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Research Article

In vivo effects of curcumin on the paraoxonase, carbonic anhydrase, glucose-6-phosphate dehydrogenase and β-glucosidase enzyme activities in dextran sulphate sodium-induced ulcerative colitis mice

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Pages 1583-1590 | Received 14 Jan 2016, Accepted 22 Feb 2016, Published online: 22 Mar 2016

References

  • Parian A, Limketkai BN. Dietary supplement therapies for inflammatory bowel disease: Crohn's disease and ulcerative colitis. Curr Pharm Des 2015;22:180–8
  • Cooneya JM, Barnett MPG, Dommels YEM, et al A combined omics approach to evaluate the effects of dietary curcumin on colon inflammation in the Mdr1a −/− mouse model of inflammatory bowel disease. J Nutr Biochem 2016;27:181–92
  • Motawi TK, Rizk SM, Shehata AH. Effects of curcumin and Ginkgo biloba on matrix metalloproteinases gene expression and other biomarkers of inflammatory bowel disease. J Physiol Biochem 2012;68:529–39
  • He Y, Yue Y, Zheng X, et al Curcumin, inflammation, and chronic diseases: how are they linked? Molecules 2015;20:9183–213
  • Mahmood K, Zia KM, Zuber M, et al Recent developments in curcumin and curcumin based polymeric materials for biomedical applications: a review. Int J Biol Macromol 2015;81:877–90
  • Baliga MS, Joseph N, Venkataranganna MV, et al Curcumin, an active component of turmeric in the prevention and treatment of ulcerative colitis: preclinical and clinical observations. Food Funct 2012;3:1109
  • Anand P, Kunnumakkara AB, Newman RA, Aggarwal BB. Bioavailability of curcumin: problems and promises. Mol Pharm 2007;4:807–18
  • Suskind DL, Wahbeh G, Burpee T, et al Tolerability of curcumin in pediatric inflammatory bowel disease: a forced dose titration study. J Pediatr Gastroenterol Nutr 2013;3:277–9
  • Ravindranath V, Chandrasekhara N. Metabolism of curcumin-studies with [3H] curcumin. Toxicology 1981;22:337–44
  • Zhu H, Li YR. Oxidative stress and redox signaling mechanisms of inflammatory bowel disease: updated experimental and clinical evidence. Exp Biol Med 2012;237:474–80
  • Pavlick KP, Laroux FS, Fuseler J, et al Role of reactive metabolites of oxygen and nitrogen in inflammatory bowel disease. Free Radic Biol Med 2002;33:311–22
  • Pravda J. Radical induction theory of ulcerative colitis. World J Gastroenterol 2005;11:2371–84
  • Tanida S, Mizoshita T, Mizushima T, et al Involvement of oxidative stress and mucosal addressin cell adhesion molecule-1 (MAdCAM-1) in inflammatory bowel disease. J Clin Biochem Nutr 2011;48:112–16
  • Cracowski JL, Bonaz B, Bessard G, et al Increased urinary F2-isoprostanes in patients with Crohn's disease. Am J Gastroenterol 2002;97:99–103
  • Hatsugai M, Kurokawa MS, Kouro T, et al Protein profiles of peripheral blood mononuclear cells are useful for differential diagnosis of ulcerative colitis and Crohn’s disease. J Gastroenterol 2010;45:488–500
  • Karban A, Hartman C, Eliakim R, et al Paraoxonase (PON)1 192R allele carriage is associated with reduced risk of inflammatory bowel disease. Dig Dis Sci 2007;52:2707–15
  • Rothem L, Hartman C, Dahan A, et al Paraoxonases are associated with intestinal inflammatory diseases and intracellularly localized to the endoplasmic reticulum. Free Radic Biol Med 2007;43:730–9
  • Esen R, Aslan M, Kucukoglu ME, et al Serum paraoxonase activity, total thiols levels, and oxidative status in patients with acute brucellosis. Wien Klin Wochenschr 2015;127:427–33
  • Senturk M, Gulcin İ, Beydemir S, et al In vitro inhibition of human carbonic anhydrase I and II isozymes with natural phenolic compounds. Chem Biol Drug Des 2011;77:494–9
  • Fonti R, Latella G, Caprilli R, et al Carbonic anhydrase I reduction in colonic mucosa of patients with active ulcerative colitis. Dig Dis Sci 1998;43:2086–92
  • Goldfarb D, Chan A, He rnandez D, Charney A. Effect of thiazides on colonic NaCl absorption: role of carbonic anhydrase. Am J Physiol 1991;261:452–8
  • Binder H, Foster E, Budinger M, Hayslett J. Mechanism of electroneutral sodium chloride absorption in distal colon of the rat. Gastroenterology 1987;93:449–55
  • Yang HC, Cheng ML, Hua YS, et al Glucose 6-phosphate dehydrogenase knockdown enhances IL-8 expression in HepG2 cells via oxidative stress and NF-κB signaling pathway. J Inflamm 2015;12:34
  • Saeed H, Ismaeil M, Embaby A, et al Overexpression, purification and enzymatic characterization of a recombinant Arabian camel Camelus dromedarius glucose-6-phosphate dehydrogenase. Protein Expr Purif 2015;15:1046
  • Moret I, Cerrillo E, Navarro-Puche A, et al Oxidative stress in Crohn’s disease. Gastroenterol Hepatol 2014;37:28–34
  • Crowley SD. The cooperative roles of inflammation and oxidative stress in the pathogenesis of hypertension. Antioxid Redox Signal 2014;20:102–20
  • Kara HE, Sinan S, Turan Y. Purification of beta-glucosidase from olive (Olea europaea L.) fruit tissue with specifically designed hydrophobic interaction chromatography and characterization of the purified enzyme. J Chromatogr B 2011;879:1507–12
  • Komiyama Y, Mitsuyama K, Masuda J, et al Prebiotic treatment in experimental colitis reduces the risk of colitic cancer. J Gastroenterol Hepatol 2011;26:1298–308
  • Rowland IR, Rumney CJ, Coutts JT, Lievense LC. Effect of Bifidobacterium longum and inulin on gut bacterial metabolism and carcinogen-induced aberrant crypt foci in rats. Carcinogenesis 1998;19:281–5
  • Rowland IR, Tanaka R. The effects of transgalactosylated oligosaccharides on gut flora metabolism in rats associated with a human faecal microflora. J Appl Bacteriol 1993;74:667–74
  • Körschen HG, Yildiz Y, Raju DN, et al The non-lysosomal β-glucosidase GBA2 is a non-integral membrane-associated protein at the endoplasmic reticulum (ER) and Golgi. J Biol Chem 2013;288:3381–93
  • Naim HY. Molecular and cellular aspects and regulation of intestinal lactase-phlorizin hydrolase. Histol Histopathol 2001;16:553–61
  • Astudillo L, Therville N, Colacios C, et al Glucosylceramidases and malignancies in mammals. Biochimie 2016. 2016. [Epub ahead of print]. http://dx.doi.org/10.1016/j.biochi.2015.11.009
  • de Graaf M, van Veen IC, van der Meulen-Muileman IH, et al Cloning and characterization of human liver cytosolic beta-glycosidase. Biochem J 2001;356:907–10
  • Fleury D, Domaingue P, Gillard C, et al Expression, purification, characterization and crystallization of a recombinant human cytosolic beta-glucosidase produced in insect cells. Protein Expr Purif 2007;52:96–103
  • Liu T, Ren J, Wang W, et al Treatment of dextran sodium sulfate-induced experimental colitis by adoptive transfer of peritoneal cells. Scientific Rep 2015;5:16760
  • Byrne FR, Viney JL. Mouse models of inflammatory bowel disease. Curr Opin Drug Discov Dev 2006;9:207–17
  • Mizoguchi A, Mizoguchi E. Animal models of IBD: linkage to human disease. Curr Opin Pharmacol 2010;10:578–87
  • Yousefa M, Pichyangkurac R, Soodvilaia S, et al Chitosan oligosaccharide as potential therapy of inflammatory bowel disease: therapeutic efficacy and possible mechanisms of action. Pharmacol Res 2012;66:66–79
  • Zhao ZJ, Xiang JY, Liu L, et al Parthenolide, an inhibitör of the nuclear factor kB pathway, ameliorates dextran sulfate sodium-induced colitis in mice. Int Immunopharmacol 2012;12:169–74
  • Cho JY, Chi SG, Chun HS. Oral administration of docosahexaenoic acid attenuates colitis induced by dextran sulfate sodium in mice. Mol Nutr Food Res 2011;55:239–46
  • Axelsson LG, Landström E, Bylund-Fellenius AC. Experimental colitis induced by dextran sulphate sodium in mice: beneficial effects of sulphasalazine and olsalazine. Aliment Pharmacol Therapeut 1998;12:925–34
  • Jian YT, Mai GF, Wang JD, et al Preventive and therapeutic effects of NF-kappaB inhibitör curcumin in rats colitis induced by trinitrobenzene sulfonic acid. World J Gastroenterol 2005;12:1747–52
  • Bancroft JD, Gamble M, eds. Theory and practice of histological techniques. 6th ed. Chapter 9. The hematoxylins and eosin. London: Churchill Livingstone; 2008:121–34
  • Rodrigo L, Gil F, Hernandez AF, Pla A. Identification of two rat liver proteins with paraoxonase activity: biochemical evidence for the identity of paraoxonase and arylesterase. Chem-Biol Interact 1999;263:119–20
  • Gil F, Gonzalvo MC, Hernandez AF, et al Differences in the kinetic properties, effect of calcium and sensitivity to inhibitors of paraoxon hydrolase activity in rat plasma and microsomal fraction from rat liver. Biochem Pharmacol 1994;48:1559–68
  • Basaran I, Sinan S, Cakir U, et al In vitro inhibition of cytosolic carbonic anhydrases I and II by some new dihydroxy coumarin compounds. J Enzyme Inhibit Med Chem 2008;23:32–6
  • Castaneda FE, Walia B, Vijay-Kumar M, et al Targeted deletion of metalloproteinase 9 attenuates experimental colitis in mice: central role of epithelial-derived MMP. Gastroenterology 2005;129:1991–2008
  • Gewirtz AT, Collier-Hyams LS, Young AN, et al Lipoxin a4 analogs attenuate induction of intestinal epithelial proinflammatory gene expression and reduce the severity of dextran sodium sulfate induced colitis. J Immunol 2002;168:5260–7
  • Gan KN, Smolen A, Eckerson HW, La Du BN. Purification of human serum paraoxonase/arylesterase. Evidence for one esterase catalyzing both activities. Drug Metab Dispos 1991;19:100–6
  • Wilbur KM, Anderson NG. Electrometric and colorimetric determination of carbonic anhydrase. J Biol Chem 1948;176:147–54
  • Beutler E. Red cell metabolism: a manual of biochemical methods. New York: Grune and Stratton; 1971:92–4
  • Yan Y, Kolachala V, Dalmasso G, et al Temporal and spatial analysis of clinical and molecular parameters in dextran sodium sulfate induced colitis. PLoS One 2009;4:e6073
  • Chassaing B, Aitken JD, Malleshappa M, Kumar MV. Dextran sulfate sodium (DSS)-induced colitis in mice. Curr Protoc Immunol 104:Unit–15.25
  • Basnet P, Basnet NS. Curcumin: an anti-inflammatory molecule from a curry spice on the path to cancer treatment. Molecules 2011;16:4567–98
  • Nıeto N, Torres MI, Fernandez MI, et al Experimental ulcerative colitis impairs antioxidant defense system in rat intestine. Dig Dis Sci 2000;45:1820–7
  • Tuorkey M, Karolın K. Anti-ulcer activity of curcumin on experimental gastric ulcer in rats and its effect on oxidative stress/antioxidant, IL-6 and enzyme activities. Biomed Environ Sci 2009;22:269–77
  • Deguchi Y, Andoh A, Inatomi O, et al Curcumin prevents the development of dextran sulfate sodium (DSS)-induced experimental colitis. Dig Dis Sci 2007;52:2993–8
  • Chang NS, Joki N, Mattison J, et al Characterization of serum adhesive proteins that block tumor necrosis factor-mediated cell death. Cell Death Differ 1997;4:779–86
  • Anthwal A, Thakur BK, Rawat MS, et al Synthesis, characterization and in vitro anticancer activity of C-5 curcumin analogues with potential to inhibit TNF-α-induced NF-κB activation. Biomed Res Int 2014;2014:524161
  • Gupta SC, Tyagi AK, Deshmukh-Taskar P, et al Downregulation of tumor necrosis factor and other proinflammatory biomarkers by polyphenols. Arch Biochem Biophys 2014;559:91–9
  • McCann MJ, Johnston S, Reilly K, et al The effect of turmeric (Curcuma longa) extract on the functionality of the solute carrier protein 22 A4 (SLC22A4) and interleukin-10 (IL-10) variants associated with inflammatory bowel disease. Nutrients 2014;6:4178–90
  • Topcu-Tarladacalisir Y, Akpolat M, Uz YH, et al Effects of curcumin on apoptosis and oxidoinflammatory regulation in a rat model of acetic acid-induced colitis, the roles of c-Jun N-terminal kinase and p38 mitogen-activated protein kinase. J Med Food 2013;16:296–305
  • Jiang GL, Im WB, Donde Y, Wheeler LA. Comparison of prostaglandin E2 receptor subtype 4 agonist and sulfasalazine in mouse colitis prevention and treatment. J Pharmacol Exp Ther 2010;335:546–52
  • Baskol G, Baskol M, Yurci A, et al Serum paraoxonase 1 activity and malondialdehyde levels in patients with ulcerative colitis. Cell Biochem Funct 2006;24:283–6
  • Schrader C, Schiborr C, Frank J, Rimbach G. Curcumin induces paraoxonase 1 in cultured hepatocytes in vitro but not in mouse liver in vivo. Br J Nutr 2011;105:167–70
  • Mroczynska M, Gałecka M, Szachta P, et al Beta-glucuronidase and beta-glucosidase activity in stool specimens of children with inflammatory bowel disease. Pol J Microbiol 2013;62:319–25
  • Beaud D, Tailliez P, Anba J, Ondoloni M. Genetic characterization of the beta-glucuronidase enzyme from a human intestinal bacterium, Ruminococcus gnavus. Microbiology 2005;151:2323–30
  • LeBlanc AM, Perdigon G. Reduction of β-glucuronidase and nitroreductase activity by yoghurt in a murine colon cancer model. Biocell 2005;29:15–24
  • Hughes R, Rowland IR. Metabolic activities of the gut microflora in relation to cancer. Microb Ecol Health Dis 2000;12:179–85
  • Wahlstrom B, Blennow G. A study on the fate of curcumin in the rat. Acta Pharmacol Toxicol (Copenh) 1978;43:86–92
  • Garcea G, Jones DJ, Singh R, et al Detection of curcumin and its metabolites in hepatic tissue and portal blood of patients following oral administration. Br J Cancer 2004;90:1011–15
  • Hoehle SI, Pfeiffer E, Solyom AM, Metzler M. Metabolism of curcuminoids in tissue slices and subcellular fractions from rat liver. J Agric Food Chem 2006;54:756–64
  • Shafit-Zagardo B, Turner BM. Human beta-glucosidase: inhibition by sulphates and purification by affinity chromatography on Dextran-sulphate-Sepharose. Biochim Biophys Acta 1981;659:7–14

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