DOI QR코드

DOI QR Code

Effect of mechanically deboned poultry meat content on technological properties and sensory characteristics of lamb and mutton sausages

  • 투고 : 2017.06.21
  • 심사 : 2017.09.11
  • 발행 : 2018.04.01

초록

Objective: This study aimed to develop a value-added product concerning technological and sensory characteristics changes of the use of mechanically deboned poultry meat (MDPM) as meat replacer in lamb and mutton emulsion-type sausages (mortadella). Methods: Sausages were produced with lamb and mutton and with different contents of MDPM. Six treatments, using lamb or mutton and 0%, 30%, and 60% of MDPM in relation to the meat batter, were produced and analyzed for pH, proximal composition, calcium and residual nitrite content, water activity, 2-thiobarbituric acid reactive substances (TBARS), instrumental color and texture profile. The sensory profile of the mortadella's was also evaluated by acceptance test and check-all-that-applies (CATA) analysis. Results: The MDPM addition increased (p<0.05) fat, residual nitrite and calcium content in the all sausage formulations, but mutton sausage had (p<0.05) higher fat and lower moisture content than lamb sausage. The pH, water activity, TBARS index and color was not affected by MDPM additions, while the mutton sausages were significantly redder (higher $a^*$, $C^*$, and lower $h^{\circ}$) and darker (lower $L^*$) than lamb sausages. Adding up to 60% of MDPM reduced (p<0.05) sausages hardness and chewiness. Overall, the meat replacement by MDPM increased the sausages acceptance, but the mutton sausage with 30% of MDPM replacer were the most preferred. Consumers related that pink color, glossy appearance, poultry meat-like taste, soft texture, juicy and greasy mouth feel to all sausages contain MDPM according to CATA analysis. Conclusion: Mutton from culled ewes can be utilized for mortadella production with 30% replacement of lean mutton and fat by MDPM.

키워드

참고문헌

  1. FAO, FAOSTAT Database [internet]. Food and Agriculture Organization of the United Nations [cited 2017 may 5]. Available from: http://www.fao.org/faostat/en/#home
  2. FAO. Food Outlook Report: June 2017. Rome, italy: Food and Agriculture Organization of the United Nations; 2017.
  3. Olalgaquiaga Perez JR, Bressan MC, Bragagnolo N, et al. Effect of different lamb breed and their slaughter weights on cholesterol, fatty acid profile and proximate composition. Food Sci Technol (Campinas) 2002;22:11-8. https://doi.org/10.1590/S0101-20612002000100003
  4. Dutra MP, Palhares PC, Silva JRO, et al. Technological and quality characteristics of cooked ham-type pâte elaborated with sheep meat. Small Rumin Res 2013;115:56-61. https://doi.org/10.1016/j.smallrumres.2013.08.007
  5. Guerra ICD, Felex SSS, Meireles BRLM, et al. Evaluation of goat mortadella prepared with different levels of fat and goat meat from discarded animals. Small Rumin Res 2011;98:59-63. https://doi.org/10.1016/j.smallrumres.2011.03.019
  6. Guerra ICD, Meireles BRLA, Felex SSS, et al. Spent lamb meat in the preparation of mortadella with different levels of pork fat. Cienc Rural 2012;42:2288-94. https://doi.org/10.1590/S0103-84782012005000113
  7. Abdullah BM. Beef and sheep mortadella: formulation, processing and quality aspects. Int J Food Sci Technol 2004;39: 177-182. https://doi.org/10.1046/j.0950-5423.2003.00763.x
  8. Leite A, Rodrigues S, Pereira E, et al. Physicochemical properties, fatty acid profile and sensory characteristics of sheep and goat meat sausages manufactured with different pork fat levels. Meat Sci 2015;105:114-20. https://doi.org/10.1016/j.meatsci.2015.03.015
  9. Francois P, Pires CC, Griebler L, et al. Physico-chemical and sensorial properties of fermented sausages formulated with different proportions of meat from swine and culling ewes. Cienc Rural 2009;39:2584-9. https://doi.org/10.1590/S0103-84782009000900031
  10. Stojkovic S, Grabez V, Bjelanovic M, et al. Production process and quality of two different dry-cured sheep hams from Western Balkan countries. LWT Food Sci Technol 2015;64: 1217-24. https://doi.org/10.1016/j.lwt.2015.07.022
  11. Jayathilakan K, Sultana K, Radhakrishna K, Bawa AS. Utilization of byproducts and waste materials from meat, poultry and fish processing industries: a review. J Food Sci Technol 2012;49: 278-93. https://doi.org/10.1007/s13197-011-0290-7
  12. Pereira AGT, Ramos EM, Teixeira JT, et al. Effects of the addition of mechanically deboned poultry meat and collagen fibers on quality characteristics of frankfurter-type sausages. Meat Sci 2011;89:519-25. https://doi.org/10.1016/j.meatsci.2011.05.022
  13. Mielnik MB, Aaby K, Rolfsen K, Ellenkjaer MR, Nilsson A. Quality of comminuted sausages formulated from mechanically deboned poultry meat. Meat Sci 2002;61:73-84. https://doi.org/10.1016/S0309-1740(01)00167-X
  14. Pereira AGT, Cardoso GP, Teixeira JT, et al. Composition, collagen content and sensory quality of sausages elaborated with mechanically separated meat poultry and collagen fiber. Braz J Food Res (REBRAPA) 2016;7:131-48. https://doi.org/10.3895/rebrapa.v7n1.3522
  15. AOAC. Official methods of analysis of AOAC international. Gaithersburg, MD: Association of Official Analytical Chemists; 2012.
  16. Raharjo S, Sofos JN, Schmidt GR. improved speed, specificity, and limit of determination of an aqueous acid extraction thiobarbituric acid-C18 method for measuring lipid peroxidation in beef. J Agric Food Chem 1992;40:2182-5. https://doi.org/10.1021/jf00023a027
  17. Jorge EC, Mendes ACG, Auriema BE, et al. Application of a check-all-that-apply question for evaluating and characterizing meat products. Meat Sci 2015;100:124-33. https://doi.org/10.1016/j.meatsci.2014.10.002
  18. Ramos EM, Gomide LAM. Meat quality analysis: fundamentals and methodologies. Vicosa, Brazil: Editora UFV; 2017.
  19. Nunes CA, Pinheiro ACM, Bastos SC. Evaluating consumer acceptance tests by three-way internal preference mapping obtained by parallel factor analysis (PARAFAC). J Sens Stud 2011;26:167-74. https://doi.org/10.1111/j.1745-459X.2011.00333.x
  20. Elmore JR, Heymann H, Johnson J, Hewett JE. Preference mapping: relating acceptance of “creaminess” to a descriptive sensory map of a semi-solid. Food Qual Prefer 1999;10:465-75. https://doi.org/10.1016/S0950-3293(99)00046-4
  21. Brazil. Ministry of Agriculture, Livestock and Food Supply (MAPA), Secretaria for the Defence of Agribusiness (SDA). Normative instruction no. 04, March 31, 2000. Technical regution of identity and quality of mechanically separated meat and sausages. Off J Federative Repub Brazil 2000;1:6-10.
  22. Honikel KO. The use and control of nitrate and nitrite for the processing of meat products. Meat Sci 2008;78:68-76. https://doi.org/10.1016/j.meatsci.2007.05.030
  23. Shahidi F, Pegg RB. Nitrite alternatives for processed meats. In: George C, editors. Food Flavors: Generation, Analysis and Process influence, Proceedings of the 8th International Flavor Conference. Cos, Greece: Elsevier; 1995. p. 1223-41.
  24. Shahidi F, Pegg RB. Effect of the preformed cooked curedmeat pigment (CCMP) on color parameters of muscle foods. J Muscle Foods 1991;2:297-304. https://doi.org/10.1111/j.1745-4573.1991.tb00462.x
  25. Pietrasik Z. Effect of content of protein, fat and modified starch on binding textural characteristics, and colour of comminuted scalded sausages. Meat Sci 1999;51:17-25. https://doi.org/10.1016/S0309-1740(98)00068-0
  26. Juarez M, Horcada A, Alcalde MJ, et al. Meat and fat quality of unweaned lambs as affected by slaughter weight and breed. Meat Sci 2009;83:308-13. https://doi.org/10.1016/j.meatsci.2009.05.017
  27. Daros FG, Masson ML, Amico SC. The influence of the addition of mechanically deboned poultry meat on the rheological properties of sausage. J Food Eng 2005;68:185-9. https://doi.org/10.1016/j.jfoodeng.2004.05.030
  28. Thomsen HH, Zeuthen P. The influence of mechanically deboned meat and pH on the water-holding capacity and texture of emulsion type meat products. Meat Sci 1988;22:189-201. https://doi.org/10.1016/0309-1740(88)90046-0
  29. Colmenero FJ, Barreto G, Mota N, Carballo J. influence of protein and fat content and cooking temperature on texture and sensory evaluation of bologna sausage. LWT Food Sci Technol 1995;28:481-7. https://doi.org/10.1006/fstl.1995.0081
  30. Nunes CA, Bastos SC, Pinheiro ACM, Pimenta CJ, Pimenta MESG. Relating consumer acceptance to descriptive attributes by three-way external preference mapping obtained by parallel factor analysis (PARAFAC). J Sens Stud 2012;27:209-16. https://doi.org/10.1111/j.1745-459X.2012.00387.x
  31. Young OA, Berdague JL, Viallon C, Rousset-Akrim S, Theriez M. Fat-borne volatiles and sheepmeat odour. Meat Sci 1997; 45:183-200.
  32. Butler-Hogg BW, Francombe MA. Carcass and meat quality in spring and hogget lamb. P Brit Soc Anim Prod 1985;40:527.

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