Open Access

The effect of short-term and long-term application of fisetin on experimentally induced airway hyperreactivity


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[1] Bossé Y. Asthmatic airway hyperresponsiveness: the ants in the tree. Trends in Molecular Medicine. 2012; 18: 627-633.10.1016/j.molmed.2012.09.00223062358Search in Google Scholar

[2] Brown A, Danielsson J, Townsend EA, et al. Attenuation of airway smooth muscle contractility via flavonol-mediated inhibition of phospholipase-Cβ. Am J Physiol Lung Cell Mol Physiol. 2016; 310:L747-L758.10.1152/ajplung.00215.2015483610926773068Search in Google Scholar

[3] Franova S, Joskova M, Sadlonova V, Pavelcikova D, Mesarosova L, Novakova E, Sutovska M. Experimentalmodel of allergic asthma. Advances in Experimental Medicine and Biology. 2013; 756: 49-55.10.1007/978-94-007-4549-0_722836618Search in Google Scholar

[4] Franova S, Kazimierova I, Pappova L, Joskova M, Plank L, Sutovska M. Bronchodilatory, antitussive and anti-inflammatory effect of morin in the setting of experimentally induced allergic asthma. Journal of Pharmacy and Pharmacology. 2016; 68(8):1064-1072.10.1111/jphp.1257627283356Search in Google Scholar

[5] Fredberg JJ. Bronchospasms and its biophysical basis in airway smooth muscle. In Respiratory Research. 2004; 5: 2.10.1186/1465-9921-5-238753115084229Search in Google Scholar

[6] Goh FY, Upton N, Guan S, et al. Fisetin, a bioactive flavonol, attenuates allergic airway inflammation through negative regulation of NF-κB. European Journal of Pharmacology. 2012; 679: 109-116.10.1016/j.ejphar.2012.01.00222290391Search in Google Scholar

[7] Gong JH, Shin D, Han SY, Kim JL, Kang YH. Kaempferol suppresses eosinophil infiltration and airway inflammation in airway epithelial cells and in mice with allergic asthma. J Nutr. 2012; 142: 47-56.10.3945/jn.111.15074822157542Search in Google Scholar

[8] Khan N, Syed DN, Ahmad N, Mukhtar H. Fisetin: A dietary antioxidant for health promotion. Antioxidant Redox Signaling. 2013; 19(2): 151-162.10.1089/ars.2012.4901368918123121441Search in Google Scholar

[9] Ko WCH, Liu PY, Chen JL, Leu IJ, Shin CM. Relaxant effects of flavonoids in isolated in guinea pig trachea and their structure – activity relationship. In Planta Medica. 2003; 12: 1086-1090.Search in Google Scholar

[10] O’Byrne PM, Inman MD. Airway Hyperresponsiveness. Chest Journal. 2003; 123: 411-416.10.1378/chest.123.3_suppl.411S12629006Search in Google Scholar

[11] Tanaka T, Takahashi R. Flavonoids and asthma. Nutrients. 2013; 5: 2128-2143.10.3390/nu5062128372549723752494Search in Google Scholar

[12] Weng Z, Zhang B, Asadi S, et al. Quercetin is more effective than cromolyn in blocking human mast cellcytokine release and inhibits contact dermatitis and photosensitivity in humans. PLoSOne. 2012; 7: 33805.10.1371/journal.pone.0033805331466922470478Search in Google Scholar

eISSN:
2453-6725
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Pharmacy, other