Cite

Aggarwal BB, Sung B. (2008). Pharmacological basis for the role of curcumin in chronic diseases: an age-old spice with modern targets. Trends Pharmacol Sci 30: 85-94.Search in Google Scholar

Bauerová K, Paulovičová E, Mihalová D, Švík K, Poništ S. (2009). Study of new ways of supplementary and combinatory therapy of rheumatoid arthritis with immunomodulators. Glucomannan and Imunoglukán® in adjuvant arthritis. Toxicol Ind Health 25: 329-335.Search in Google Scholar

Cronstein BN. (2005). Low-dose methotrexate: a mainstay in the treatment of rheumatoid arthritis. Pharmacol Rev 57: 163-172.Search in Google Scholar

Drábiková K, Perečko T, Nosáľ R, Bauerová K, Poništ S, Mihalová D, Kogan G, Jančinová V. (2009). Glucomannan reduces neutrophil free radical production in vitro and in rats with adjuvant arthritis. Pharmacol Res 59: 399-403.Search in Google Scholar

Fairhurst AM, Wallace PK, Jawad ASM, Goulding NJ. (2007). Rheumatoid peripheral blood phagocytes are primed for activation but have impaired Fcmediated generation of reactive oxygen species. Arthritis Res Ther 9: R29 (doi:10.1186/ar2144).Search in Google Scholar

Filep JG, El Kebir D. (2009). Neutrophil apoptosis: a target for enhancing the resolution of inflammation. J Cell Biochem 108: 1039-1046.Search in Google Scholar

Fontayne A, Dang PMC, Gougerot-Pocidalo MA, El Benna J. (2002). Phosphorylation of p47phox sites by PKC α, βII, δ and ζ: Effect on binding to p22phox and on NADPH oxidase activation. Biochemistry 41: 7743-7750.Search in Google Scholar

Funk JL, Frye JB, Oyarzo JN, Kuscuoglu N, Wilson J, McCaffrey G, Stafford G, Chen G, Lantz RC, Jolad SD, Solyom AM, Kiela PR, Timmermann BN. (2006). Efficacy and mechanism of action of turmeric supplements in the treatment of experimental arthritis. Arthritis Rheum 5: 3452-3464.Search in Google Scholar

Hallett JM, Leitch AE, Riley NA, Duffin R, Haslett C, Rossi AG. (2008). Novel pharmacological strategies for driving inflammatory cell apoptosis and enhancing the resolution of inflammation. Trends Pharmacol Sci 29: 250-257.Search in Google Scholar

Hu M, Du Q, Vancurova I, Lin X, Miller EJ, Simms HH, Wang P. (2005). Proapoptotic effect of curcumin on human neutrophils: Activation of the p38 mitogen-activated protein kinase pathway. Crit Care Med 33: 2571-2578.Search in Google Scholar

Huang MT, Ghai G, Ho CT. (2004). Inflammatory process and molecular targets for anti-inflammatory nutraceuticals. Compr Rev Food Sci Food Saf 3: 127-139.Search in Google Scholar

Jackson JK, Higo T, Hunter WL, Burt HM. (2006). The antioxidants curcumin and quercetin inhibit inflammatory processes associated with arthritis. Inflammres 55: 168-175.Search in Google Scholar

Jagetia GC, Aggarwal BB. (2007). "Spicing up" of the immune system by curcumin. J Clin Immunol 27: 19-35.Search in Google Scholar

Jančinová V, Perečko T, Nosáľ R, Košťálová D, Bauerová K, Drábiková K. (2009). Decreased activity of neutrophils in the presence of diferuloylmethane (curcumin) involves protein kinase C inhibition. Eur J Pharmacol 612: 161-166.Search in Google Scholar

Kohli P, Levy BD. (2009). Resolvins and protectins: mediating solutions to inflammation. Brit J Pharmacol 158: 960-971.Search in Google Scholar

Limasset B, Le Doucen C, Dore JC, Ojasoo T, Damon M, Crastes De Paulet A. (1993). Effects of flavonoids on the release of reactive oxygen species by stimulated human neutrophils. Multivariate analysis of structure-activity relationships (SAR). Biochem Pharmacol 46: 1257-1271.Search in Google Scholar

Luo HR, Loison F. (2007). Constitutive neutrophil apoptosis: Mechanism and regulation. Am J Hematol 83: 288-295.Search in Google Scholar

Miesel R, Hartung R, Kroeger H. (1996). Priming of NADPH oxidase by tumor necrosis factor alpha in patients with inflammatory and autoimmune rheumatic diseases. Inflammation 20: 427-438.Search in Google Scholar

Nair HB, Sung B, Yadav VR, Kannappan R, Chaturvedi MM, Aggarwal BB. (2010). Delivery of antiinflammatory nutraceuticals by nanoparticles for the prevention and treatment of cancer. Biochem Pharmacol 80: 1833-1843.Search in Google Scholar

Nosáľ R, Drábiková K, Jančinová V, Moravcová J, Lojek A, Číž M, Mačičková T, Pečivová J. (2009). H1-antihistamines and oxidative burst of professional phagocytes. Neuroendocrinol Lett 30: 133-136.Search in Google Scholar

Pari L, Murugan P. (2006). Tetrahydrocurcumin: Effect on chloroquine-mediated oxidative damage in rat kidney. Basic Clin Pharmacol Toxicol 99: 329-334.Search in Google Scholar

Perečko T, Drábiková K, Račková L, Čáž M, Podborská M, Lojek A, Harmatha J, Šmidrkal J, Nosáľ R, Jančinová V. (2010). Molecular targets of the natural antioxidant pterostilbene: effect on protein kinase C, caspase-3 and apoptosis in human neutrophils in vitro.Neuroendocrinol Lett 31: 84-90.Search in Google Scholar

Rossi AG, Hallett JM, Sawatzki DA, Teixeira MM, Haslett C. (2007). Modulation of granulocyte apoptosis can influence the resolution of inflammation. Biochem Soc Trans 35: 288-291.Search in Google Scholar

Serhan CN, Brain SD, Buckley CD, Gilroy DW, Haslett C, O'Neill LAJ, Perretti M, Rossi AG, Wallace JL. (2007). Resolution of inflammation: state of the art, definitions and terms. FASEB J 21: 325-332.Search in Google Scholar

Sharma RA, Gescher AJ, Steward WP. (2005). Curcumin: The story so far. Eur J Cancer 41: 1955-1968.Search in Google Scholar

Weber WM, Hunsaker LA, Abcouwer SF, Deck LM, Vander Jagt DL. (2005). Anti-oxidant activities of curcumin and related enones. Bioorg Med Chem 13: 3811-382010.1016/j.bmc.2005.03.03515863007Search in Google Scholar

eISSN:
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Journal Subjects:
Medicine, Clinical Medicine, Pharmacology, Toxicology