References
- Bagchi D, Sen CK, Bagchi M, Atalay M (2004) Anti-angiogenic, antioxidant, and anti-carcinogenic properties of a novel anthocyanin-rich berry extract formula. Biochem (Moscow) 69: 75-80 https://doi.org/10.1023/B:BIRY.0000016355.19999.93
- Blois MA (1958) Antioxdant determination by the use of a stable free radical. Nature 181: 1199-1200 https://doi.org/10.1038/1811199a0
- Celine MA, Dangles O, Amiot MJ (2001) Color stability of commercial anthocyanin-based extracts in relation to the phenolic composition. Protective effects by intra-and intermolecular copigmentation. J Agric & Food Chem 49: 170-176 https://doi.org/10.1021/jf000791o
- Choi SN, Kim HJ, Chung NY (2011) Nutrient intakes, nutritional knowledged, food habits, and lifestyle behaviors of obese children. J Kor Diet Assoc 17: 349-363
- Cristina AL, Barbara SH, Rachel LG, Olga J, Rosa MLR, James AJ (2005) Anthocyanins in aged blueberry-fed rats are found centrally and may enhance memory. Nutri Neurosci 8: 111-120 https://doi.org/10.1080/10284150500078117
- Flis S, Jastrzebski Z, Namiesnik J, Arancibia-Avila P, Toledo F, Leontowicz H, Leontowicz M, Suhaj M, Trakhtenberg S, Gorinstein S (2012) Evaluation of inhibition of cancer cell proliferation in vitro with different berries and correlation with their antioxidant levels by advanced analytical methods. J Pharm Biomed Anal 62: 68-78 https://doi.org/10.1016/j.jpba.2012.01.005
- Fukumoto LR, Mazza G (2000) Assessing antioxidant and prooxidant activities of phenolic compounds. J Agric Food Chem 48: 3597-3604 https://doi.org/10.1021/jf000220w
- Hakkinen S, Heinonen M, Karenlampi S, Mykkanen H, Ruuskanen J, Trrnen R (1999) Screening of selected flavonoids and phenolic acids in 19 berries. Food Res Int 32: 345-353 https://doi.org/10.1016/S0963-9969(99)00095-2
- Holton TA, Cornish EC (1995) Genetics and biochemistry of anthocyanin biosynthesis. Plant Cell 7: 1071 https://doi.org/10.1105/tpc.7.7.1071
- Hwang SH, Ko SH (2010) Quality characteristics of muffins containing domestic blueberry (V.corymbosum). J East Asian Soc Dietary Life 20: 727-734
- Jia Z, Tang M, Wu J (1999) The determination of flavonoid contents in mulberry and their scarvenging effect on superoxide radicals. Food Chem 64: 555-559 https://doi.org/10.1016/S0308-8146(98)00102-2
- Jong CH, Jang CW, Lee KY, Kim IH, Sim KH (2012) Chemical components and anti-oxidant activities of black currant. Kor J Food Presev 19: 263-270 https://doi.org/10.11002/kjfp.2012.19.2.263
- Kang J, Thakali KM, Xie C, Kondo M, Tong Y, Ou B, Jensenc G, Medinad MB, Schausse AG, Wu X (2012) Bioactivities of aa (Euterpe precatoria Mart.) fruit pulp, superior antioxidant and anti-inflammatory properties to Euterpe oleracea Mart. Food Chem 133: 671-677 https://doi.org/10.1016/j.foodchem.2012.01.048
- Kapasakalidis PG, Rastall RA, Gordon MH (2006) Extraction of polyphenols from processed black currant (Ribes nigrum L.) residues. J Agric Food Chem 54: 4016-4021 https://doi.org/10.1021/jf052999l
- Kaur C, Harish CK (2002) Anti-oxidant activity and total phenolic content of some Asian vegetables. Int J Food Sci Technol 37: 153-161 https://doi.org/10.1046/j.1365-2621.2002.00552.x
- Kirca A, Ozkan M, Cemeroglu B (2007) Effects of temperature, solid content and pH on the stability of black carrot anthocyanins. Food Chem 101: 212-218 https://doi.org/10.1016/j.foodchem.2006.01.019
- Lee JM, Robert WD, Ronald EW (2005) Determination of total monomeric anthocyanin pigment content of fruit juices, beverages, natural colorants, and wines by the pH differential method: collaborative study. J AOAC Int 88: 1269-1278
- Lee JN, Kim HE, Kim YS (2014) Anti-diabetic and anti-oxidative effects of Opuntia humijusa cladodes. J Kor Soc Food Sci Nutr 43: 661-667 https://doi.org/10.3746/jkfn.2014.43.5.661
- Marinova D, Ribarova F (2007) HPLC determination of carotenoids in Bulgarian berries. J Food Comp Anal 20: 370-374 https://doi.org/10.1016/j.jfca.2006.09.007
- Michale NC (2000) Anthocyanins - nature, occurrence and dietary burden. J Sci Food Agric 80: 2063-1072 https://doi.org/10.1002/1097-0010(200011)80:14<2063::AID-JSFA750>3.0.CO;2-2
- Mikkonen TP, Maatta KR, Hukkanen AT, Kokko HI, Torronen AR, Karenlampi SO, Karjalainen RO (2001) Flavonol content varies among black currant cultivars. J Agric Food Chem 49: 3274-3277 https://doi.org/10.1021/jf0010228
- Montilla EC, Arzaba MR, Hillebrand S, Winterhalter P (2011) Anthocyanin composition of black carrot (Daucus carota ssp. sativus var. atrorubens Alef.) cultivars Antonina, Beta Sweet, Deep Purple, and Purple Haze. J Agri Food Chem 59: 3385-3390 https://doi.org/10.1021/jf104724k
- Nho HJ, Jang SY, Park JJ, Yun HS, Park S (2013) Browning prevention of black carrot extract and the quality characteristics of jelly supplemented with black carrot extract. Kor J Food Culture 23: 293-302
- Nicolle C, Simon G, Rock E, Amouroux P, Remesy C (2004) Genetic variability influences carotenoid, vitamin, phenolic, and mineral content in white, yellow, purple, orange, and dark-orange carrot cultivars. J Am Soc Hort Sci 129: 523-529
- Nielsen IL, Haren GR, Magnussen EL, Dragsted LO, Rasmussen SE (2003) Quantification of anthocyanins in commercial black currant juices by simple high-performance liquid chromatography. Investigation of their pH stability and antioxidative potency. J Agri Food Chem 51: 5861-5866 https://doi.org/10.1021/jf034004+
-
Novotny JA, Dueker SR, Zech LA, Clifford AJ (1995) Compartmental analysis of the dynamics of
${\beta}$ -carotene metabolism in an adult volunteer. J Lipid Res 36: 1825-1838 - Octavio PL, Martha LCC, Monica VP, Talia HP (2010) Berries: improving human health and healthy aging, and promoting quality life-a review. Plant Food Human Nutri 65: 299-308 https://doi.org/10.1007/s11130-010-0177-1
- Park HM, Yang SJ, Kang EJ, Lee DH, Kim DI, Hong JH (2012) Quality characteristics and granule manufacture of mulberry and blueberry fruit extracts. Kor J Food Cookery Sci 28: 375-382 https://doi.org/10.9724/kfcs.2012.28.4.375
- Park SB, Kim SW, Kim YS, Na CS, Sim KS (2014) Effect of inclusion of Chitosan-Oligosaccahariede in drinking water on the blood component profile, immunity and antioxidative enzyme in broiler chickens. Korean J Organic Agric 22: 483-490 https://doi.org/10.11625/KJOA.2014.22.3.483
- Park SG, Song TH, Kim DH, Kim GH, Jang HI (2014) Quality properties of peach pudding added with Korean peach (Prunus persica L. Batsch) Juice and gelatin. J Kor Soc Food Sci Nutr 43: 265-272 https://doi.org/10.3746/jkfn.2014.43.2.265
- Puupponen-PR, Nohynek L, Meier C, Kahkonen M, Heinonen M, Hopia A, Oksman-Caldentey KM (2001) Antimicrobial properties of phenolic compounds from berries. J Appl Microbiol 90: 494-507 https://doi.org/10.1046/j.1365-2672.2001.01271.x
- Ra KS, Suh HJ, Chung SH, Son JY (1997) Antioxidant activity of sovent extract from onion skin. Kor J Food Sci Technol 29: 595-600
- Re R, Pellegrini N, Pannala A, Yang M, Rice-Evans C (1999) Antioxidant activity applying an improved ABTs radical cation decolorization assay. Free Radical Biol Med 26: 1231-1237 https://doi.org/10.1016/S0891-5849(98)00315-3
- Schauss AG, Wu X, Prior RL, Ou B, Patel D, Huang D, Kababick JP (2006) Phytochemical and nutrient composition of the freeze-dried amazonian palmberry, Euterpe oleraceae Mart. (acai). J Agric Food Chem 54: 8598-8603 https://doi.org/10.1021/jf060976g
- Seda E, Unal Y (2007) Microencapsulation of anthocyanin pigments of black carrot (Daucuscarota L.) by spray drier. J Food Engineer 80: 805-812 https://doi.org/10.1016/j.jfoodeng.2006.07.009
- Swain T, Hillis WE (1959) The phenolic constituents of Prunus domestica. I.-The quantitative analysis of phenolic constituents. J Sci Food Agric 10: 63-68 https://doi.org/10.1002/jsfa.2740100110
- Wallace TC, Giusti MM (2008) Determination of color, pigment, and phenolic stability in yogurt systems colored with nonacylated anthocyanins from Berberis boliviana L. as compared to other natural/synthetic colorants. J Food Sci 73: 241-248
- Wang SY, Lin HS (2000) Antioxidant activity in fruits and leaves of blackberry, raspberry and strawberries with culture and developmental stage. J Afri Food Chem 48: 140-146 https://doi.org/10.1021/jf9908345
- Xu ZS, Huang Y, Wang F, Song X, Wang GL, Xiong AS (2014) Transcript profiling of structural genes involved in cyanidin-based anthocyanin biosynthesis between purple and non-purple carrot (Daucus carota L.) cultivars reveals distinct patterns. BMC plant Biol 14: 262 https://doi.org/10.1186/s12870-014-0262-y
- Yu OK, Back HI, Cha YS (2008) Quality characteristics of pudding added with Bokbunja (Rubus coreanus Miquel) fruit juice and Bokbunja wine. J Kor Soc Food Culture 23: 616-620
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