the New York Academy of Sciences 33, 12-33. Search in Google Scholar

BOEKEL M.A.J.S. Van, 2008 – Kinetic Modeling of Food Quality: A Critical Review. Comprehensive Reviews in Food Science and Food Safety 7 (1), 144-158. Search in Google Scholar

BOEKEL M.A.J.S. Van, 2022 – Kinetics of heat-induced changes in dairy products: Developments in data analysis and modelling techniques. International Dairy Journal 126 (105187), 1-32. Search in Google Scholar

BOSE U., BROADBENT J.A., JUHÁSZ A., KARNANEEDI S., JOHNSTON E.B., STOCKWELL S., BYRNE K., LIMVIPHUVADH V., MAURER-STROH S., LOPATA A.L., COLGRAVE M.L., 2021 – Protein extraction protocols for optimal proteome measurement and arginine kinase quantitation from cricket Acheta domesticus for food safety assessment. Food Chemistry 348, 1-11. Search in Google Scholar

BOUVIER L., MOREAU A., RONSE G., SIX T., PETIT J., DELAPLACE G., 2014 – A CFD model as a tool to simulate β-lactoglobulin heat-induced denaturation and aggregation in a plate heat exchanger. Journal of Food Engineering 136, 56-63. Search in Google Scholar

BRANDTS F., BRANDTS J.F., 1964 – The Thermodynamics of Protein Denaturation. 1. A Model of Reversible Denaturation and Interpretations Regarding the Stability of Chymotrypsinogen. Journal of the American Chemical Society 86 (7), 4302-4314. Search in Google Scholar

BUECKER S., GROSSMANN L., LOEFFLER M., LEEB E., WEISS J., 2022 – Thermal and acidic denaturation of phycocyanin from Arthrospira platensis: Effects of complexation with λ-carrageenan on blue color stability. Food Chemistry 380 (132157), 1-13. Search in Google Scholar

CAI L., NIAN L., CAO A., ZHANG Y., LI X., 2020 – Effect of Carboxymethyl Chitosan Magnetic Nanoparticles Plus Herring Antifreeze Protein on Conformation and Oxidation of Myofibrillar Protein From Red Sea Bream (Pagrosomus major) After Freeze-Thaw Treatment. Food and Bioprocess Technology 13 (2), 355-366. Search in Google Scholar

CAI L., ZHANG W., CAO A., CAO M., LI J., 2019 – Effects of ultrasonics combined with far infrared or microwave thawing on protein denaturation and moisture migration of Sciaenops ocellatus (red drum). Ultrasonics Sonochemistry 55, 96-104. Search in Google Scholar

CAPUANO E., JANSSEN A.E.M., 2021 – Food Matrix and Macronutrient Digestion. Annual Review of Food Science and Technology 12, 193-212. Search in Google Scholar

CHAPWANYA M., MISRA N.N., 2015 – A mathematical model of meat cooking based on polymer-solvent analogy. Applied Mathematical Modelling 39 (14), 4033-4043. Search in Google Scholar

CHAUHAN A., TREMBLEY J., WROBEL L.C., JOUHARA H., 2019 – Experimental and CFD validation of the thermal performance of a cryogenic batch freezer with the effect of loading. Energy 171, 77-94. Search in Google Scholar

CHELLABOINA V., BHAT S.P., HADDAD W.M., BERNSTEIN D.S., 2009 – Modeling and Analysis of Mass-Action Kinetics: Nonnegativity, realizability, reducibility, and semistability. IEEE Control Systems 29 (4), 60-78. Search in Google Scholar

CHUNG H.J.H., LEE J.H.H., SHIN H.Y.H., KWON J.S.J., KIM J.J.Y., 2022 – Minimization of Isoamylase Interference in Size-Exclusion Chromatography of Debranched Starch Molecular Structure. Starch/Staerke 74 (2100147), 1-7. Search in Google Scholar

DRECKMANN T., BOEUF J., LUDWIG I.S., LÜMKEMANN J., HUWYLER J., 2020 – Low volume aseptic filling: Impact of pump systems on shear stress. European Journal of Pharmaceutics and Biopharmaceutics 147, 10-18. Search in Google Scholar

FARROKHI F., BADII F., EHSANI M.R., HASHEMI M., 2019 – Functional and thermal properties of nanofibrillated whey protein isolate as functions of denaturation temperature and solution pH. Colloids and Surfaces A: Physicochemical and Engineering Aspects 583 (124002), 1-8. Search in Google Scholar

FENG X., WU D., YANG K., WANG C., WANG L., WANG X., MA J., ZHANG Y., WANG C., ZHOU Y., SUN W., 2021 – Effect of sarcoplasmic proteins oxidation on the gel properties of myofibrillar proteins from pork muscles. Journal of Food Science 86, 1835-1844. Search in Google Scholar

GENENE A., HANSEN E.B.B., ESHETU M., HAILU Y., IPSEN R., 2018 – Effect of heat treatment on denaturation of whey protein and resultant rennetability of camel milk. LWT - Food Science and Technology 101, 404-409. Search in Google Scholar

GENG Q., ZHANG Y., SONG M., ZHOU X., TANG Y., WU Z., CHEN H., 2023 – Allergenicity of peanut allergens and its dependence on the structure. Comprehensive Reviews in Food Science and Food Safety 22, 1058-1081. Search in Google Scholar

GHAFORI H., 2020 – Computational fluid dynamics (CFD) analysis of pipeline in the food pellets cooling system. Journal of Stored Products Research 87 (101581), 1-6. Search in Google Scholar

GREGERSEN S.B., WIKING L., HAMMERSHØJ M., 2019 – Acceleration of acid gel formation by high intensity ultrasound is linked to whey protein denaturation and formation of functional milk fat globule-protein complexes. Journal of Food Engineering 254, 17-24. Search in Google Scholar

GU Y., BOUVIER L., TONDA A., DELAPLACE G., 2019 – A mathematical model for the prediction of the whey protein fouling mass in a pilot scale plate heat exchanger. Food Control 106 (106729), 1-10. Search in Google Scholar

HABTEGEBRIEL H., EDWARD D., MOTSAMAI O., WAWIRE M., SEIFU E., DANIEL S., 2021 – The potential of computational fluid dynamics simulation to investigate the relation between quality parameters and outlet temperature during spray drying of camel milk. Drying Technology 39 (13), 2010-2024. Search in Google Scholar

HÄFNER L., KALKHOF S., JIRA W., 2021 – Authentication of nine poultry species using high-performance liquid chromatography–tandem mass spectrometry. Food Control 122 (October 2020), 1-10. Search in Google Scholar

HANNSS M., ABBATE R.A., MITZENHEIM E., ALKHALAF M., BÖHM W., LEDERER A., HENLE T., 2020 – Association of Enzymatically and Nonenzymatically Functionalized Caseins Analyzed by Size-Exclusion Chromatography and Light-Scattering Techniques. Journal of Agricultural and Food Chemistry 68 (9), 2773-2782. Search in Google Scholar

HASHIM H.O., AL-SHUHAIB M.B.S., EWADH M.J., 2019 – Heterogeneity of Proteins in Bird’s Egg-Whites. Biotropia 26 (2), 65-81. Search in Google Scholar

HE S., SUN X., DU M., CHEN H., TAN M., SUN H., ZHU B., 2019 – Effects of muscle protein denaturation and water distribution on the quality of false abalone (Volutharpa ampullacea perryi) during wet heating. Journal of Food Process Engineering 42 (1), 1-10. Search in Google Scholar

HOLLINGSWORTH S.A., DROR R.O., 2018 – Molecular Dynamics Simulation for All. Neuron 99 (6), 1129-1143. Search in Google Scholar

HORSTMAN A.M.H., HUPPERTZ T., 2022 – Milk proteins: Processing, gastric coagulation, amino acid availability and muscle protein synthesis. Critical Reviews in Food Science and Nutrition May 25, 1-16. Search in Google Scholar

JASKULSKI M., ATUONWU J.C., TRAN T.T.H., STAPLEY A.G.F., TSOTSAS E., 2017 – Predictive CFD modeling of whey protein denaturation in skim milk spray drying powder production. Advanced Powder Technology 28 (12), 3140-3147. Search in Google Scholar

JASKULSKI M., TRAN T.T.H., TSOTSAS E., 2020 – Design study of printer nozzle spray dryer by computational fluid dynamics modeling. Drying Technology 38 (1-2), 211–223. Search in Google Scholar

KAMAL H., LE C.F., SALTER A.M., ALI A., 2021 – Extraction of protein from food waste: An overview of current status and opportunities. Comprehensive Reviews in Food Science and Food Safety 20 (3), 2455-2475. Search in Google Scholar

KHAN M.A., ALI S., YANG H., KAMBOH A.A., AHMAD Z., TUME R.K., ZHOU G., 2019 – Improvement of color, texture and food safety of ready-to-eat high pressure-heat treated duck breast. Food Chemistry 277 (1), 646-654. Search in Google Scholar

KIM T., HWANG K., HAM Y., KIM H., PAIK H., KIM Y., CHOI Y., 2020 – Interactions between raw meat irradiated by various kinds of ionizing radiation and transglutaminase treatment in meat emulsion systems. Radiation Physics and Chemistry 166 (108452), 1-7. Search in Google Scholar

KIM T.-K., YONG H.I., KIM Y.-B., JUNG S., KIM H.-W., CHOI Y.S., 2021 – Effects of organic solvent on functional properties of defatted proteins extracted from Protaetia brevitarsis larvae. Food Chemistry 336 (127679), 1-7. Search in Google Scholar

KOPPELMAN S.J., LARDIZABAL A.L., NIEMANN L., BAUMERT J.L., TAYLOR S.L., 2021 – Development of a Sandwich Enzyme-Linked Immunosorbent Assay for Detection and Quantification of Clam Residues in Food Products. BioMed Research International 2021. Search in Google Scholar

KOVALEVA O.A., ZDRABOVA E.M., KIREEVA O.S., 2021 – Influence of heat-induced changes in meat proteins on the quality characteristics of the finished product. In : IOP Conference Series: Earth and Environmental Science. 1-8. Search in Google Scholar

KOWALSKI S., LUKASIEWICZ M., DUDA-CHODAK A., ZIEC G., 2013 – 5-hydroxymethyl-2-furfural (HMF) -heat-induced formation, occurrence in food and biotransformation - A review. Polish Journal of Food and Nutrition Sciences 63 (4), 207-225. Search in Google Scholar

LI J., HOU C., MA X., GUO S., ZHANG H., SHI L., LIAO C., ZHENG B., YE L., YANG L., HE X., 2021 – Entropy-enthalpy compensations fold proteins in precise ways. International Journal of Molecular Sciences 22 (17), 1-20. Search in Google Scholar

LI Z., HUANG X., TANG Q., MA M., JIN Y., SHENG L., 2022a – Functional Properties and Extraction Techniques of Chicken Egg White Proteins. Foods 11 (16), 1-19. Search in Google Scholar

LI L., REN S., YANG H., LIU J., ZHANG J., 2023 – Study of the Molecular Structure of Proteins in Eggs under Different Storage Conditions. Journal of Food Processing and Preservation 4754074, 1-7. Search in Google Scholar

LI L., WANG K., WEI L., ZHAO Q., ZHOU H., JIANG J., 2022b – CFD simulation and performance evaluation of gas mixing during high solids anaerobic digestion of food waste. Biochemical Engineering Journal 178 (108279), 1-11. Search in Google Scholar

LIU H., BOGGS I., WEEKS M., LI Q., WU H., HARRIS P., MA Y., 2020 – Kinetic modelling of the heat stability of bovine lactoferrin in raw whole milk. Journal of Food Engineering 280 (109977), 1–8. Search in Google Scholar

LIU W., FENG Y., PAN F., JEANTET R., ANDRÉ C., CHEN X.D., DELAPLACE G., 2022 – Effect of calcium on the thermal denaturation of whey proteins and subsequent fouling in a benchtop fouling device: An experimental and numerical approach. Food and Bioproducts Processing 136, 1-13. Search in Google Scholar

LIU Y.F., OEY I., BREMER P., CARNE A., SILCOCK P., 2019 – Modifying the Functional Properties of Egg Proteins Using Novel Processing Techniques: A Review. Comprehensive Reviews in Food Science and Food Safety 18, 986-1002. Search in Google Scholar

LOHI V., LANJEKAR K., RATHOD V., 2021 – Synergistic effect of ultrasonication and detergent on protein extraction from soymeal. Journal of Food Processing and Preservation 45 (9), 1-8. Search in Google Scholar

MASUD M.H., ISLAM T., JOARDDER M.U.H., ANANNO A.A., DABNICHKI P., 2019 – CFD analysis of a tube-in-tube heat exchanger to recover waste heat for food drying. International Journal of Energy and Water Resources 3 (3), 169-186. Search in Google Scholar

MCHARDY C., DJIKE KAMMEGNE T., JÄNICH I., 2021 – Energy-efficient ultrasound-assisted extraction of food proteins from the microalga C. vulgaris at elevated static pressure. Innovative Food Science and Emerging Technologies 73 (102797), 1–11. Search in Google Scholar

MOSIBO O.K., FERRENTINO G., ALAM M.R., MOROZOVA K., SCAMPICCHIO M., 2022 – Extrusion cooking of protein-based products: potentials and challenges. Critical Reviews in Food Science and Nutrition 62 (9), 2526-2547. Search in Google Scholar

MUGA F.C.C., MARENYA M.O., WORKNEH T.S., 2021 – A Heat and Mass Transfer Model for Predicting the Drying of Beef During Biltong Processing Using Infrared-Assisted Hot Air Drying. Journal of Biosystems Engineering 46 (3), 273-285. Search in Google Scholar

NELSON H., DEYO S., PUENTE P., TULLY K., WEBB J., 2020 – A mathematical model for meat cooking. The European Physical Journal Plus 135 (3), 1-19. Search in Google Scholar

NETHERY T.N., BOLER D.D., HARSH B.N., DILGER A.C., 2022 – Relationship between Inherent Cooking Rate and Warner-Bratzler Shear Force of Pork Chops Cooked to Two Degrees of Doneness. Foods 11 (1). Search in Google Scholar

ONYEAKA H., NWAIZU C.-C., EKAETTE I., 2022 – Trends in Food Science & Technology Mathematical modeling for thermally treated vacuum-packaged foods: A review on sous vide processing. Trends in Food Science & Technology 126, 73-85. Search in Google Scholar

OTSUKA K. et al., 2021 – Temperature-dependent fasciation mutants provide a link between mitochondrial RNA processing and lateral root morphogenesis. eLife 10, 1-26. Search in Google Scholar

PAN F., DONG X., MERCADÉ-PRIETO R., XIAO J., 2019 – Numerical simulation of milk fouling : Taking fouling layer domain and localized surface reaction kinetics into account. Chemical Engineering Science 197, 306-316. Search in Google Scholar

PAN Z., YE A., DAVE A., FRASER K., 2021 - Kinetics of heat-induced interactions among whey proteins and casein micelles in sheep skim milk and aggregation of the casein micelles. Journal of Dairy Science 105 (5), 3871–3882. Search in Google Scholar

PERO M., KIANI H., ASKARI G., 2019 – A novel numerical approach for modeling the coagulation phenomenon in egg white. Journal of Food Process Engineering 42 (4), 1-11. Search in Google Scholar

PLANA-FATTORI A., DOURSAT C., COUTOULY A., RIAUBLANC A., FLICK D., 2020 – A numerical model for studying the thermal denaturation-aggregation of whey proteins under continuous thermal processing. International Journal of Food Studies 9, SI17-SI37. Search in Google Scholar

PRABHAKAR P.K.K., KUMAR M., VATSA S., MADHUMITA M., PRABHAKAR P.K., 2021 – Mathematical Modeling of Food Processing Operations: A Basic Understanding and Overview. Turkish Journal of Agricultural Engineering Research 2 (2), 472-492. Search in Google Scholar

PROMTONG M., KHUNSRI K., TEACHAPANITVITTAYA K., TRAKULKUMLUE T., WATECHAGIT S., SUVANJUMRAT C., 2020 – Experimental and Numerical Investigations into the Natural Convection of Hot Gas in a Vertical Smoking Oven: A Validation Study. In : The 34th Conference of the Mechanical Engineering Network of Thailand, 1-11. Search in Google Scholar

RAVASH N., PEIGHAMBARDOUST S.H.H., SOLTANZADEH M., PATEIRO M., LORENZO J.M.M., 2022 – Impact of high-pressure treatment on casein micelles, whey proteins, fat globules and enzymes activity in dairy products: a review. Critical Reviews in Food Science and Nutrition 62 (11), 1-21. Search in Google Scholar

RAZMI R., JUBAER H., KREMPSKI-SMEJDA M., JASKULSKI M., XIAO J., CHEN X.D., WOO M.W., 2021 – Recent initiatives in effective modeling of spray drying. Drying Technology 39 (11), 1614-1647. Search in Google Scholar

SADEGHI R., COLLE M., SMITH B., 2023 – Protein composition of pulses and their protein isolates from different sources and in different isolation pH values using a reverse phase high performance liquid chromatography method. Food Chemistry 409 (135278), 1-10. Search in Google Scholar

SALISH K., PUSHPADASS H.A.A., FRANKLIN M.E.E., MITRA H., MUNIANDY S., GHOSH B.C.C., 2021 – Three-dimensional computational fluid dynamics modeling of baking of chhana podo (milk cake). Journal of Food Process Engineering 44 (1), e13587. Search in Google Scholar

SANTA ROSA L.N., REZENDE J. DE P., COELHO Y.L., MENDES T.A.O., DA SILVA L.H.M., PIRES A.C. DOS S., 2021 – β-lactoglobulin conformation influences its interaction with caffeine. Food Bioscience 44 Part A (101418), 1-7. Search in Google Scholar

SANTILLANA FARAKOS S.M., FRANK J.F., SCHAFFNER D.W., 2013 – Modeling the influence of temperature, water activity and water mobility on the persistence of Salmonella in low-moisture foods. International Journal of Food Microbiology 166 (2), 280-293. Search in Google Scholar

SAWADA Y., HONDA S., 2006 – Structural diversity of protein segments follows a power-law distribution. Biophysical Journal 91 (4), 1213-1223. Search in Google Scholar

SHARMA N., SHARMA R., RAJPUT Y.S., MANN B., 2021 – Separation methods for milk proteins on polyacrylamide gel electrophoresis : Critical analysis and options for better resolution. International Dairy Journal 114, 104920. Search in Google Scholar

SINGH R., AMAMCHARLA J.K., 2021 – Effect of pH on heat-induced interactions in high-protein milk dispersions and application of fluorescence spectroscopy in characterizing these changes. Journal of Dairy Science 104 (4), 3899-3915. Search in Google Scholar

van der Sman R.G.M., 2017 - Model for electrical conductivity of muscle meat during Ohmic heating. Journal of Food Engineering 208, 37–47. Search in Google Scholar

SÖYLEMEZ E., ALPMAN E., ONAT A., HARTOMACIOĞLU S., 2021 – CFD analysis for predicting cooling time of a domestic refrigerator with thermoelectric cooling system. International Journal of Refrigeration 123, 138-149. Search in Google Scholar

STACHNIUK A., SUMARA A., MONTOWSKA M., FORNAL E., 2021 – Liquid Chromatography–Mass Spectrometry Bottom-Up Proteomic Methods in Animal Species Analysis of Processed Meat for Food Authentication and the Detection of Adulterations. Mass Spectrometry Reviews 40 (1), 3-30. Search in Google Scholar

STEWART C.J.J., OLGENBLUM G.I., PROPST A., HARRIES D., PIELAK G.J.J., 2023 – Resolving the enthalpy of protein stabilization by macromolecular crowding. Protein Science 32 (3), e4573. Search in Google Scholar

SUHAG R., DHIMAN A., PRABHAKAR P.K., SHARMA A., SINGH A., 2022 – Microfluidization of liquid egg yolk : Modelling of rheological characteristics and interpretation of flow behavior under a pipe flow. Innovative Food Science and Emerging Technologies 81 (103119), 1-11. Search in Google Scholar

SUN P., LIN J., REN X., ZHANG B., LIU J., ZHAO Y., LI D., 2022a – Effect of Heating on Protein Denaturation, Water State, Microstructure, and Textural Properties of Antarctic Krill ( Euphausia superba ) Meat. Food and Bioprocess Technology 15 (10), 2313-2326. Search in Google Scholar

SUN D., ZHOU C., YU H., WANG B., LI Y., WU M., 2022b – Integrated numerical simulation and quality attributes of soybean protein isolate extrusion under different screw speeds and combinations. Innovative Food Science and Emerging Technologies 79, 103053. Search in Google Scholar

SZPICER A., WIERZBICKA A., PÓŁTORAK A., 2022 – Optimization of beef heat treatment using CFD simulation: Modeling of protein denaturation degree. Journal of Food Process Engineering 45 (4), e14014. Search in Google Scholar

TASIYA S., GAJDHAR P.D., 2021 – A Review on Design and Performance Enhancement of Cold Storage by CFD Analysis. International Journal of Trend in Innovative Research 3 (3), 56-58. Search in Google Scholar

VAN LIESHOUT G., LAMBERS T., BRAGT M., HETTINGA K., 2020 – How processing may affect milk protein digestion and overall physiological outcomes: A systematic review. Critical Reviews in Food Science and Nutrition 60 (14), 2422-2445. Search in Google Scholar

VELAZQUEZ G., MÉNDEZ-MONTEALVO M.G., WELTI-CHANES J., RAMÍREZ J.A., MARTÍNEZ-MALDONADO M.A., 2021 – Effect of high pressure processing and heat treatment on the gelation properties of blue crab meat proteins. LWT - Food Science and Technology 146 (111389), 1-7. Search in Google Scholar

WANG S., LIN R., CHENG S., TAN M., 2020 – Water dynamics changes and protein denaturation in surf clam evaluated by two-dimensional LF-NMR T1-T2 relaxation technique during heating process. Food Chemistry 320 (126622), 1-8. Search in Google Scholar

WARNCKE M., KIEFERLE I., NGUYEN T.M., KULOZIK U., 2022 – Impact of heat treatment, casein/whey protein ratio and protein concentration on rheological properties of milk protein concentrates used for cheese production. Journal of Food Engineering 312 (110745), 1-9. Search in Google Scholar

WAZED M.A., FARID M., 2019 – Hypoallergenic and Low-Protein Ready-to-Feed (RTF) Infant Formula by High Pressure Pasteurization: A Novel Product. Foods 8(9) (408), 1-13. Search in Google Scholar

WOJTASIK-KALINOWSKA I., MARCINKOWSKA-LESIAK M., ONOPIUK A., STELMASIAK A., SZPICER A., HOLC D., WIERZBICKA A., POLTORAK A., 2021 – Geese fillets flavor stability and quality characteristics at different stages of sous-vide cooking. Animal Science Papers and Reports 39 (4), 419-435. Search in Google Scholar

YAMASAKI T., HIRAKAWA Y., MOMMA K., YAMAGUCHI Y.M., KOTOURA S., MIYAKE S., NARITA H., 2022 – Enzyme-Linked Immunosorbent Assay for Pork Determination in Raw and Heated Meats: Combination of Monoclonal Antibodies to Denatured Porcine Myoglobin and Sodium Dodecyl Sulfate Extraction. ACS Food Science and Technology 2 (1), 136-142. Search in Google Scholar

YILDIZ T., 2019 – CFD Characteristics of Refrigerated Trailers and Improvement of Airflow for Preserving Perishable Foods. Logistics 3(2) (11), 1-20. Search in Google Scholar

ZHANG J., CHEN Q., KAPLAN D.L., WANG Q., 2022 – High-moisture extruded protein fiber formation toward plant-based meat substitutes applications: Science, technology, and prospect. Trends in Food Science and Technology 128, 202-216. Search in Google Scholar

ZHANG Y., SHARAN S., RINNAN Å., ORLIEN V., 2021 – Survey on methods for investigating protein functionality and related molecular characteristics. Foods 10 (11), 1-18. Search in Google Scholar

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