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Phenolics Enrichment Process from Unripe Apples 원문보기

Journal of the Korean Society for Applied Biological Chemistry, v.57 no.4, 2014년, pp.457 - 461  

Zheng, Hu-Zhe (Department of Food & Nutritional Engineering, Jiangsu Food & Pharmaceutical Science College) ,  Hwang, In-Wook (School of Food Science and Biotechnology, Kyungpook National University) ,  Kim, Byoung-Kwan (School of Food Science and Biotechnology, Kyungpook National University) ,  Kim, Young-Chan (Korea Food Research Institute) ,  Chung, Shin-Kyo (School of Food Science and Biotechnology, Kyungpook National University)

Abstract AI-Helper 아이콘AI-Helper

Unripe apples contain significant amount of phenolics with various health benefits. A pilot scale enrichment process of unripe apple phenolics with Viscozyme L extraction and XAD-7 sorption process, based on the total phenolic content (TPC), phenolics content by high-performance liquid chromatograph...

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참고문헌 (22)

  1. FEBS Lett H Akiyama 579 4485 2005 10.1016/j.febslet.2005.07.019 Akiyama H, Yuji S, Takahiro W, Megumi HN, Yasuo Y, Toshihiko S et al. (2005) Dietary unripe apple polyphenol inhibits the development of food allergies in murine models. FEBS Lett 579, 4485-91. 

  2. Food Chem RM Alonso-Salces 93 113 2005 10.1016/j.foodchem.2004.10.013 Alonso-Salces RM, Herrero C, Barranco A, Berrueta LA, Gallo B, and Vicente F (2005) Classification of apple fruits according to their maturity state by the pattern recognition analysis of their polyphenolic compositions. Food Chem 93, 113-23. 

  3. Innov Food Sci Emerg R Buckow 10 441 2009 10.1016/j.ifset.2009.05.005 Buckow R, Weiss U, and Dietrich K (2009) Inactivation kinetics of apple polyphenol oxidase in different pressure-temperature domains. Innov Food Sci Emerg 10, 441-8. 

  4. Food Res Int ALK Faller 42 210 2009 10.1016/j.foodres.2008.10.009 Faller ALK and Fialho E (2009) The antioxidant capacity and polyphenol content of organic and conventional retail vegetables after domestic cooking. Food Res Int 42, 210-5. 

  5. J Agric Food Chem D Huang 53 6 1841 2005 10.1021/jf030723c Huang D, Ou B, and Prior RL (2005) The chemistry behind antioxidant capacity assays. J Agric Food Chem 53(6), 1841-56. 

  6. J Chromatogr A ME León-González 902 3 2000 10.1016/S0021-9673(00)00942-0 León-González ME and Pérez-Arribas LV (2000) Chemically modified polymeric sorbents for sample preconcentration. J Chromatogr A 902, 3-16. 

  7. Nature VE Marian 405 903 2000 Marian VE, Lee CY, and Liu RH (2000) Antioxidant activity of fresh apples. Nature 405, 903-4. 

  8. J Chromatogr A A Michalkiewicz 1187 1-2 18 2008 10.1016/j.chroma.2008.02.001 Michalkiewicz A, Biesaga M, and Pyrzynska K (2008) Solid-phase extraction procedure for determination of phenolic acids and some flavonols in honey. J Chromatogr A 1187(1-2), 18-24. 

  9. Food Chem OI Miriam 115 1141 2009 10.1016/j.foodchem.2009.01.003 Miriam OI, Amelia IS, Rosalia F, and Guillermo DM (2009) Major flavonoids of argentinean honeys. Optimisation of the extraction method and analysis of their content in relationship to the geographical source of honeys. Food Chem 115, 1141-9. 

  10. Sci Hortic AA Mohamed 90 69 2001 10.1016/S0304-4238(00)00255-7 Mohamed AA, Anton J, Linus HW, and Alexander RK (2001) Flavonoid and chlorogenic acid changes in skin of ‘Elstar’ and ‘Jonagold’ apples during development and ripening. Sci Hortic 90, 69-83. 

  11. J East Asian Soc Dietary Life MW Park 14 343 2004 Park MW, Park YK, and Kim ES (2004) Properties of phenolic compounds in unripe apples. J East Asian Soc Dietary Life 14, 343-7. 

  12. Phytochemistry CMGC Renard 68 1128 2007 10.1016/j.phytochem.2007.02.012 Renard CMGC, Dupont N, and Guillermin P (2007) Concentrations and characteristics of procyanidins and other phenolics in apples during fruit growth. Phytochemistry 68, 1128-38. 

  13. Innov Food Sci Emerg A Schieber 4 99 2003 10.1016/S1466-8564(02)00087-5 Schieber A, Hilt P, Streker P, Endreß HU, Rentschler C, and Carle R (2003) A new process for the combined recovery of pectin and phenolic compounds from apple pomace. Innov Food Sci Emerg 4, 99-107. 

  14. J Korean Dairy Technol Sci JS Seok 21 105 2003 Seok JS and Kim DH (2003) Microencapsulation of isoflavone derived from Pueraria. J Korean Dairy Technol Sci 21, 105-113. 

  15. Method Enzymol VL Singleton 299 152 1999 10.1016/S0076-6879(99)99017-1 Singleton VL, Orthofer R, and Lamuela-Raventos RM (1999) Analysis of total phenolic and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Method Enzymol 299, 152-78. 

  16. J Agri Food Chem F Vallejo 51 3029 2003 10.1021/jf021065j Vallejo F, Tomas-Barberan F, and Garcia-Viguera C (2003) Health promoting compounds in broccoli as influenced by refrigerated transport and retail sale period. J Agri Food Chem 51, 3029-34. 

  17. Food Rev Int QV Vuong 27 227 2011 10.1080/87559129.2011.563397 Vuong QV, Stathopoulos CE, Nguyen MH, Golding JB, and Roach PD (2011). Isolation of green tea catechins and their utilization in the food industry. Food Rev Int 27, 227-47. 

  18. React Funct Polym RY Zhao 68 768 2008 10.1016/j.reactfunctpolym.2007.11.016 Zhao RY, Yan Y, Li MX, and Yan HS (2008) Selective adsorption of tea polyphenol from aqueous solution of the mixture with caffeine on macroporous cross linked poly(N-vinyl-2-pyrrolidinone). React Funct Polym 68, 768-74. 

  19. J Zhejiang Univ Sci B HZ Zheng 10 912 2009 10.1631/jzus.B0920186 Zheng HZ, Hwang IW, and Chung SK (2009) Enhancing polyphenol extraction from unripe apples by carbohydrate-hydrolyzing enzymes. J Zhejiang Univ Sci B 10, 912-19. 

  20. J Korean Soc Appl Bio Chem HZ Zheng 53 342 2010 10.3839/jksabc.2010.053 Zheng HZ, Hwang IW, Kim SK, Lee SH, and Chung SK (2010) Optimization of carbohydrate-hydrolyzing enzyme aided polyphenol extraction from unripe apples. J Korean Soc Appl Bio Chem 53, 342-50. 

  21. Food Chem HZ Zheng 131 106 2012 10.1016/j.foodchem.2011.08.038 Zheng HZ, Kim YL, and Chung SK (2012) A profile of physicochemical and antioxidant changes during fruit growth for the utilisation of unripe apples. Food Chem 131, 106-10. 

  22. Chin J Anal Chem HZ Zheng 36 3 306 2008 Zheng HZ, Lee HR, Lee SH, Kim CS, and Chung SK (2008) Pectinase assisted extraction of polyphenol from apple pomace. Chin J Anal Chem 36(3), 306-10. 

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