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Research Article

Oral intralipid emulsion use: a novel therapeutic approach to pancreatic β-cell injury caused by malathion toxicity in rats

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Pages 261-267 | Received 12 Apr 2013, Accepted 10 Aug 2013, Published online: 04 Nov 2013

References

  • Abdollahi M, Donyavi M, Pournourmohammadi S, Saadat M. (2004b). Hyperglycemia associated with increased hepatic glycogen phosphorylase and phosphoenolpyruvate carboxykinase in rats following subchronic exposure to malathion. Comp Biochem Physiol C Toxicol Pharmacol 137:343–347
  • Abdollahi M, Mostafalou S, Pournourmohammadi S, Shadnia S. (2004a). Oxidative stress and cholinesterase inhibition in saliva and plasma of rats following subchronic exposure to malathion. Comp Biochem Physiol C Toxicol Pharmacol 137:29–34
  • Alp H, Aytekin I, Hatipoglu NK, Alp A, Ogun M. (2012). Effects of sulforophane and curcumin on oxidative stress created by acute M toxicity in rats. Eur Rev Med Pharmacol Sci 16:144–148
  • Bone AJ, Hitchcock PR, Gwillam DJ, et al. (1999). Insulitis and mechanisms of disease resistance: studies in an animal model of insulin dependent diabetes mellitus. J Mol Med 77:57–61
  • Choi PT, Quinonez LG, Cook DJ. (1995). Acute organophosphate insecticide poisoning. Clin Intensive Care 6:228–235
  • Erel O. (2004). A novel automated method to measure total antioxidant response against potent free radical reactions. Clin Biochem 37:112–119
  • Erel O. (2005). A new automated colorimetric method for measuring total oxidant status. Clin Biochem 38:1103–1111
  • Gokalp O, Buyukvanlı B, Cicek E, et al. (2005). The effects of diazinon on pancreatic damage and ameliorating role of vitamin E and vitamin C. Pestic Biochem Physiol 81:123–128
  • Hectors TL, Vanparys C, van der Ven K, et al. (2011). Environmental pollutants and type 2 diabetes: a review of mechanisms that can disrupt beta cell function. Diabetologia 54:1273–1290
  • Hsiao CT, Yang CC, Deng JF, et al. (1996). Acute pancreatitis following orgaphosphate intoxication. J Toxicol Clin Toxicol 34:343–347
  • Karakus A, Celik MM, Karcioglu M, et al. (2012). Cases of organophosphate poisoning treated with high-dose of atropine in intensive care unit and the novel treatment approaches. Toxicol Ind Health 25:1–5
  • Karalliedde L. (1999). Organophosphorus poisoning and anaesthesia. Anaesthesia 54:1073–1088
  • Krieglstein J, Meffert A, Niemeyer DH. (1974). Influence of emulsified fat on chlorpromazine availability in rabbit blood. Experientia 30:924–926
  • Lasram MM, Annabi AB, Rezg R, et al. (2008). Effect of short-time malathion administration on glucose homeostasis in Wistar rat. Pestic Biochem Physiol 92:114–119
  • Litz RJ, Roessel T, Heller AR, Steh SN. (2008). Reversal of central nervous system and cardiac toxicity after local anesthetic intoxication by lipid emulsion injection. Anesth Analg 106:1575–1577
  • Liu S, Oguchi Y, Borner JW, Runge W, et al. (1990). Increased canine pancreatic acinar cell damage after organophosphate and acetylcholine or cholecystokinin. Pancreas 5:177–182
  • Mostafalou S, Abdollahi M. (2012). The role of environmental pollution of pesticides in human diabetes. Int J Pharmacol 8:139–140
  • Mostafalou S, Abdollahi M. (2013). Pesticides and human chronic diseases: evidences, mechanisms, and perspectives. Toxicol Appl Pharmacol 268:157–177
  • Onur OE, Guneysel O, Akoglu H, et al. (2007). Adrenomedullin reduces the severity of cerulein-induced acute pancreatitis. Peptides 28:2179–2183
  • Panahi P, Vosough-Ghanbari S, Pournourmohammadi S, et al. (2006). Stimulatory effects of malathion on the key enzymes activities of insulin secretion in langerhans islets, glutamate dehydrogenase and glucokinase. Toxicol Mech Methods 16:161–167
  • Perez E, Bania TC, Medlej K, Chu J. (2008). Determining the optimal dose of intravenous fat emulsion for the treatment of severe verapamil toxicity in a rodent model. Acad Emerg Med 15:1284–1289
  • Pournourmohammadi S, Farzami B, Ostad SN, et al. (2005). Effects of malathion subchronic exposure on rat skeletal muscle glucose metabolism. Environ Toxicol Pharmacol 19:191–196
  • Pournourmohammadi S, Ostad SN, Azizi E, et al. (2007). Induction of insulin resistance by malathion: evidence for disrupted islets cells metabolism and mitochondrial dysfunction. Pestic Biochem Physiol 88:346–352
  • Rahimi R, Abdollahi M. (2007). A review on the mechanisms involved in hyperglycemia induced by organophosphorus pesticides. Pestic Biochem Physiol 88:115–121
  • Ranjbar A, Pasalar P, Abdollahi M. (2002). Induction of oxidative stress and acetylcholinesterase inhibition in organophosphorus pesticide manufacturing workers. Hum Exp Toxicol 21:179–182
  • Ranjbar M, Abdollahi M, Kebryaeezadeh A, et al. (2003). Biochemical evidence for free radical-induced lipid peroxidation as a mechanism for subchronic toxicity of malathion in blood and liver of rats. Hum Exp Toxicol 22:205–211
  • Rezg R, Mornagui B, El-Arbi M, et al. (2006). Effect of subchronic exposure to malathion on glycogen phosphorylase and hexokinase activities in rat liver using native PAGE. Toxicology 223:9–14
  • Robertson RP. (2006). Oxidative stress and impaired insulin secretion in type 2 diabetes. Curr Opin Pharmacol 6:615–619
  • Sikka SC, Gurbuz N. (2006). Reproductive toxicity of organophosphate and carbamate pesticides. In: Gupta RC, ed. Toxicology of organophosphate and carbamate compounds. Burlington (MA): Elsevier, 447–462
  • Sirianni AJ, Osterhoudt KC, Calello DP, et al. (2008). Use of lipid emulsion in the resuscitation of a patient with prolonged cardiovascular collapse after overdose of bupropion and lamotrigine. Ann Emerg Med 51:412–415
  • Sivagnanam S. (2002). Potential therapeutic agents in the management of organophosphorus poisoning. Crit Care 6:260–261
  • Sungur M, Guven M. (2001). Intensive care management of organophosphate insecticide poisoning. Crit Care 5:211–215
  • Tebbutt S, Harvey M, Nicholson T, Cave G. (2006). Intralipid prolongs survival in a rat model of verapamil toxicity. Acad Emerg Med 13:134–139
  • Weinberg G. (2008). Lipid infusion therapy: translation to clinical practice. Anesth Analg 106:1340–1342
  • Weinberg G. (2006). Lipid rescue resuscitation from local anesthetic cardiac toxicity. Toxicol Rev 25:139–145
  • Weinberg G, VadeBoncouer T, Ramaraju GA, et al. (1998). Pretreatment or resuscitation with a lipid infusion shifts the dose-response to bupivacaine-induced asystole in rats. Anesthesiology 88:1071–1075
  • Virlos I, Mazzon E, Serraino I, et al. (2003). Pryrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis. Shock 20:544–550
  • Zhou Y, Zhan C, Li Y, et al. (2010). Intravenous lipid emulsions combine extracorporeal blood purification: a novel therapeutic strategy for severe organophosphate poisoning. Med Hypotheses 74:309–311

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