Antioxidative Activity and Quality Characteristics of Kochujang Amended with Different Ratios of Deodeok (Condonopsis lanceolata) Root Powder

더덕분말을 첨가한 고추장의 품질 특성 및 항산화 활성

  • Received : 2012.08.29
  • Accepted : 2012.10.30
  • Published : 2012.10.31

Abstract

This study was conducted to investigate the quality characteristics and antioxidant activity of Kochujang following the addition of deodeok (Condonopsis lanceolata) powder. To accomplish this, 1%, 3% and 5% deodeok powder was added to Kochujang and the samples were then incubated at $30^{\circ}C$. during which time the general ingredients, water content, acidity, salinity, reducing sugar content, amino-nitrogen content and DPPH were analyzed at intervals of about two weeks. The water crude protein, crude fat and ash content were 3.61%, 8.44%, 4.62% and 8.85%, respectively. The initial acidity was 3.23~3.97%, and this increased to 4.39~44.86%. highlight please clarify this, I cannot infer your intended meaning; however, this can likely be deleted. The salinity was 7.42~7.73%, and 5% with deodeok powder producing the lowest content and showing a tendency to decrease during the storage period. The early amino-nitrogen content was 274.0~333.1%, with higher nitrogen contents being associated with large amounts of deodeok powder. The amino-nitrogen content during the storage period increased to the 4th week, then decreased. Additionally, the a value decreased sharply during the 4-week storage period. Addition of large amount of deodeok powder significantly improved the free radical scavenging activity. The free radical scavenging activity of 1%, 3% and 5% deodeok powder was higher than that of Kochujang throughout the maturation period. Overall, the results of this study indicate that there is the potential to develop functional foods by the addition of deodeok.

본 연구는 고추장의 맛과 향미를 향상시키고, 기능성을 추가한 건강 지향적 고추장을 제조하고자 더덕가루를 첨가하고 품질 특성과 항산화 활성을 살펴보았다. 더덕가루를 고추장에 1%, 3%, 5%로 첨가하고 $30^{\circ}C$에서 보관하면서 2주 간격으로 재료의 일반성분, 수분함량, 산도, 염도, 환원당, 아미노태 질소, DPPH 유리래디칼 소거능을 측정하였다. 더덕가루의 수분함량은 3.61%였으며, 조단백질, 조지방 및 회분은 각각 8.44%, 4.62% 및 8.85%였다. 초기 산도는 3.23~3.97%이며, 숙성 기간 동안 증가하여 대조군을 제외하고 저장 6주째 4.39~4.86%로 최고 수준에 이르렀다. 담금 초기 염도는 7.12~7.73%로 5% 첨가구가 7.12%로 가장 낮았으며, 숙성 기간동안 대조군에 비해 더덕분말 첨가구에서 염도 감소 효과가 큰 것으로 나타났다. 초기 아미노태 질소는 274.0~333.1% 수준이었으며, 더덕가루첨가량이 많을수록함량이높았는데, 그 이유는 더덕가루의 조단백 함량이 높기 때문으로 사료된다. 숙성기간 동안 아미노태 질소 함량은 대조군을 제외한 1%, 3%, 5% 더덕분말 첨가구에서 6주째까지는 증가하였다가 그 이후 감소하는 경향을 나타냈다. 유리래디칼 소거작용의 경우 담금 초기 더덕분말 첨가량이 증가할수록 유리래디칼 소거작용이 유의적으로 높아졌으며(p<0.05), 숙성 전 기간에 걸쳐 대조군에 비해 1%, 3%, 5% 더덕분말 첨가구의 유리래디칼 소거작용이 높은 것으로 나타나 기능성 식품 개발 가능성을 확인할 수 있었다.

Keywords

References

  1. 산림청 (2012) 2011 임산물 생산조사 산출결과. p 22.
  2. 한복진, 한복려 (1998) 우리가 알아야 할 우리 음식 백가지. 현암사, 서울. pp 148-149.
  3. AOAC (1990) Official methods of analysis, 15th ed, The Association of Official Analytical Chemists, Washington DC. USA. pp 8-35.
  4. An ML, Jeong DY, Hong SP, Song GS, Kim YS (2003) Quality of traditional kochujang supplement with mashrooms (Pleurotus ostreatus and Lentinus edodes). J Korean Soc Agric Chem Biotechnol 46: 229-234.
  5. Bang HY, Park MH, Kim GH (2004) Quality characteristics of kochujang prepared with Paecilmyces japonica from silkworm. Korean J Food Sci Technol 36: 44-49.
  6. Blios MS (1958) Antioxidant determination by the use of stable free radical. Nature pp 1199-1200.
  7. Choi GC, Choi SK (2009) Quality and sensory characteristics added with coriander (Coriandrum sativum L.). The Korean Journal of Culinary Reserach 15: 73-85.
  8. Choi JY, Lee TS, Noh BS (2000) Characteristic of valatile flavor compounds in kochujang with meju and soybean koji during fermentation. Korean J Food Sci Technol 32: 1035-1042.
  9. Choi SK, Shin KE, Jung HA, Park ML (2010a) Quality characteristic of kochujang prepared with soy powder. J East Asian Soc Dietary Life 20: 759-768.
  10. Choi SK, Shin KE, Lee MS, Kim SH, Choi EH (2010b) A study on the quality characteristics and utilization of jujube gochujang. The Korean Journal of Culinary Reserach 16: 264-276.
  11. Chung SK, Kim YS, Lee DS (2005) Effects of vessel on the quality changes during fermentation of kochujang. Korean J Food Rreserv 12: 292-298.
  12. Ham SS, Kim SH, Yoo SJ, Oh HT, Choi HJ, Chung MJ (2008) Quality characteristics of kochujang added deep sea water salt and sea tangle. Korean J Food Preserv 15: 214-218.
  13. Han EG, Cho SY (1997) Effects of Condonoposis lanceolata water extract on the activities of antioxidative enzymes in carbon tetrachloride treated rats. Korean J Soc Food Sci Nutr 26: 1181-1186.
  14. Han EG, Sung IS, Moon HG, Cho SY (1998) Effects of Condonoposis lancelata water extract on the level of lipid in rats fed high fat diet. Korean J Soc Food Sci Nutr 27: 940-944.
  15. Hong CH, Choi KS, Lee HJ, Kwon DJ (2010) Effects of deodeok contents on the qualities of quick fermented doenjang type product. J Korean Soc Food Sci Nutr 39: 757-763. https://doi.org/10.3746/jkfn.2010.39.5.757
  16. Im SI, Song SM (2010) Changes in characteristics of low-salted kochujang with licoririce (Glycyrrhiza glabra), mustard (Brassica juncea), and chitosan during fermentation. J Korean Soc Food Sci Nutr 39: 560-566. https://doi.org/10.3746/jkfn.2010.39.4.560
  17. Jeon ER, Jung LH (2011) Quality properties of kochujang added defatted rice bran powder during storage. Korean J Food Cookery Sci 27: 89-98. https://doi.org/10.9724/kfcs.2011.27.4.089
  18. Jeong YJ, Seo JH, Lee GD, Lee MH, Yoon SR (2000) Change in quality characteristics of traditional kochujang prepared with apple and persimmon during fermentation. J Korean Soc Food Sci Nutr 29: 575-581.
  19. Jin HS, Kim JB, Lee KJ (2007) Major microbial composition and its correlation to the taste of Sunchang traditional kochujang. Korean J Food & Nutr 20: 363-368.
  20. Kang MK, Song KB (2006) Quality characteristics of gochujang with the addition of skipjack cooking broth as protein source. Korean J Food Preserv 13: 457-464.
  21. Kim CA, Lee WK, Lee IS, Wang MH (2008) Changes of physicochemical, sensory and antioxidant activity characteristics on rice wine yakju added with different ratios of Condonopsis lancelata. Korean J Food Sci Technol 40: 201-206.
  22. Kim DH, Ahn BY, Park BH (2003) Effect of Lycium chinense fruit on the physicochemical properties of kochujang. Korean J Food Sci Technol 35: 461-469.
  23. Kim HJ, Lee JH (2009) Quality changes of Gochujang incorporated with strawberry puree during aging. Food Engineering Progress 13: 110-116.
  24. Kim JY, Hwang SJ, Eun JB (2011) Chemical characteristics of gochujang with different amount of sweet powder. Korean J Food Preserv 18: 706-713. https://doi.org/10.11002/kjfp.2011.18.5.706
  25. Kim MS, Kim IW, Oh JA, Shin DH (1998) Quality changes of traditional kochujang prepared with different meju and red pepper during fermentation. Korean J Food Sci Technol 30: 924-933.
  26. Kim MS, Kim IW, Oh JA, Shin DH (1999) Effect of different koji and irradiation on the quality of traditional kochujang. Korean J Food Sci Technol 31: 196-205.
  27. Kim NY, Chae HS, Lee IS, Kim DS, Seo KT, Park SJ (2010) Analysis of chemical composition and antioxidant activity of Codonopsis lanceolata skin. J Korean Soc Food Sci Nutr 39: 1627-1633. https://doi.org/10.3746/jkfn.2010.39.11.1627
  28. Kim SS, Ha JH, Jeong MH, Ahn JH, Yoon WB, Park SJ, Seong DH, Lee HY (2009) Comparison of biological activities of fermented Condonopsis lanceolata and fresh Condenopsis lanceolata. Korean J Medicinal Crop Sci 17: 280-285.
  29. Kim YS, Shin DB, Koo MS, Oh HI (1994) Changes in nitrogen compounds of traditional kochujang during fermentation. Korean J Food Sci Technol 26: 389-392.
  30. Lee EJ, Kim TH, Kim DR (2008) Globalization of Korean food items promotion. Korean J Food Culture 23: 729-736.
  31. Lee MJ, Lee JH (2006) Quality characteristics of kochujang prepared with maesil (Prunus mume) extract during aging. J Korean Soc Food Sci Nutr 35: 622-628. https://doi.org/10.3746/jkfn.2006.35.5.622
  32. Lee MS, Park ML, Jung HA, Choi SK (2011) Quality characteristics of gochjang dresshing containing various amounts of maesil (Prunus mune) concentrate. J East Asian Soc Dietary Life 21:38-45.
  33. Lee SJ, Hong SP, Choi SY (2007) A consumer study of gochujang products using focus group interviews in the UK. J East Asian Soc Dietary Life 17: 661-670.
  34. Lim SI, Choi SY, Cho GH (2006) Microbiology/fermentation/ biotechnology: effects of functional ingredients addition on quality characteristics of kochujang. Korean J Food Sci Technol 38: 779-784.
  35. Na SE, Sei KS, Choi JH, Song GS, Choi DS (1997) Preparation of low salt and functional kochujang containing chitosan. Korean J Food Nutr 10: 193-200.
  36. Oh HI, Park JM (1997) Change in quality characteristics of traditional kochujang prepared with meju of different fermentation period during aging. Korean J Food Sci Technol 29: 1166-1174.
  37. Oh HI, Shon SH, Kim JM (2000) Change in microflora and enzyme activities of kochujang prepared with Aspergillus oryzae, Bacillus licheniformis and Saccaromycess rouxii during fermentation. Korean J Food Sci Technol 32: 410-416.
  38. Oh HS, Kim JH, Kim JH, Choi MY (2006) The volatile flavor components of fresh Codonopsis lanceolata cultivated on a wile hill. Korean J Food Cookery Sci 22: 774-782.
  39. Park JS, Cho SH, Na HS (2010) Properties of chengkukjang prepared with admixed medicinal herb powder. Korean J Food Preserv 17: 343-350.
  40. Park JY, Kim YH, Kwang JJ (1989) Volatile flavor components of Codonopsis lanceolata Traut. (Bentb et Hook). J Korean Agric Chem 32: 338-343.
  41. Park SD, Lee GH, Lee YS, Kwon YK, Park JH, Chio SM, Shin SW (2007a) Comparison of immunomodualtory effects of water-extracted Adenophorae radix, Lriopis tuber, Dendroboii herba, Polygonati odorati rhizoma and Polygonati rhizoma. Korean J Oriental Physiology & Pathology 21: 414-424.
  42. Park WP, Cho SH, Lee SC, Kim SY (2007b) Changes of characteristic in kochujang fermentation with maesil powder or concentrate. Korean J Food Preserv 14: 378-384.
  43. Seo JH, Jeong YJ, Suh CS (2003) Quality characteristics of apple kochujang prepared with different meju during fermentation. Korean J Food Sci Nutr 32: 513-518. https://doi.org/10.3746/jkfn.2003.32.4.513
  44. Shin DH, Ahn EY, Kim YS, Oh JY (2000) Fermentation characteristics of kochujang containing horeseradish or mustard. Korean J Food Sci Technol 32: 1350-1357.
  45. Shin DH, Kim DH, Choi U, Lim DK, Lim MS (1996) Studies on taste components of traditional kochujang. Korean J Food Sci Technol 28: 152-156.
  46. Shin DH, Kim DH, Choi U, Lim MS, An EY (1997) Effect of red pepper varieties on the physicochemical characteristic of traditional kochujang during fermentation. J Korean Soc Food Sci 26: 1044-1050.
  47. Shin HJ, Shin DH, Kwak YS, Choo JJ, Ryu CH (1999a) Changes in physiochemical properties of kochujang by red ginseng addition. J Korean Soc Food Sci Nutr 28: 760-765.
  48. Shin HJ, Shin DH, Kwak YS, Choo JJ, Ryu CH (1999b) Sensory evaluation and changes in microflora and enzyme activities of pumpkin-added kochujang. J Korean Soc Food Sci Nutr 28: 766-772.
  49. Shin JH, Yang SM, Kang MJ, Sung NJ (2011) Quality changes of garlic added seasoning gochujang during storage. J Agriculture & Life Science 45: 115-123.
  50. Sung JM, Kim OK, Ryu HS (2011) Change in enzyme activity and sensory characteristics of kochujang with different ratios of added deoduk (Condonopsis lanceolata) root powder. J Korean Soc Food Sci Nutr 40: 1150-1156. https://doi.org/10.3746/jkfn.2011.40.8.1150
  51. Whang WK, Park KY, Chung SH, Oh IS, Kim IH (1994) Flavonoids from Condonposis lanceolata leaves. Korean J Phamacognition 26: 204-208.
  52. Yang HT, Choi HJ (2005) Studies on the properties of kochujang by addition of natural plan extracts. Korean J Food Food & Nutr 18: 225-228.
  53. Yeum HS, Chun MS, Noh BS, Lee TS (1995) Studies on the preparation of kochujang with addition of mixed fruit juice. J Nat Sci Inst Seoul Woman's Univ 6: 172-183.