References
- Augusti KT. 1996. Therapeutic values onions (Allium cepa L.) and garlic (Allium sativum L). Indian J Exp Biol 34: 634-640.
- Manach C, Scalbert A, Morand C, Remesy C, Jimenez L. 2004. Polyphenols: food sources and bioavilability. Am J Clin Nutr 79: 727-747. https://doi.org/10.1093/ajcn/79.5.727
- Bilyk AD, Sapers GM. 1985. Distribution of quercetin and kaemferol in lettuce, kale, chive, garlic chive, leek, horseradish, red radish and red cabbage tissues. J Agric Food Chem 33: 226. https://doi.org/10.1021/jf00062a017
- Kumamoto H, Matsubara Y, Iizuka Y, Okamoto K. 1985. Structure and hypotensive effect of flavonoid glycosides in Kinkan (Fortunella japonica) peelings. Agric Biol Chem 49: 2613-2618. https://doi.org/10.1271/bbb1961.49.2613
- Leighton T, Ginther C, Fluss L, Harter WK, Cansado J, Nortario V. 1992. Molecular characterization of quercetin and quercetin glycosides in allium vegetables. In Phenolic Compounds in Food and Their Effects on Health II. ACS, Washington, DC, USA. p 220.
- Hermann K. 1976. Flavonoids and flavones in food plants: a review. J Food Tech 11: 433-488. https://doi.org/10.1111/j.1365-2621.1976.tb00743.x
- Bilyk AD, Cooper PL, Sapers GM. 1984. Varietal differences in distribution of quercetin and kaempferol in onion (Allium cepa L.) tissue. J Agric Food Chem 32: 274-276. https://doi.org/10.1021/jf00122a024
- Bang HA, Cho JS. 1998. Antioxidant effects on various solvent extracts from onion peel and onion flesh. J Korean Diet Assoc 4: 14-19.
- Bravo L, Abia R, Eastwood MA, Saura-calixto F. 1994. Degradation of polyphenols (catechin and tannic acid) in the rat intestinal tract. Effect on colonic fermantation and fecal output. Br J Nutr 71: 933-946. https://doi.org/10.1079/BJN19940197
- Kwak HJ, Kwon YJ, Jeong PH, Kwon JH, Kim HK. 2000. Physiological activity and antioxidative effect of methanol extract from onion (Allium cepa L.). J Korean Soc Food Sci Nutr 29: 349-355.
- Ra KS, Bae SH, Son HS, Chung SH, Suh HJ. 1998. Inhibition of xanthin oxidase by flavonols from onion skin. J Korean Soc Food Sci Nutr 27: 693-697.
- Jang HS. 2009. Quality stability of concentrated onion extracts having biological activity during storage. MS Thesis. Changwon National University, Changwon, Korea. p 4.
- AOAC. 1995. Official methods of analysis. 16th ed. Association of Official Analytical Chemists, Washington, DC, USA. p 69-74.
- KFDA. 2009. Korea Food Code. Korea Food and Drug Administration, Seoul, Korea. p 676-683.
- Gontard N, Guilbert S, Cuq JL. 1992. Edible whet gluten film in influence of the main process variables on film properties using response surface methodology. J Food Sci 57: 190-196. https://doi.org/10.1111/j.1365-2621.1992.tb05453.x
- Lee GD, Lee JE, Kwon JH. 2000. Application of response surface methodology in food industry. Food and Industry 33: 33-45.
- SAS Institute, Inc. 1990. SAS User's Guide. Statistical Analysis Systems Institute, Cary, NC, USA.
- KFDA. 2008. Health functional food code. Korea Food and Drug Administration, Seoul, Korea. Vol III, p 3.6.3-1,2.
- Jeong CH, Kim JH, Shim KH. 2006. Chemical components of yellow and red onion. J Korean Soc Food Sci Nutr 35: 708-712. https://doi.org/10.3746/jkfn.2006.35.6.708
- Lim TS, Do JR, Kwon OJ, Kim HK. 2007. Monitoring on extraction yields and functional properties of onion (Allium cepa) extracts by using response surface methodology. J Korean Soc Food Sci Nutr 36: 105-110. https://doi.org/10.3746/jkfn.2007.36.1.105
- Park NY, Kwon JH, Kim HK. 1998. Optimization of extraction conditions for ethanol extracts from Chrysanthemum morifolium by response surface methodology. Korean J Food Sci Technol 30: 1189-1196.
- Kim HK, Kim MO, Choi MG, Kim KH. 2003. Optimization of microwave extraction conditions for Flammulina velutipes by response surface methodology. Korean J Food Sci Technol 35: 222-228.
- Woo KS, Lee SH, Noh JW, Hwang IG, Lee YR, Park HJ, Lee JS, Kang TS, Jeong HS. 2009. Optimization of extraction conditions for dried jujube by response surface methodology. J Korean Soc Food Sci Nutr 38: 224-251.
- Seong NK. 1991. SAT/STAT-Regression analysis. 3rd ed. Free Academy, Seoul, Korea. p 214-215.
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