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Protective effect of zinc and Pine barks extract supplement against Indometacin-induced gastric ulcer in rats


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[1] Burkitt, M.D.; Duckworth, C.A.; Williams, J.M.; Pritchard, D.M., Helicobacter pylori-induced gastric pathology: insights from in vivo and ex vivo models. Dis. Model. Mech., 2017, 10(2), 89-104.10.1242/dmm.027649Search in Google Scholar

[2] Barazandeh, F.; Yazdanbod, A.; Pourfarzi, F.; Sepanlou, S.G.; Derakhshan, M.H.; Malekzadeh, R., Epidemiology of peptic ulcer disease: endoscopic results of a systematic investigation in iran. Middle East. J. Dig. Dis., 2012, 4(2), 90-96.Search in Google Scholar

[3] Derouiche, S.; Rezzag-mohcen, O.S.; Serouti, A., Triazinone herbicide metribuzin induced acute liver injury: A study of animal model. J. Acute Dis., 2018, 7(4), 152-157.10.4103/2221-6189.241016Search in Google Scholar

[4] Narayanan, M.; Reddy, K.M.; Marsicano, E., Peptic ulcer disease and Helicobacter pylori infection. Mo. Med., 2018, 115(3), 219-224.Search in Google Scholar

[5] Al-Shidhani, A.; Al-Rawahi, N., Al-Rawahi, A.; Sathiya Murthi, P., Non-steroidal Anti-inflammatory Drugs (NSAIDs) Use in Primary Health Care Centers in A’Seeb, Muscat: A Clinical Audit. Oman Med. J., 2015, 30(5), 366-371.10.5001/omj.2015.73Search in Google Scholar

[6] Karima, F.A.; Albakaa, A.R.M.; Zinah, H.A., New assay method UV spectroscopy for determination of Indomethacin in pharmaceutical formulation. J. Chem. Pharm. Res., 2015, 7(4), 1591-1596.Search in Google Scholar

[7] Yuan, H., Ma, Q., Ye, L.; Piao, G., The Traditional Medicine and Modern Medicine from Natural Products. Molecules, 2016, 21(5), 559.10.3390/molecules21050559Search in Google Scholar

[8] Kulkarni, S.K., Hand book of experimental pharmacology. New Delhi: Vallabh Prakashan,1999, 148-150.Search in Google Scholar

[9] Card, W.I.; Marks, I.N., The relationship between the acid output of the stomach following “maximal” histamine stimulation and the parietal cell mass. Clin. Sci.,1960, 19, 147-163.Search in Google Scholar

[10] Northrop, J.H., Pepsin activity units and methods for determining peptic activity. J Gen Physiol,1932, 16(1), 41-58.10.1085/jgp.16.1.41Search in Google Scholar

[11] Sastre, J.; Pallardo, F.V.; Corcia, dela-Asuncion, J.; Vina, J., Mitochondria, oxidative stress and aging. Free Radical Research,2000, 32, 189-198.10.1080/10715760000300201Search in Google Scholar

[12] Sedlak, J.; Lindsay, R.H., Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman’s reagent. Anal biochem,1968, 25, 192-205.10.1016/0003-2697(68)90092-4Search in Google Scholar

[13] Aebi, H. Catalase in vitro. Methods Enzymol,1984, 105, 121-126.10.1016/S0076-6879(84)05016-3Search in Google Scholar

[14] Uzma, S.; Ejaz, U.; Bashir, A.; Mohammad, S., Anti-ulcer activity of Cestrum nocturnum leaf in ethanol- and indomethacin-induced ulcer models. Bangladesh J Pharmacol,2017, 12, 335-340.10.3329/bjp.v12i3.32790Search in Google Scholar

[15] Alkushi, A.G.R.; Elsawy, N.A.M., Quercetin attenuates, indomethacin induced acute gastric ulcer in rats. Folia Morphol,2017, 76(2), 252-261.10.5603/FM.a2016.006727813628Search in Google Scholar

[16] Dubey, M.; Nagarkoti, S.; Awasthi, D., Nitric oxide-mediated apoptosis of neutrophils through caspase-8 and caspase-3-dependent mechanism. Cell Death Dis,2016, 7, 2348.10.1038/cddis.2016.248Search in Google Scholar

[17] Kaouachi, A.; Derouiche, S. Phytochemical analysis, DPPH antioxidant activity and acute toxicity of bark aqueous extracts of Pinus halepensis. Res J Chem Env Sci,2018, 6(3), 86-91.Search in Google Scholar

[18] Repetto, M.G.; Llesuy, S.F. Antioxidant properties of natural compounds used in popular medicine for gastric ulcers. Braz J Med Biol Res,2002, 35(5), 523-543.10.1590/S0100-879X200200050000312011936Search in Google Scholar

[19] Filipa, F.V.; Mónica, O. Overview of the phytomedicine approaches against Helicobacter pylori. World J Gastroenterol, 2014, 20(19), 5594–5609.10.3748/wjg.v20.i19.5594402476824914319Search in Google Scholar

[20] Mohamed, M.; Azza, E. Prevention of Gastric Ulcers, Peptic Ulcer Disease, Dr. Jianyuan Chai (Ed.), 2011.Search in Google Scholar

[21] Derouiche, S.; Abbas, K.; Djermoune, M., Changes in metabolism of Zinc and carbohydrate and testis oxidative stress of diabetic rats fed zinc-over dose diet. Int J Biol Med Res,2017, 8(3), 6041-6045.Search in Google Scholar

[22] Opoka, W.; Adamek, D.; Plonka, M.; Reczynski, W.; Bas, B.; Drozdowicz, D.; Jagielski, P.; Sliwowski, Z.; Adamski, P.; Brzozowski, T. Importance of luminal and mucosal zinc in the mechanism of experimental gastric ulcer healing. Journal of Physiology and Pharmacology, 2010, 61(5), 581-591.Search in Google Scholar

[23] Derouiche, S., Zinc Supplementation Prevents the Complications of COVID-19 Infection in Cancer Patients. Asian Pac J Cancer Care, 2020, 5 (Suppl. 1), 131-141.10.31557/apjcc.2020.5.S1.137-141Search in Google Scholar

[24] Hakan, D.; Mehmet, B.; Fatih, A.; Cengiz, O.; Mustafa, B.; Hamit, H.; Halis, S., Antiulcer activity of fluvoxamine in rats and its effect on oxidant and antioxidant parameters in stomach tissue. BMC Gastroenterol,2009, 9, 36.10.1186/1471-230X-9-36269311719457229Search in Google Scholar

[25] Zorov, D.B.; Juhaszova, M.; Sollott, S.J. Mitochondrial reactive oxygen species (ROS) and ROS-induced ROS release. Physiol. Rev,2014, 94(3), 909-50.10.1152/physrev.00026.2013410163224987008Search in Google Scholar

[26] Aviello, G.; Knaus, U.G. ROS in gastrointestinal inflammation: Rescue Or Sabotage? Br J Pharmacol, 2017, 174(12), 1704-1718.10.1111/bph.13428544656826758851Search in Google Scholar

[27] Derouiche, S.; Abbas, K.; Djermoune, Manal. Polysaccharides and ascorbic acid content and the effect of aqueous extract of portulaca oleracea in high-fat diet-induced obesity, dyslipidemia and liver damage in albino wistar rats. Algerian Journal of Arid Environment, 2017, 7(2), 16-26.10.12816/0046095Search in Google Scholar

[28] Bhattacharyya, A.; Chattopadhyay, R.; Mitra, S.; Crowe SE., Oxidative stress: an essential factor in the pathogenesis of gastrointestinal mucosal diseases. Physiol. Rev, 2014, 94(2), 329-54.10.1152/physrev.00040.2012404430024692350Search in Google Scholar

[29] Derouiche, S., Z. Kechrid, Influence of calcium supplements on zinc status, carbohydrate metabolism and the liver activity of detoxifying glutathione enzymatic system in alloxan induced diabetic rats. J Exp Biol Agr Sci,2013, 1(6), 424-429.Search in Google Scholar

[30] Lushchak, V.I. Glutathione homeostasis and functions: potential targets for medical interventions. J Amino Acids, 2012, 736837.10.1155/2012/736837330362622500213Search in Google Scholar

[31] Adrain, C.; Creagh, E.M.; Martin, S.J., Apoptosis-associated release of Smac/DIABLO from mitochondria requires active caspases and is blocked by Bcl-2. EMBO J., 2001, 20(23), 6627–6636.10.1093/emboj/20.23.662712532911726499Search in Google Scholar

[32] Nayely L.E.; Gutierrez-Grijalva, P.; Ambriz-Perez, D. L.; Basilio Heredia, J., Flavonoids as Cytokine Modulators: A Possible Therapy for Inflammation-Related Diseases. Int J Mol Sci, 2016, 17(6), 921.10.3390/ijms17060921492645427294919Search in Google Scholar

[33] Farzaei, M.H.; Singh, A.K.; Kumar, R.; Croley, C.R.; Pandey, A.K.; Coy-Barrera, E.; Kumar-Patra, J.; Das, G.; Kerry, R.G.; Annunziata, G.; Tenore, G.C.; Khan, H.; Micucci, M.; Budriesi, R.; Momtaz, S.; Nabavi, S.M.; Bishayee, A., Targeting Inflammation by Flavonoids: Novel Therapeutic Strategy for Metabolic Disorders. Int J Mol Sci,2019, 20(19), 49-57.10.3390/ijms20194957680177631597283Search in Google Scholar

[34] Olczyk, P.; Mencner, Ł.; Komosinska-Vassev, K. The role of the extracellular matrix components in cutaneous wound healing. Biomed Res Int, 2014,747584.10.1155/2014/747584397708824772435Search in Google Scholar

[35] Verena, V.B.; Svenja, D.; Gabriela, E.; Silke, H.; Birgit, P.; Holger, H.; Lothar, R.; Hajo, H. Zinc-Dependent Suppression of TNF-α Production Is Mediated by Protein Kinase A-Induced Inhibition of Raf-1, IκB Kinase β, and NF-κB. J Immunol, 2007, 179 (6), 4180-4186.10.4049/jimmunol.179.6.418017785857Search in Google Scholar

[36] Cortese-Krott, M.M.; Kulakov, L.; Opländer, C.; Kolb-Bachofen, V.; Kröncke, K.D.; Suschek, C.V. Zinc regulates iNOS-derived nitric oxide formation in endothelial cells. Redox Biol, 2014, 162, 945-954.10.1016/j.redox.2014.06.011Search in Google Scholar

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