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Food Quality and Shelf-life of Korean Commercial Fried Kamaboko

시판어묵의 식품학적 품질과 저장안정성

  • Ryu, Hong-Soo (Department of Nutrition and Food Science, Pukyong National University) ;
  • Choi, Nam-Do (Department of Nutrition and Food Science, Pukyong National University) ;
  • Lee, So-Yeon (Department of Nutrition and Food Science, Pukyong National University)
  • 류홍수 (부경대학교 식품영양학과) ;
  • 최남도 (부경대학교 식품영양학과) ;
  • 이소연 (부경대학교 식품영양학과)
  • Received : 2014.05.28
  • Accepted : 2014.06.05
  • Published : 2014.06.30

Abstract

To confirm the food quality and storage stability of commercial Korean kamaboko, we experimented with the composition and textural properties using various surimis and kamaboko products. We also investigated changes in protein digestibility and lipid oxidation of vacuum packed products under chilled storage at $4{\pm}1^{\circ}C$. Among the fish meatbased surimi, vegetable mixed surimi had the lowest protein content (23.73 %), as compared to other surimi (51.9-73.6%). Siginificant (P<0.05) differences in protein, lipid content and degree of fat oxidation were noted between the fried kamaboko products of three companies. Adhesiveness, springiness, cohesiveness, gumminess, chewiness and resilience were similar in all samples, but there were notable differences in hardness and fractuability between samples. In vitro protein digestibility and trypsin indigestible substrate (TIS) were not inversely proportional in fried kamaboko products. The protein digestibility (80.30%) of steamed vegetable mixed fried kamaboko was lower than that of other fried samples (84.9-86.2%). Computed protein efficiency ratio (C-PER) of companies A and C's fried kamaboko was 2.6 but company B's was 1.9. There was no noticeable change in thiobarbituric acid reactive substances (TBARs) or protein digestibility for any of the vacuum packed fried kamaboko during 30 days of chilled storage.

Keywords

References

  1. AOAC. 1982. Calculated protein efficiency ratio (C-PER and DC-PER), Official first action. J AOAC 65, 496-499.
  2. AOAC. 1990. Official Method of Analysis, 15thed. Association of Official Analytical Chemists, Washington D.C. , U.S.A.
  3. Bae MS and Lee SC. 2007. Quality characteristic of fried fish paste containing anchovy powder. J Korean Soc Food Sci Nutr 32, 1188-1192.
  4. Chang-Lee MV, Lampia LE, and Crawford DL 1990. Yield and composition of surimi from Pacific whiting(Merluccius productus) and the effect of various protein additives on gel strength. J Food Sci 55, 83-86. https://doi.org/10.1111/j.1365-2621.1990.tb06022.x
  5. Chen HH, Chiu EM and Huang JR. 1997. Color and gel-forming properties of horse mackerel (Trachurus japonicus) as related to washing conditions. J Food Sci 62, 985-991. https://doi.org/10.1111/j.1365-2621.1997.tb15021.x
  6. El SN and Kavas A. 1996. Determination of protein quality of rainbow trout (Salmo irideus) by in vitro protein digestibility - corrected amino acid score (PDCAAS). Food Chem 55, 221-223. https://doi.org/10.1016/0308-8146(95)00111-5
  7. Felker DJ and Waines G. 1978. Colorimetric screening assay for cystine and cysteine in legumes seed meals. Anal Biochem 87, 641-647. https://doi.org/10.1016/0003-2697(78)90716-9
  8. Ha JU, Koo SG, Lee HY, Hwang YM and Lee SC. 2001. Physical properties of fish paste containing Agaricus bisporus. Korean J Food Sci Tech 33, 451-454.
  9. Hsu CK and Chiang BH. 2002. Effect of water, oil, starch, calcium carbonate and titanium dioxide on the colour and texture of threadfin and hairtail surimi gels. Int J Food Sci Tech 37, 387-393. https://doi.org/10.1046/j.1365-2621.2002.00577.x
  10. Hugli TE and Moore S. 1972. Determination of the tryptophan content of proteins by ion exchange chromatography of alkaline hydrolysates. J Biol Chem 247, 2828-2834.
  11. Kim SY, Son MH, Ha JU and Lee SC. 2003. Preparation and characterization of fried surimi gel containing king oyster mushroom (Pleurotus eryngii). J Korean Soc Food Sci Nutr 32, 855-858. https://doi.org/10.3746/jkfn.2003.32.6.855
  12. Kohara T, Suzuki S and Iwanami H. 1962. Handbook of Food Analysis. Kenpakusha, Tokyo, Japan, 754-755.
  13. Koo SG, Ryu YK, Hwang YM, Ha JU and Lee SC. 2001. Quality properties of fish meat paste containing enoki mushroom (Flammulina velutipes). J Korean Soc Food Sci Nutr 30, 288-291.
  14. Lee KH, Jo JH and Ryu HS. 1984. Distribution of trypsin indigestible substrate (TI) in seafoods and its changes during processing. 2. Changes in TI and in vitro apparent digestibility of boiled and dried anchovy during processing and storage. Bull Korean Fish Soc 17, 101-108.
  15. Lee KH and Ryu HS. 1986. Evaluation of seafood protein quality as predicted by C-PER assay. In Seafood Quality Determination. Kramer DE and Liston J, eds. Elsevier, New York, U.S.A., 473-485.
  16. Ministry for Food, Agriculture, Forestry and Fisheries. 2012 . Food, Agriculture, Forestry and Fisheries Statistical Yearbook, Seoul, Korea, 365-366.
  17. Ministry of Health and Wellfare. 2012. 2011 National Statistics for Health. Seoul, Korea, 275.
  18. National Rural Resources Development Institute, RDA 2006. Proximate composition of fishes and shellfishes, Food Composition Table 7th ed., Seoul, Korea, 296.
  19. Oduro FA, Choi ND and Ryu HS. 2011. Effects of cooking conditions on the protein quality of chub mackerel Scomber japonicus. Fish Aquat Sci 14, 257-265.
  20. Park JW. 1994. Functional protein additives in surimi gels. J Food Sci 59, 525-527. https://doi.org/10.1111/j.1365-2621.1994.tb05554.x
  21. Rhinehart D. 1975. A nutritional characterization of the distiller's grain protein concentrates. MS thesis, University of Nebraska-Lincoln, Lincoln, U.S.A.
  22. Ryu HS. 1983. Nutritional evaluation of protein quality in some seafoods. Ph.D. Thesis, National Fisheries University of Pusan, Busan, Korea.
  23. Ryu HS and Lee KH. 1985. Effect of heat treatment on the in vitro protein digestibility and trypsin indigestible substrate (TIS) contents in some seafoods. J Korean Soc Food Nutr 14, 1-12.
  24. Ryu HS, Moon JH and Park, JH. 1994a. Effect of processing conditions on the nutritional quality of seafood. 1 Effects of heating and storage conditions on protein quality of surimi products. Bull Korean Fish Soc 27, 282-291.
  25. Ryu HS, Lee KW and Lee KH. 1994b. Effect of processing conditions on the nutritional quality of seafood. 2 Effects of cryoprotectants on the protein qualities of Pollock surimi. Bull Korean Fish Soc 27, 335-343
  26. Satterlee LD, Kendrick JG and Miller GA. 1977. Rapid in vitro assays for estimating protein quality. Food Tech 31, 78-81.
  27. Singh U, Kherdekar MS, Sambunathan R. 1982. Studies on Desi and Kabuli chickpea(Cicer arietinum L.) cutivars - The levels of amylase inhibitors, levels of oligosaccharides and in vitro starch digestibility. J Food Sci 47, 510-512. https://doi.org/10.1111/j.1365-2621.1982.tb10113.x
  28. Son MH, Kim SY, Ha JU and Lee SC. 2003. Texture properties of surimi gel containing shiitake mushroom (Lentinus edodes). J Korean Soc Food Sci Nutr 32, 859-863. https://doi.org/10.3746/jkfn.2003.32.6.859
  29. Suzuki T. 1981. Fish and Krill Protein: Processing Technology. Applied Science Publishers Ltd., U.K., 84-129.
  30. Tarladgis BG, Watts BM, Younathan MT and Dugan LR. 1960. A distillation method for the quantitative determination of melonaldehyde in rancid foods. J American Oil Chem Soc 37, 44-48. https://doi.org/10.1007/BF02630824
  31. Witte VC, Krause GF and Bailey ME. 1970. A new extraction method for determining 2-thiobarbituric acid values of pork and beef during storage. J Food Sci 35, 582-585. https://doi.org/10.1111/j.1365-2621.1970.tb04815.x