Quality Characteristics of Bread Added with Prickly Pear(Opuntia ficus-indica) Powder

손바닥선인장 열매 분말 첨가 식빵의 품질 특성

  • Shin Doo-Ho (Department of Food Science and Technology, Woosong Technical College) ;
  • Lee Yeon-Wha (Department of Food Science and Technology, Woosong Technical College)
  • 신두호 (우송공업대학 식품과학계열) ;
  • 이연화 (우송공업대학 식품과학계열)
  • Published : 2005.12.01

Abstract

The quality characteristics of bread added with the levels of $0\%,\;1.0\%,\;2.0\%\;3.0\%\;and\;4.0\%$ prickly pear powder were investigated. Mixing water absorption capacity was increased by increasing amounts of prickly pear powder. Mixing time of dough was increased compared to that of wheat flour by added prickly pear powder, while it decreased as prickly pear powder content increased. Dough stability of wheat flour added with $1.0\%$ prickly pear powder was similar to wheat flour dough, while decreased by increasing amount of prickly pear powder at the range of $2.0\~4.0\%$. Pasting temperature($66.1\~66.9^{\circ}C$) of wheat flour added with $1.0\%,\;2.0\%\;3.0\%\;and\;4.0\%$ prickly pear powder was lower($67.8^{\circ}C$) than that of wheat flour. Peak viscosity($2,226\~2,375$ cp) of wheat flour added with $1.0\%,\;2.0\%\;3.0\%\;and\;4.0\%$ prickly pear powder were higher(2,288 cp) than control, and increased with increasing amount of prickly pear powder Setback($797\~750$ cp) of wheat flour added with $1.0\%,\;2.0\%\;3.0\%\;and\;4.0\%$ prickly pear powder were lower(803 cp) than that of wheat flour, and decreased with increasing amount of prickly pear powder. The volume of dough added with prickly pear powder decreased compared to that of the wheat dough. The specific loaf volume of bread added with prickly pear powder decreased($8.0\~18.5\%$) compared to that of the wheat bread. Color of crumb was deep red gradually with the increasing amount of substituted prickly pear powder. Hardness, adhesiveness, gumminess and chewiness of bread were increased gradually with the increasing amount of substituted prickly pear powder but the springiness was decreased. The sensory evaluation showed that bread of wheat flour added with $2.0\%$ prickly pew powder was superiority than the wheat flour bread.

손바닥선인장을 기능성 소재로서의 이용 가능성을 알아보기 위해 선인장 열매 분말을 강력분에 $1.0\%,\;2.0\%\;3.0\%$$4.0\%$혼합하여 만든 식빵의 품질 특성을 조사하여 다음과 같은 결과를 얻었다. Farinogram 측정에 의한 반죽의 물리적 특성은 수분흡수율은 선인장 열매 분말 첨가량이 많아질수록 증가하였다. 반죽형성 시간은 대조군에 비해 길었으며 선인장 열매 분말 첨가량이 많아질수록 짧아지는 경향을 나타냈다. 반죽의 안정도는 선인장 열매 분말 $1.0\%$ 첨가 때는 대조군과 큰 차이는 없었으나 첨가량이 $2.0\%,\;3.0\%$$4.0\%$로 증가함에 따라 크게 낮아졌다. RVA에 의한 강력분의 호화온도는 $67.8^{\circ}C$, 최고점도 2,288 cp 이었으며 선인장 열매 분말 혼합으로 호화온도는 $0.9\~1.7^{\circ}C$정도 낮아졌으며 점도는 증가하는 경향을 나타냈다. 냉각 후 점도는 선인장 열매 분말의 혼합으로 점도가 감소하는 경향을 나타냈다. Dough의 발효력은 선인장 열매 분말 $1.0\%$ 첨가군은 대조군과 dough의 부피가 차이가 없었으나 $2.0\%,\;3.0\%$$4.0\%$ 첨가군은 낮아졌다. 식빵의 비용적은 선인장 열매 분말 첨가량이 증가할수록 대조군보다 $8.0\~18.5\%$ 낮아졌다. 식빵의 내부 색도는 선인장 열매 분말 첨가량이 증가할수록 점점 짙은 홍색을 나타냈다. 식빵의 견고성, 부착성, 검성 및 씹힘성은 선인장 열매 분말 첨가량이 많을수록 증가하였으며 탄력성은 떨어졌다. 관능검사 결과 $2.0\%$ 선인장 열매 분말 혼합 식빵은 색깔, 향미, 촉감, 맛 그리고 종합적인 기호도면에서 대조군보다 좋은 점수를 얻었다. 따라서 식빵의 선인장 열매 분말 적정 첨가량은 $2.0\%$ 수준으로 검토되었다.

Keywords

References

  1. Seo, SS, Kim, MY, Youn, KS, No, HK and Kim, SD. Cooking characteristics of rice coated with prickly pear water extracts. J. Korean Food Sci. 31:733-737. 2002 https://doi.org/10.3746/jkfn.2002.31.5.733
  2. Wie, MB. Protective effects of Opuntia ficus-indica and Saururus chinensis on free radical-induced neuronal injury in mouse cortical cell cultures. J. Korean Yakhak Hoeji 44:613-619. 2000
  3. 上海中薬大事典. pp.1532-1533.科學技術出版社. 1985
  4. Shin, JU, Joo, MJ, Lee, YC, Moon, YI and Kim, DH. Antidiabetic activity Opuntia ficus-indica var. sabotan on db/db mice. J. Korean. Pharmacogn. 33:332-336. 2002
  5. Shin, TK, Kim, SJ, Moon, CJ, Wie, MB and Hyun, BH. Opuntia ficus-indica ethanol extract ameliorates steptozotocin-induced hyperglycemia in rats. Korean J. Gerontol. 9:78-83. 1999
  6. Paik, SK, Kim, HY, Yang, SD, Song, CW, Shin TK and Han, SS. The effects of Opuntia ficus-indica fruit powder on antioxidant parameters in senescence-accelerated mouse(SAM). Korean J. Gerontol. 9:70-77. 1999
  7. Chung, HJ. Antioxidative and antimicrobial activities of Opuntia ficus indica var. saboten. J. Korean Soc. Food Sci. 16:160-166. 2000
  8. Park, EH, Hwang, SE and Kalmg, JH. Anti-inflammatory activiy of Opuntia ficus-indica. Yakhak Hoeji. 42:621-626. 1998
  9. Choi, JW, Lee, CK, Moon, YI, Park, HJ and Han, YN. Biological activities of the extracts from fruit and stem of prickly pear( Opuntia ficus-indica var. saboten) III.-Effects on subacute alcoholic hyperlipidemia in rats. Korean J. Pharmacohn. 33:238-244. 2002
  10. Lee, YC, Hwang, KG, Han, DH and Kim, SD. Compositions of Opuntia ficus-indica. Korean J. Food Sci. 29:847-853. 1997
  11. Chung, MS and Kim, KH. Stability of betanine extracted from Opuntia ficus-indica var. sabo!en. J. Korean Soc. Food Sci. 12:506-510 1996
  12. Huang, AS and VON ELBE, JH. Effect of pH on the Degradation and Regeneration of Betanine. J. Food Sci. 52:1689-1693. 1987 https://doi.org/10.1111/j.1365-2621.1987.tb05907.x
  13. Lee, SP, Whang, K and Ha, YD. Functional properties of mucilage and pigment extracted from Opuntia ficus-indica. J. Korean. Soc. Food Sci. 27:821-826. 1998
  14. Lee, JH and Lee, SR. Analysis of phenolic substances content in Korean plant foods. Korean J. Food Sci. Technol. 26:310-316. 1994
  15. Kim, KS and Lee, SY. The quality and storage characteristics of jeung-pyun prepared with Opuntia ficusindia var. sabolen powder. Korean J. Soc. Food Cookery Sci. 18:179-184. 2002
  16. Lee, YC, Shin, KA, Jeong, SW, Moon, YI, Kim, SD and Han, YN. Quality characteristics of wet noodle added with powder of Opuntia ficus-indica. Korean J. Food Sci. Technol. 31:1604-1612. 1999
  17. Chong, HS and Park, CS. Quality of noodle added powder of Opuntia ficus-indica var. saboten. Korean J. Food Preservation. 10:200-205. 2003
  18. Son, MJ, Whang, K and Lee, SP. Development of jelly fortified with lactic acid fermented prickly pear extract. J. Korean. Soc. Food Sci Nutr. 34:408-413. 2005 https://doi.org/10.3746/jkfn.2005.34.3.408
  19. Lee, SP, Lee, SK and Ha, YD. Alcohol fermentation of Opuntia ficus fruit juice. J. Food Sci. Nutr. 5:3236. 2000
  20. Lee, SP and Son, MJ. Optimization of lactic acid fermentation of prickly pear extract. J. Food Sci. Nutr. 9:7-13, 2004 https://doi.org/10.3746/jfn.2004.9.1.007
  21. Lee, YH. Effect of soybean milk residues powder on bread quality and characteristics. Ph.D. Hannam university. TaeJeon, 2003
  22. 山田次良.食品分析機器のてぴき, p.43.三共出版. 1997
  23. 권용주, 권중호, 박근형, 박양군, 양회천. 식품화학, p.128. 영지문화사. 1998
  24. 송재철, 박현정. 식품물성학, p.141. 울산대학교 출판부. 1996
  25. 松本 搏. 製빵ぱソの科學, pp1-10.日本 빵 技術硏究所. 1992
  26. Kim, BR, Choi, YS and Lee, SY. Study on breadmaking quality with mixture of buckwheat-wheat flour. J. Korean. Soc. Food Sci. Nutr. 29:241-247. 2000
  27. Kim, YS, Jeon, SS and Jung, ST. Effect of lotus root powder n the baking quality of white bread. Korean. J. Soc. Food Cookery Sci. 18:413-425. 2002
  28. Kim, HJ, Kang, WW and Moon, KD. Quality characteristics of bread added with Gastrodia elata Blume powder. Korean J. Food Sci. Technol. 33:437-443. 2001
  29. Bae, JH, Woo, HS, Choi, HJ and Choi, C. Qualities of bread added with Korean persimmon(Diospyros kaki L. folium) leaf powder. J. Korean. Soc. Food Sci. Nutr. 30:882-887. 2001