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Comparison of Saponin Content and Antioxidant Effect depending on the Processing Method of Codonopsis lanceolata

  • 투고 : 2021.11.22
  • 심사 : 2021.12.01
  • 발행 : 2021.12.31

초록

Codonopsis lanceolata, called deodeok in Korean, has been verified for various effects, including anti-aging and anti-inflammatory effects and insomnia improvement, and is one of the healthy foods that Koreans enjoy eating. In this study, the saponin content, lansemaside A content, and total saponin content of deodeok were analyzed using high-pressure sterilization and solid fermentation by mixed lactic acid bacteria. The antioxidant effect was compared to determine improved processing methods of deodeok. The lansemaside A content of deodeok samples depending on the preprocessing methods was analyzed: 2,594.10 mg/kg for dried deodeok, 2,100.93 mg/kg for steamed deodeok, and 1,151.31mg/kg for fermented deodeok. The total saponin content was found to be 7,209 mg/kg for dried deodeok and 8,605 mg/kg for steamed deodeok, showing a high saponin content. The total polyphenol content was highest for dried deodeok, steamed deodeok, and fermented deodeok. As for the antioxidant effect, it was analyzed that the effect of dried deodeok was the highest, followed by steamed deodeok and fermented deodeok; Dried deodeok had the highest value in total polyphenol content, not in total saponin content, which is considered to have a positive influence on its antioxidant effect. The content of lansemaside A was the highest for dried deodeok. When fermented deodeok is consumed, more beneficial effects on health can be expected by ingesting it with lactic acid bacteria cultured using saponins and polyphenols. Therefore, this study suggests the possibility of manufacturing products suitable for the needs of consumers, such as the flavor of deodeok, according to the processing methods.

키워드

과제정보

This work was supported by the research fund of Songho University (SH-2020-A).

참고문헌

  1. Bennett PB, Marquis RE. High pressure biology and medicine. 1998. 1-428 University of Rochester Press, New York, NY, USA.
  2. Blois MS. Antioxidant determinations by the use of a stable free radical. Nature. 1958. 181: 1199-1200. https://doi.org/10.1038/1811199a0
  3. Deliza R, Rosenthal A, Abadio F, Silva CH, Castillo C. Application of high pressure technology in the fruit juice processing: Benefits perceived by consumers. Journal of Food Engineering. 2005. 67: 241-246. https://doi.org/10.1016/j.jfoodeng.2004.05.068
  4. Hong WS, Lee JS, Ko SY, Choi YS. A study on the perception of Codonopsis lanceolata dishes and the development of Codonopsis lanceolata dishes. Korean Journal of Food and Cookery Science. 2006. 22: 181-192.
  5. Hwang CR, Oh SH, Kim HY, Lee SH, Hwang IG, Shin YS, Lee JS, Jeong HS. Chemical composition and antioxidant activity of deoduk (Codonopsis lanceolata) and doragi (platycodon grandiflorum) according to temperature. Journal of the Korean Society of Food Science and Nutrition. 2011. 40: 798-803. https://doi.org/10.3746/JKFN.2011.40.6.798
  6. Ichikawa M, Ohta S, Komoto N, Ushijima M, Kodera Y, Hayama M, Shirota O, Sekita S, Kuroyanagi M. Simultaneous determination of seven saponins in the roots of Codonopsis lanceolata by liquid chromatography-mass spectrometry. Journal of Natural Medicines. 2009. 63: 52-57. https://doi.org/10.1007/s11418-008-0294-4
  7. In SU, Min JL, Ju HN, Il RR. Effects of Additional Fertilization after Cultivating Green Manure Crops on the Growth and Saponin Content of Codonopsis lanceolata Trautv. Korean J Medicinal Crop Sci. 2019. 27: 1-8. https://doi.org/10.7783/KJMCS.2019.27.1.1
  8. Jeong IH, Oh MS, Jeon JS, Kim HT, Hong SR, Park KH, Yoon MH. A Comparative Study on Anthocyanin and Polyphenol Contents in Colored Agricultural Products. Journal of Food Hygiene and Safety. 2017. 32: 371-380. https://doi.org/10.13103/JFHS.2017.32.5.371
  9. Jeon SM, Kim SY, Kim IH, Go JS, Kim HR, Jeong JY, Lee HY, Park DS. Antioxidant activities of processed deoduck (Codonopsis lanceolata) extracts. J Korean Soc Food Sci Nutr. 2013. 42: 924-932. https://doi.org/10.3746/JKFN.2013.42.6.924
  10. Jung WY, Kim H, Jeon SJ, Park HJ, Choi HJ, Kim NJ, Kim DH, Jang DS, Ryu JH. Eclalbasaponin ii ameliorates the cognitive impairmentinduced by cholinergic blockade in mice. Neurochemical Research. 2018. 43: 351-362. https://doi.org/10.1007/s11064-017-2430-6
  11. Kim GY, Yang YS, Youn JY, Lee CJ, Jeon JW, Jung OS, Choi YH. Theory and Practice of Fermented Food. Kyomunsa Seoul, Korea. p.12. 2009.
  12. Kim NY, Chae HS, Lee IS, Kim DS, Seo KT, Park SJ. Analysis of Chemical Composition and Antioxidant Activity of Codonopsis lanceolata Skin. J Korean Soc Food Sci Nutr. 2010. 11: 1627-1633.
  13. Kwak YS, Chang JK. Effect of various sterilization methods on growth of microorganism contaminated in ginseng powder. Journal of Food Hygiene and Safety. 2001. 16: 221-226.
  14. Lee KT, Choi J, Jung WT, Nam JH, Jung HJ, Park HJ. Structure of a new echinocystic acid bisdesmoside isolated from Codonopsis lanceolata roots and the cytotoxic activity of prosapogenins. Journal of Agricultural and Food chemistry. 2002. 50: 4190-4193. https://doi.org/10.1021/jf011647l
  15. Lee SB, Go GH, Yang JY, Oh SH, Kim JG. Fermented food. 2nd. Kyomunsa, Seoul, Korea. 2004. p 3.
  16. Lee SY, Lee HS. The roles of dietary polyphenols in brain neuromodulation, Journal of Life Science. 2018. 28: 1386-1395. https://doi.org/10.5352/JLS.2018.28.11.1386
  17. Lim TK. Edible medicinal and non-medicinal plants. 2015. Volume 9. 1036. Springer Dordrecht Heidelberg New York, USA.
  18. Park SJ, Park, Park DS, Lee SB, He XL, Ahn JH, Yoon WB, Lee HY. Enhancement of Antioxidant Activities of Codonopsis lanceolata and Fermented Codonopsis lanceolata by Ultra High Pressure Extraction. J Korean Soc Food Sci Nutr. 2010. 39: 1898-1902. https://doi.org/10.3746/JKFN.2010.39.12.1898
  19. Perron NR, Brumaghim JL. A review of the antioxidant mechanisms of polyphenol compounds related to iron binding. Cell Biochem Biophys. 2009. 53: 75-100. https://doi.org/10.1007/s12013-009-9043-x
  20. Rice-Evans C, Miller N, Paganga G. Antioxidant properties of phenolic compounds. Trends Plant Sci. 1997. 2: 152-159. https://doi.org/10.1016/S1360-1385(97)01018-2
  21. Seo YC, Choi WY, Kim JS, Cho JS, Kim YO, Kim JC, Lee HY. Enhancement of Anticancer Activities from Lithospermum erythrorhizon Extracts by Ultra High Pressure Process. Korean J. Medicinal Crop Sci. 2011. 19: 103-110. https://doi.org/10.7783/KJMCS.2011.19.2.103
  22. Shouqin Z, Junjie Z, Changzhen W. Novel high pressure extraction technology. International Journal of Pharmaceutics. 2004. 278: 471-474. https://doi.org/10.1016/j.ijpharm.2004.02.029
  23. Singleton VL, Orthofer R, Lamuela-Raventos RM. Analysis of total phenols and other oxidation substrates and antioxidants by means of folin-ciocalteu reagent. Methods Enzymol. 1999. 299: 152-178. https://doi.org/10.1016/S0076-6879(99)99017-1
  24. Zhishen J, Mengcheng T, Jianming W. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 1999. 64: 555-559. https://doi.org/10.1016/S0308-8146(98)00102-2