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RESEARCH PRODUCT

Oxidative and nitrosative stress in acute pancreatitis. Modulation by pentoxifylline and oxypurinol

Juan HidalgoSalvador PérezMáximo VentoAlessandro ArduiniJuan SandovalLuis SabaterNorberto CassinelloJavier EscobarLeo A. B. JoostenLuis AparisiGerardo López-rodasJavier PeredaJuan SastreMari-luz Moreno

subject

MaleNitrosationOxypurinolPharmacologymedicine.disease_causeBiochemistryPentoxifyllineMicechemistry.chemical_compoundCell Line TumorAnimalsMedicinePentoxifyllineRats WistarXanthine oxidasePharmacologychemistry.chemical_classificationReactive oxygen speciesPancreatitis Acute Necrotizingbusiness.industryPathogenesis and modulation of inflammation Infection and autoimmunity [N4i 1]GlutathioneNitro Compoundsmedicine.diseaseRatsOxidative StresschemistryBiochemistryAcute pancreatitisPancreatitisDrug Therapy CombinationTumor necrosis factor alphabusinessOxidative stressmedicine.drug

description

Item does not contain fulltext Reactive oxygen species are considered mediators of the inflammatory response and tissue damage in acute pancreatitis. We previously found that the combined treatment with oxypurinol - as inhibitor of xanthine oxidase- and pentoxifylline - as inhibitor of TNF-alpha production-restrained local and systemic inflammatory response and decreased mortality in experimental acute pancreatitis. Our aims were (1) to determine the time-course of glutathione depletion and oxidation in necrotizing pancreatitis in rats and its modulation by oxypurinol and pentoxifylline; (2) to determine whether TNF-alpha is responsible for glutathione depletion in acute pancreatitis; and (3) to elucidate the role of oxidative stress in the inflammatory cascade in pancreatic AR42J acinar cells. We report here that oxidative stress and nitrosative stress occur in pancreas and lung in acute pancreatitis and the co-treatment with oxypurinol and pentoxifylline prevents oxidative stress in both tissues. Oxypurinol was effective in preventing glutathione oxidation, whereas pentoxifylline abrogated glutathione depletion. This latter effect was independent of TNF-alpha since glutathione depletion occurred in mice deficient in TNF-alpha or its receptors after induction of pancreatitis. The beneficial effects of oxypurinol in the inflammatory response may also be ascribed to a partial inhibition of MEK1/2 activity. Pentoxifylline markedly reduced the expression of Icam1 and iNos induced by TNF-alpha in vitro in AR42J cells. Oxidative stress significantly contributes to the TNF-alpha-induced up-regulation of Icam and iNos in AR42J cells. These results provide new insights into the mechanism of action of oxypurinol and pentoxifylline as anti-inflammatory agents in acute pancreatitis.

https://doi.org/10.1016/j.bcp.2011.09.028