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Suppression Effect of Maltitol on Retrogradation of Korean Rice Cake (Karedduk)

Maltitol 첨가와 가래떡의 노화억제

  • Published : 2003.03.01

Abstract

Effect of the addition of maltitol to Korean rice cake (Karedduk) on its retrogradation was examined. Degree of retrogradation was also examined in terms of recrystallinity of starch and color change with a differential scanning calorimeter. As a result, retrogradation was suppressed by the increasing addition of maltitol. In particular, enthalpy showed a tendency to decrease at $25^{\circ}C$ rather than at 4$^{\circ}C$ during 4 days. In the gelatinization properties using DSC, onset temperature (To) was shown to increase slightly according to storage time. Maximum peak temperature (Tp) was shown to decrease by the addition of maltitol during 4 days. Melting enthalpy was decreased at $25^{\circ}C$ and 4$^{\circ}C$ by the addition of maltitol. The analysis X-ray diffraction also revealed that retrogradation of the Korean rice cake was suppressed by the addition of maltitol because crystalline region did not appear. The addition of maltitol into the Korean rice cake was found to result in an increase of its qualify or color stability.

Maltitol 첨가가 가래떡의 노화에 어떤 영향을 미치는지를 검토하였다. 노화현상은 시차주사열량기 (differential scanning calorimeter), 전분의 재결정화, 색깔의 변화정도를 측정, 비교 하였다. 그 결과 maltitol 첨 가량이 증가할수록 노화가 억 제되었는데 특히 실온에서는 냉장조건에서보다 엔탈피는 감소하는 경향을 나타내었다. DSC 흡열곡선의 경우 호화개시온도는 전반적으로 높은 경향을 나타내었으며 저장기간이 길어짐에 따라 경시적으로 증가하였다. 최대호화온도(Tp)의 경우에는 maltitol 첨가량을 증가할수록 최대호화온도는 낮아졌다. 용음 엔탈피의 경우는 실온, 냉장조건에서 maltitol을 첨가했을 때 다소 감소한 경향을 나타내었다. 또 X-ray의 회절도 실험에서도 maltitol을 첨가했을 때 가래떡은 crystalline region이 나타나지 않아 가래떡의 노화가 억제하고 있음을 알 수 있었다. Maltitol 첨가에 따른 가래떡 색깔변화를 보면 maltitol을 첨가한 경우에는 가래떡의 관능적 품질의 안정화 즉 색깔안정화에 기여하는 것으로 밝혀졌다.

Keywords

References

  1. Hibi Y, Kitamura S, Kuge T. 1990. Effect of lipids on the retrogradation of cooked rice. Cereal Chem 67: 7-11.
  2. Lee SY, Lee SG, Kim KJ, Kwon IB. 1993. Effect of alum on the physicochemical properties. Korean J Food Sci Tech 25: 355-359.
  3. Cairns P, I'Anson KJ, Morris VJ. 1991. The effect of added sugars on the retrogradation of wheat starch gels by X-ray diffraction. Food Hydrocolloids 5: 151-155. https://doi.org/10.1016/S0268-005X(09)80302-0
  4. Kohyama K, Nishinari K. 1991. Effect of soluble sugars on gelatinization and retrogradation of sweet potato starch. J Agri Food Chem 39: 1406-1410. https://doi.org/10.1021/jf00008a010
  5. Kohyama K, Nishinari K. 1992. Cellulose derivatives effects on gelatinization and retrogradation of sweet potato starch. J Food Sci 57: 128-133. https://doi.org/10.1111/j.1365-2621.1992.tb05439.x
  6. Ranholta C, Gelroth J. 1998. Soluble and insoluble fiber in soda crackers. Cereal Chem 65: 159-163.
  7. I'Anson KJ, Miles MJ, Morris VJ, Besford LS, Jarvis DA, Marsh RA. 1990. The effects of added sugars on the retrogradation of wheat starch gels. J Cereal Sci 11: 243-248. https://doi.org/10.1016/S0733-5210(09)80168-9
  8. Kohyama K, Nishinari K. 1992. Cellulose derivatives effects on gelatinization and retrogradation of sweet potato starch. J Food Sci 57: 128-132. https://doi.org/10.1111/j.1365-2621.1992.tb05439.x
  9. Katsuta K, Miura M, Nishimura A. 1992. Effect of saccharides on stabilities of rice starch gels. 2. Oligosaccharides. Food Hydrocolloids 6: 399-404. https://doi.org/10.1016/S0268-005X(09)80007-6
  10. Donovan JW, Lorenz K, Kulp K. 1983. Differential scanning calorimetry of heat-moistrue treated wheat and potato starch. Cereal Chem 60: 381-385.
  11. Wada K, Takahashi K, Shirai K, Kawamura A. 1980. Differential thermal analysis (DTA) applied to examining gelatinization of starches in foods. J Food Sci 44: 1366-1370. https://doi.org/10.1111/j.1365-2621.1979.tb06440.x
  12. Biliaderis CG, Maurice TJ, Vose JR. 1980. Starch gelatinization phenomena studied by differential scanning calorimetry. J Food Sci 45: 1669-1673. https://doi.org/10.1111/j.1365-2621.1980.tb07586.x
  13. Bello-perez LA, Paredes-Lopez O. 1995. Effects of solutes on retrogradation of stored starches and amylopectins; A calorimetric study. Starch 47: 83-88. https://doi.org/10.1002/star.19950470302
  14. Ward SS, Colonna P, Buleon A. 1991. Influence of amyloseamylopectin ratio on gel properties. J Cereal Sci 13: 1-5. https://doi.org/10.1016/S0733-5210(09)80023-4
  15. Levine H, Slade L. 1987. Water as a plasticizer. Physicochemical aspects of low-moisture polymeric systems. In Water Science Review. Franks F, ed. Cambridge Univ. Press, Cambridge, UK. Vol 3, p 179-185.
  16. Ring RBK, Lelievere J. 1982. Comparison of the crystallinities of wheat starches with different swelling capacities. Starch 34: 159-163. https://doi.org/10.1002/star.19820340504
  17. Jankowski T, Rha CK. 1986. Differential scanning calorimetry study of the wheat grain cooking process. Starch/Starke 38: 45-49. https://doi.org/10.1002/star.19860380203
  18. Slade L, Levine H. 1991. Beyond water activity; Recent advances based on an alternative approach to the assessment of food quality and safety. Crit Rev Food Sci Nutr 30: 115-120. https://doi.org/10.1080/10408399109527543

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