Inhibitory effect of Actinidia arguta on mutagenesis, inflammation and two-stage mouse skin tumorigenesis
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Weinberg RA. The biology of cancer, Garland Science. New York: Taylor & Francis Group; 2007.
World Cancer Research Fund. Food, nutrition, physical activity, and the prevention of cancer: A global perspective. Washington, DC: AICR; 2007.
Ohnishi S, Ma N, Thanan R, Pinlaor S, Hammam O, Murata M, Kawanishi S. DNA damage in inflammation-related carcinogenesis and cancer stem cells. Oxid Med Cell Longev. 2013;2013:387014. doi: 10.1155/2013/387014 . Epub 2013 Dec 5.
Khan N, Afaq F, Mukhtar H. Cancer chemoprevention through dietary antioxidants: progress and promise. Antioxid Redox Signal. 2008;10:475–510.
Guo W, Kong E, Meydani M. Dietary polyphenols, inflammation, and cancer. Nutr Cancer. 2009;61:807–10.
Zhang X, Ishida R, Yuhara Y, Kamiya T, Hatano T, Okamoto G, Arimoto-Kobayashi S. Anti-genotoxic activity of Vitis coignetiae Pulliat towards heterocyclic amines and isolation and identification of caftaric acid as an antimutagenic component from the juice. Mutat Res. 2011;723:182–9.
Arimoto-Kobaqyashi S, Zhang X, Yuhara Y, Kamiya T, Negishi T. Chemopreventive effects of the juice of Vitis coignetiae pulliat on two-stage mouse skin carcinogenesis. Nutr Cancer. 2013;65:440–50.
Kataoka I, Mizugami T, Kim JG, Beppu K, Fukuda T, Sugahara S, Tanaka K, Satoh H, Tozawa K. Ploidy variation of hardy kiwifruit (Actinidia arguta) resources and geographic distribution in Japan. Sci Hortic. 2010;124:409–14.
Montefiori M, Comeskey DJ, Wohlers M, McGhie TK. Characterization and quantification of anthocyanins in red kiwifruit (Actinidia spp.). J Agric Food Chem. 2009;57:6856–61.
Takano F, Tanaka T, Tsukamoto E, Yahagi N, Fushiya S. Isolation of (+)-catechin and (−)-epicatechin from Actinidia arguta as bone marrow cell proliferation promoting compounds. Planta Med. 2003;69:321–6.
Nishiyama I, Yamashita Y, Yamanaka M, Shimohashi A, Fukuda T, Oota T. Varietal difference in vitamin C content in the fruit of kiwifruit and other actinidia species. J Agric Food Chem. 2004;52:5472–5.
Nishiyama I, Fukuda T, Oota T. Genotypic differences in chlorophyll, lutein, and beta-carotene contents in the fruits of actinidia species. J Agric Food Chem. 2005;53:6403–7.
Kim JG, Beppu K, Kataoka I. Varietal differences in phenolic content and astringency in skin and flesh of hardy kiwifruit resources in Japan. Sci Hortic. 2009;120:551–4.
Okamoto G, Goto S. Juice constituents in Actinidia arguta fruits produced in Shinjo, Okayama. Sci Rep Fac Agric Okayama Univ. 2005;94:9–13.
Latocha P, Krupa T, Wołosiak R, Worobiej E, Wilczak J. Antioxidant activity and chemical difference in fruit of different Actinidia sp. Int J Food Sci Nutr. 2010;61:381–94.
Lee J, Sowndhararajan K, Kim M, Kim J, Kim D, Kim S, Kim GY, Kim S, Jhoo JW. Antioxidant, inhibition of a-glucosidase and suppression of nitric oxide production in LPS-induced murine macrophages by different fractions of Actinidia arguta stem. Saudi J Biol Sci. 2014;21:532–8.
Zuo LL, Wang ZY, Fan ZL, Tian SQ, Liu JR. Evaluation of antioxidant and antiproliferative properties of three Actinidia (Actinidia kolomikta, Actinidia arguta, Actinidia chinensis) extracts in vitro. Int J Mol Sci. 2012;13:5506–18.
Choi JJ, Park B, Kim DH, Pyo MY, Choi S, Son M, Jin M. Blockade of Atopic Dermatitis-like skin lesions by DA-9102, a natural medicine isolated from actinidia arguta, in the mg-deficiency induced dermatitis model of hairless rats. Exp Biol Med (Maywood). 2008;233:1026–34.
Kim D, Kim SH, Park EJ, Kim J, Cho SH, Kagawa J, Arai N, Jun K, Kiyono H, Kim S. Suppression of allergic diarrhea in murine ovalbumin-induced allergic diarrhea model by PG102, a water-soluble extract prepared from Actinidia arguta. Int Arch Allergy Immunol. 2009;150:164–71.
Marsella R, Messinger L, Zabel S, Rosychuck R, Griffin C, Cronin PO, Belofsky G, Lindemann J, Stull D. A randomized, double-blind, placebo-controlled study to evaluate the effect of EFF1001, an Actinidia arguta (hardy kiwi) preparation, on CADESI score and pruritus in dogs with mild to moderate atopic dermatitis. Vet Dermatol. 2010;21:50–7.
Singleton VL, Rossi J. Colorimetry of total phenolics with phosphotungstic acid reagents. Am J Enol Vitic. 1965;16:144–58.
Maron DM, Ames BN. Revised methods for the Salmonella mutagenicity test. Mutat Res. 1983;113:173–215.
Ochiai M, Nagaoka H, Wakabayashi K, Tanaka Y, Kim SB, Tada A, Nukaya H, Sugimura T, Nagao M. Identification of N2-(deoxyguanosin-8-yl)-2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline-3',5'- diphosphate, a major DNA adduct, detected by nuclease P1 modification of the 32P-postlabeling method, in the liver of rats fed MeIQx. Carcinogenesis. 1993;14:2165–70.
Iwata H, Fujita K, Kushida H, Suzuki A, Konno Y, Nakamura K, Fujino A, Kamataki T. High catalytic activity of human cytochrome P450 co-expressed with human NADPH-cytochrome P450 reductase in Escherichia coli. Biochem Pharmcol. 1998;55:1315–25.
Jakoby WB. Detoxication and drug metabolism: conjugation and related systems. Methods Enzymol. 1981;77:169–77.
Habig WH, Pabst MJ, Jakoby MB. Glutathione S-transferases. The first enzymatic step in mercapturic acid formation. J Biol Chem. 1974;249:7130–9.
Burtis M, Bucar F. Antioxidant activity of Nigella sativa essential oil. Phytotherapy Res. 2000;14:323–8.
The Pharmaceutical Society of Japan. Vitamin C. In: The Pharmaceutical Society of Japan, editor. Standard Methods of Analysis for Hygienic Chemists. Tokyo: Kanehara & Co; 1990. p. 366–9.
Tokuda H, Ohigashi H, Koshimizu K, Ito Y. Inhibitory effects of ursolic and oleanolic acid on skin tumor promotion by 12-O-tetradecanoylphorbpl-13-acetate. Cancer Lett. 1986;33:279–85.
Magalhães PJ, Vieira JS, Gonçalves LM, Pacheco JG, Guido LF, Barros AA. Isolation of phenolic compounds from hop extracts using polyvinylpolypyrrolidone: characterization by high-performance liquid chromatography-diode array detection-electrospray tandem mass spectrometry. J Chromatogr A. 2010;1217:3258–68.
Ohgaki H. Carcinogenicity in animals and specific organs. Rodents. In: Nagao M, Sugimura T, editors. Food Born Carcinogens Heterocyclic amines. Wiley: Chichester; 2000. p. 198–228.
Moon YJ, Wang X, Morris ME. Dietary flavonoids: effects on xenobiotic and carcinogen metabolism. Toxicol In Vitro. 2006;20:187–210.
King RS, Kadlubar FF, Turesky RJ. In Vivo Metabolism. In: Nagao M, Sugimura T, editors. Food Borne Carcinogens Heterocyclic Amines. Chichester: Wiley; 2000. p. 90–111.