Literature DB >> 23168241

Merit of quinacrine in the decrease of ingested sulfite-induced toxic action in rat brain.

Ceren Kencebay1, Narin Derin, Ozlem Ozsoy, Dijle Kipmen-Korgun, Gamze Tanriover, Nihal Ozturk, Goksun Basaranlar, Piraye Yargicoglu-Akkiraz, Berna Sozen, Aysel Agar.   

Abstract

We aimed at investigating the effects of sulfite-induced lipid peroxidation and apoptosis mediated by secretory phospholipase A2 (sPLA2) on somatosensory evoked potentials (SEP) alterations in rats. Thirty male albino Wistar rats were randomized into three experimental groups as follows; control (C), sodium metabisulfite treated (S), sodium metabisulfite+quinacrine treated (SQ). Sodium metabisulfite (100 mg/kg/day) was given by gastric gavage for 5 weeks and 10 mg/kg/day quinacrine was applied as a single dose of intraperitoneal injection for the same period. The latencies of SEP components were significantly prolonged in the S group and returned to control levels following quinacrine administration. Plasma-S-sulfonate level was increased in S and SQ groups. TBARS levels in the S group were significantly higher than those detected in controls. Quinacrine significantly decreased brain TBARS levels in the SQ group compared with the S group. Quinacrine treatment did not have an effect on the increased sPLA2 level of the sulfite administered group. Immunohistochemistry showed that sulfite caused an increase in caspase-3 and TUNEL positive cells, restored to control levels via quinacrine administration. This study showed that sPLA2 might play a role in ingested sulfite-induced SEP alterations, oxidative stress, apoptotic cell death and DNA damage in the brain.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23168241     DOI: 10.1016/j.fct.2012.11.015

Source DB:  PubMed          Journal:  Food Chem Toxicol        ISSN: 0278-6915            Impact factor:   6.023


  6 in total

Review 1.  The Role of Oxidative Stress and Bioenergetic Dysfunction in Sulfite Oxidase Deficiency: Insights from Animal Models.

Authors:  Angela T S Wyse; Mateus Grings; Moacir Wajner; Guilhian Leipnitz
Journal:  Neurotox Res       Date:  2018-12-05       Impact factor: 3.911

2.  Sodium Metabisulfite: Effects on Ionic Currents and Excitotoxicity.

Authors:  Ming-Chi Lai; Te-Yu Hung; Kao-Min Lin; Pi-Shan Sung; Shyh-Jong Wu; Chih-Sheng Yang; Yi-Jen Wu; Jing-Jane Tsai; Sheng-Nan Wu; Chin-Wei Huang
Journal:  Neurotox Res       Date:  2017-11-29       Impact factor: 3.911

3.  The Role of Acetylcholine on the Effects of Different Doses of Sulfite in Learning and Memory.

Authors:  Betül Danışman; Güven Akçay; Çiğdem Gökçek-Saraç; Deniz Kantar; Mutay Aslan; Narin Derin
Journal:  Neurochem Res       Date:  2022-07-27       Impact factor: 4.414

4.  Induction of omega 6 inflammatory pathway by sodium metabisulfite in rat liver and its attenuation by ghrelin.

Authors:  Sevim Ercan; Ceren Kencebay; Goksun Basaranlar; Filiz Ozcan; Narin Derin; Mutay Aslan
Journal:  Lipids Health Dis       Date:  2015-02-17       Impact factor: 3.876

5.  Efficacy of Curcumin in the Modulation of Anxiety Provoked by Sulfite, a Food Preservative, in Rats.

Authors:  Ali Noorafshan; Masoud Vafabin; Saied Karbalay-Doust; Reza Asadi-Golshan
Journal:  Prev Nutr Food Sci       Date:  2017-06-30

6.  Retromer Complex and PI3K Complex II-Related Genes Mediate the Yeast (Saccharomyces cerevisiae) Sodium Metabisulfite Resistance Response.

Authors:  Xuejiao Jin; Huihui Zhao; Min Zhou; Jie Zhang; Tingting An; Wenhao Fu; Danqi Li; Xiuling Cao; Beidong Liu
Journal:  Cells       Date:  2021-12-13       Impact factor: 6.600

  6 in total

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