The biflavonoid, amentoflavone degrades DNA in the presence of copper ions
Tài liệu tham khảo
Ahmad, 2000, DNA breakage by resveratol and Cu(II): reaction mechanism and bacteriophage inactivation, Cancer Lett., 154, 29, 10.1016/S0304-3835(00)00351-7
Ahmad, 1992, Activities of flavonoids for the cleavage of DNA in the presence of Cu(II): correlation with the generation of active oxygen species, Carcinogenesis, 13, 605, 10.1093/carcin/13.4.605
Ahsan, 1998, Strand scission in DNA induced by curcumin in the presence of Cu(II), Cancer Lett., 124, 23, 10.1016/S0304-3835(97)00442-4
Baureithel, 1997, Inhibition of benzodiazepine binding in vitro by amentoflavone, a constituent of various species of Hypericum, Pharm. Acta Helv., 72, 153, 10.1016/S0031-6865(97)00002-2
Bhat, 1994, Breakage by tannic acid and Cu(II): Sequence specificity of the reaction involvement of active oxygen species, Mutat. Res., 313, 39, 10.1016/0165-1161(94)90031-0
Cholbi, 1991, Inhibitory effects of phenolic compounds on CCl4-induced microsomal lipid peroxidation, Experientia, 47, 195, 10.1007/BF01945426
Da Silva, 2001, Chemical composition and analgesic activity of Calophyllum brasiliense leaves, Therapie, 56, 431
Dell'Agli, 2002, Biflavones of Ginkqo biloba stimulates lipolysis in 3T3-L1 adipocytes, Planta Med., 68, 76, 10.1055/s-2002-19876
Ehrenfeld, 1987, Copper dependent cleavage of DNA by bleomycin, Biochemistry, 26, 931, 10.1021/bi00377a038
Eliot, 1984, Oxidative destruction of DNA by adriamycin-iron complex, Biochemistry, 23, 928, 10.1021/bi00300a021
Geiger, 1971, Uber 2,3-dihydrobiflavone in Cycas revoluta, Phytochemistry, 10, 1936, 10.1016/S0031-9422(00)86465-1
Hadi, 2000, Putative mechanism for anticancer and apoptosis-inducing properties of plant-derived polyphenolic compounds, IUBMB Life, 50, 1, 10.1080/152165400300001471
Heilbron, 1953, vol. 1
Huguet, 1990, Superoxide scavenging properties of flavonoids in non-enzymic system, Z. Naturforsch., 45, 19, 10.1515/znc-1990-1-205
Jain, 1999, Reactivities of flavonoids with different hydroxyl substituents for the cleavage of DNA in the presence of Cu(II), Phyto. Res., 13, 1, 10.1002/(SICI)1099-1573(199911)13:7<609::AID-PTR566>3.0.CO;2-I
Khan, 1998, Structural features of tannic acid important for DNA degradation in the presence of Cu(II), Mutagenesis, 13, 271, 10.1093/mutage/13.3.271
Kim, 1998, Amentoflavone, a plant biflavone: a new potential anti-inflammatory agent, Arch. Pharm. Res., 21, 406, 10.1007/BF02974634
Kim, 2001, Flavonoids differentially inhibit guinea pig epidermal cytosolic phospholipase A2, Prostag. Leukotr. Ess. Fatty Acids, 65, 281, 10.1054/plef.2001.0326
Kim, 2000, Inhibition of alpha-glucosidase and amylase by luteolin, a flavonoid, Biosci. Biotechnol. Biochem., 64, 2458, 10.1271/bbb.64.2458
Kubota, 2002, Safety of dietary supplements: chronotropic and inotropic effects on isolated rat atria, Biol. Pharm. Bull., 25, 197, 10.1248/bpb.25.197
Lee, 1996, Inhibition of phospholipase C gamma 1 activity by amentoflavone isolated from Selaginella tamariscina, Planta Med., 62, 293, 10.1055/s-2006-957887
Lee, 1995, Suppression of mouse lymphocyte proliferation in vitro by naturally-occurring biflavonoids, Life Sci., 57, 551, 10.1016/0024-3205(95)00305-P
Lin, 1997, In vitro anti-HIV activity of biflavonoids isolated from Rhus succedanea and Garcinia multiflora, J. Nat. Prod., 60, 884, 10.1021/np9700275
Lin, 1999, Antiviral activities of biflavonoids, Planta Med., 65, 120, 10.1055/s-1999-13971
Ma, 2001, Antiviral amentoflavone from Selaginalla sinensis, Biol. Pharm. Bull., 24, 311, 10.1248/bpb.24.311
Mora, 1990, Structure–activity relationships of polymethoxyflavones and other flavonoids as inhibitors of non-enzymic lipid peroxidation, Biochem. Pharmacol., 40, 793, 10.1016/0006-2952(90)90317-E
Naseem, 1987, Single strand specific nuclease of pea seeds: glycoprotein nature and associated nucleotidase activity, Arch. Biochem. Biophys., 255, 437, 10.1016/0003-9861(87)90412-7
Pyor, 1988, Why is hydroxyl radical the only radical that commonly binds to DNA? Hypothesis: it has a rare combination of high electrophilicity, thermochemical reactivity and a mode of production that occur near DNA, Free Radic. Biol. Med, 4, 219, 10.1016/0891-5849(88)90043-3
Quinlan, 1987, Oxygen radical damage to DNA by rifamycin S.V. and copper ions, Biochem. Pharmacol., 36, 3629, 10.1016/0006-2952(87)90012-8
Rahman, 1989, Strand scission in DNA induced by quercetin and Cu(II): role of Cu(I) and oxygen free radicals, Carcinogenesis, 10, 1833, 10.1093/carcin/10.10.1833
Sakakibara, 1976, Flavonoid methyl ethers on the external leaf surface of Larrea tridentata and L. tivariota, Phytochemistry, 15, 727, 10.1016/S0031-9422(00)94430-3
Saponara, 1998, Inhibition of cAMP-phosphodiesterase by biflavones of Ginkqo biloba in rat adipose tissue, J. Nat. Prod., 61, 1386, 10.1021/np970569m
Schneider, 1957, Determination of nucleic acids in tissues by pentose analysis, Methods Enzymol, 3, 680, 10.1016/S0076-6879(57)03442-4
Suzuki, 1999, Properties of amentoflavone, a potent calffeine-like Ca2+ releaser in skeletal muscle sarcoplasmic reticulam, Eur. J. Pharmacol., 372, 97, 10.1016/S0014-2999(99)00144-2
Utaka, 1985, Copper(II) catalysed oxidation of quercetin and 3-hydroxyflavone, J. Chem. Soc. Chem. Commun., 24, 1824, 10.1039/c39850001824
Varshney, 1973, Biflavones from Cycas revoluta, C. circinalis and C. rumphii, Ind. J. Chem., 11, 1209
Wong, 1984, Mechanism of deoxyribonucleic acid breakage produced by 4′-(9-acridinylamino)-methanesulphone-m-anisidine and copper: role of cuprous ions and oxygen free radicals, Biochemistry, 23, 2946, 10.1021/bi00308a015