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Research Article

Protective effect of Mutellina purpurea polyphenolic compounds in doxorubicin-induced toxicity in H9c2 cardiomyocytes

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Pages 1-8 | Received 03 Jun 2013, Accepted 08 Feb 2014, Published online: 03 Mar 2014

References

  • Al-Shabanah OA, Aleisa AM, Hafez MM, et al. (2012). Desferroxamine attenuates doxorubicin induced acute cardiotoxicity through TGF-β/Smad p53 pathway in rat model. Oxid Med Cell Longev 2012:article ID 619185, 7 pages
  • Al-Shabanah OA, Hafez MM, Al-Harbi MM, et al. (2010). Doxorubicin toxicity can be ameliorated during antioxidant L-carnitine supplementation. Oxid Med Cell Longev 3:428–433
  • Bachur NR, Gordon SL, Gee MV. (1978). A general mechanism for microsomal activation of quinone anticancer agents to free radicals. Cancer Res 38:1745–1750
  • Berthiaume JM, Wallace KB. (2007). Adriamycin-induced oxidative mitochondrial cardiotoxicity. Cell Biol Toxicol 23:15–25
  • Biasutto L, Dong LF, Zoratti M, Neuzil J. (2010). Mitochondrially targeted anti-cancer agents. Mitochondrion 10:670–681
  • Boots AW, Haenen G, Bast A. (2008). Health effects of quercetin: From antioxidant to nutraceutical. Eur J Pharmacol 585:325–337
  • Caillet S, Yu H, Lessard S, et al. (2007). Fenton reaction applied for screening natural antioxidants. Food Chem 100:542–552
  • Chua CC, Liu X, Gao J, et al. (2006). Multiple actions of pifithrin-alpha on doxorubicin-induced apoptosis in rat myoblastic H9c2 cells. Am J Physiol Heart Circ Physiol 290:H2606–H2613
  • Coruh N, Sagdıcoglu Celep AG, Ozgokce F. (2007). Antioxidant properties of Prangos ferulacea (L.) Lindl., Chaerophyllum macropodum Boiss. and Heracleum persicum Desf. from Apiaceae family used as food in Eastern Anatolia and their inhibitory effects on glutathione-S-transferase. Food Chem 100:1237–1242
  • Davies KJ, Doroshow JH. (1986). Redox cycling of anthracyclines by cardiac mitochondria. I. Anthracycline radical formation by NADH dehydrogenase. J Biol Chem 261:3060–3067
  • De Marchi U, Biasutto L, Garbisa S, et al. (2009). Quercetin can act either as an inhibitor or an inducer of the mitochondrial permeability transition pore: a demonstration of the ambivalent redox character of polyphenols. Biochim Biophys Acta 1787:1425–1432
  • Doughan AK, Dikalov SI. (2007). Mitochondrial redox cycling of mitoquinone leads to superoxide production and cellular apoptosis. Antioxid Redox Signal 11:1825–1836
  • Dudka J. (2006). The role of reactive oxygen and nitrogen species in calcium and iron homeostasis dysregulation in anthracycline cardiotoxicity]. Postepy Hig Med Dosw 60:241–247
  • Dudka J, Burdan F, Korga A, et al. (2012). Intensification of doxorubicin-related oxidative stress in the heart by hypothyroidism is not related to the expression of cytochrome P450 NADPH-reductase and Inducible nitric oxide synthase, as well as activity of xanthine oxidase. Oxid Med Cell Longev 2012: doi: 10.1155/2012/139327
  • Elmastas M, Gulcin I, Beydemir S, et al. (2006). A study on the in vitro antioxidant activity of juniper (Juniperus communis L.) fruit extracts. Analyt Lett 39:47–65
  • Guo R, Wei P, Liu W. (2007). Combined antioxidant effects of rutin and Vitamin C in Triton X-100 micelles. J Pharmaceut Biomed 43:1580–1586
  • Halliwell B. (2008). Are polyphenols antioxidants or pro-oxidants? What do we learn from cell culture and in vivo studies? Arch Biochem Biophys 476:107–112
  • Huang M, Ho C, Lee C. (1998). Phenolic compounds in food and their effects on health. Washington: American Chemical Society; Rice-Evans C, Packer L. Flavonoids in health and disease. Marcel Dekker, New York
  • Iwasaki T, Suzuki T. (1991). Ultrastructural alterations of the myocardium induced by doxorubicin. A scanning electron microscopic study. Virchows Arch B Cell Pathol Incl Mol Pathol 60:35–39
  • Jiang P, Burczynski F, Campbell C, et al. (2007). Rutin and flavonoid contents in three buckwheat species Fagopyrum esculentum, F. tataricum, and F. homotropicum and their protective effects against lipid peroxidation. Food Res Int 40:356–364
  • Knockaert L, Fromenty B, Robin MA. (2011). Mechanisms of mitochondrial targeting of cytochrome P450 2E1: physiopathological role in liver injury and obesity. FEBS J 22:4252–4260
  • Korga A, Dudka J, Burdan F, et al. (2012). The redox imbalance and the reduction of contractile protein content in rat hearts administered with L-thyroxine and doxorubicin. Oxid Med Cell Longev 68:1367–1375
  • Meot-Duros L, Magne Ch. (2009). Antioxidant activity and phenol content of Crithmum maritimum L. leaves. Plant Physiol Bioch 47:37–41
  • Merten KE, Jiang Y, Feng W, Kang YJ. (2006). Calcineurin activation is not necessary for doxorubicin-induced hypertrophy in H9c2 embryonic rat cardiac cells: involvement of the phosphoinositide 3-kinase-Akt pathway. J Pharmacol Exp Ther 319:934–940
  • Minotti G, Menna P, Salvatorelli E, et al. (2004). Anthracyclines: molecular advances and pharmacologic developments in antitumor activity and cardiotoxicity. Pharmacol Rev 56:185–229
  • Montaigne D, Marechal X, Baccouch R, et al. (2010). Stabilization of mitochondrial membrane potential prevents doxorubicin-induced cardiotoxicity in isolated rat heart. Toxicol Appl Pharmacol 244:300–307
  • Namjooyan F, Azemi ME, Rahmanian VR. (2010). Investigation of antioxidant activity and total phenolic content of various fractions of aerial parts of Pimpinella barbata (dc.) Boiss. Jundishapur J Nat Pharm Prod 5:1–5
  • Ohnishi M, Morishita H, Iwahashi H, et al. (1994). Inhibitory effects of chlorogenic acids on linoleic acid peroxidation and haemolysis. Phytochemistry 36:579–583
  • Oliveira PJ, Santos MS, Wallace KB. (2006). Doxorubicin-induced thiol-dependent alteration of cardiac mitochondrial permeability transition and respiration. Biochemistry 71:194–199
  • Perron NR, Brumaghim JL. (2009). A review of the antioxidant mechanisms of polyphenol compounds related to iron binding. Cell Biochem Biophys 53:75–100
  • Perron NR, Wang HC, Deguire SN, et al. (2010). Kinetics of iron oxidation upon polyphenol binding. Dalton Trans 39:9982–9987
  • Rice-Evans CA, Miller NJ, Paganga G. (1997). Antioxidants properties of phenolic compounds. Trends Plant Sci 2:152–159
  • Sardao VA, Oliveira PJ, Holy J, et al. (2009a). Doxorubicin-induced mitochondrial dysfunction is secondary to nuclear p53 activation in H9c2 cardiomyoblasts. Cancer Chemother Pharmacol 64:811–827
  • Sardao VA, Oliveira PJ, Holy J, et al. (2009b). Morphological alterations induced by doxorubicin on H9c2 myoblasts: nuclear, mitochondrial, and cytoskeletal targets. Cell Biol Toxicol 25:227–243
  • Sieniawska E, Baj T, Dudka J, et al. (2012). The effect of phenolic compounds isolated from Mutellina purpurea on doxorubicine induced oxydative stress in rat's cardiomyocytes. 8th International Symposium on Chromatography of Natural Products: the application of analytical methods for the development of natural products. Lublin, May 17–20. Abstract, pp. 160
  • Sieniawska E, Baj T, Łoś R, et al. (2013a). Phenolic acids content, antioxidant and antimicrobial activity of Ligusticum mutellina L. Nat Prod Res 27:1108–1110
  • Sieniawska E, Baj T, Ulewicz-Magulska B, et al. (2013b). The essential oils from Ligusticum mutellina of polish origin and the chemical relationship of its root essential oil with other Ligusticum species. Bioch Syst Ecol 49:125–130
  • Sieniawska E, Głowniak K. (2011). Identification of the coumarin compounds in the Mutellina purpurea extracts. Annales UMCS Sect DDD 24:97–104
  • Singal PK, Iliskovic N. (1998). Doxorubicin-induced cardiomyopathy. N Engl J Med 339:900–905
  • Sliwinska J, Dudka J, Korga A, et al. (2012). Tirapazamine-doxorubicin interaction referring to heart oxidative stress and Ca2+ balance protein levels. Oxid Med Cell Longev 2012:article ID 890826
  • Tebbi CK, London WB, Friedman D, et al. (2007). Dexrazoxane-associated risk for acute myeloid leukemia/myelodysplastic syndrome and other secondary malignancies in pediatric Hodgkin's disease. J Clin Oncol 25:493–500
  • Xu MF, Tang PL, Qian ZM, Ashraf M. (2001). Effects by doxorubicin on the myocardium are mediated by oxygen free radicals. Life Sci 68:889–901
  • Yang J, Guo J, Yuan J. (2008). In vitro antioxidant properties of rutin. LWT 4:1060–1066
  • Yee SB, Pritsos CA. (1997). Comparison of oxygen radical generation from the reductive activation of doxorubicin, streptonigrin, and menadione by xanthine oxidase and xanthine dehydrogenase. Arch Biochem Biophys 347:235–241
  • Zhaoa Ch, Shia Y, Wangb W, et al. (2002). Fast repair activities of quercetin and rutin toward dGMP hydroxyl radical adducts. Rad Phys Chem 63:137–142

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