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Clinical Research

Leukotriene-mediated neuroinflammation, toxic brain damage, and neurodegeneration in acute methanol poisoning

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Pages 249-259 | Received 16 Oct 2016, Accepted 29 Dec 2016, Published online: 06 Feb 2017

References

  • Zhang G, Grews K, Wiseman H, et al. Application to include fomepizole on the WHO model list of essential medicines [Internet]. 2015 Aug 3 [cited 2016 Oct 15]. Available from: http://www.who.int/selection_medicines/committees/expert/19/applications/Fomepizole_4_2_AC_Ad.pdf
  • Paasma R, Hovda KE, Tikkerberi A, et al. Methanol mass poisoning in Estonia: outbreak in 154 patients. Clin Toxicol. 2007;45:152–157.
  • Hovda KE, Hunderi OH, Tafjord AB, et al. Methanol outbreak in Norway 2002–2004: epidemiology, clinical features and prognostic signs. J Intern Med. 2005;258:181–190.
  • Zakharov S, Pelclova D, Urban P, et al. Czech mass methanol outbreak 2012: epidemiology, challenges and clinical features. Clin Toxicol. 2014;52:1013–1024.
  • Vaneckova M, Zakharov S, Klempir J, et al. Imaging findings after methanol intoxication (cohort of 46 patients). Neuro Endocrinol Lett. 2015;36:737–744.
  • Sanaei-Zadeh H, Zamani N, Shadnia S. Outcomes of visual disturbances after methanol poisoning. Clin Toxicol. 2011;49:102–107.
  • Karayel F, Turan AA, Sav A, et al. Methanol intoxication: pathological changes of central nervous system (17 cases). Am J Forensic Med Pathol. 2010;31:34–36.
  • Vaneckova M, Zakharov S, Klempir J, et al. Methanol intoxication on magnetic resonance imaging – case reports. Cesk Slov Neurol N. 2014;77:235–239.
  • Zakharov S, Kotikova K, Vaneckova M, et al. Acute methanol poisoning: prevalence and predisposing factors of haemorrhagic and non-haemorrhagic brain lesions. Basic Clin Pharmacol Toxicol. 2016;119:228–238.
  • Desai T, Sudhalkar A, Vyas U, et al. Methanol poisoning: predictors of visual outcomes. JAMA Ophthalmol. 2013;131:358–364.
  • Zakharov S, Pelclova D, Diblik P, et al. Long-term visual damage after acute methanol poisonings: longitudinal cross-sectional study in 50 patients. Clin Toxicol. 2015;53:884–892.
  • Paasma R, Hovda KE, Jacobsen D. Methanol poisoning and long term sequelae – a six years follow-up after a large methanol outbreak. BMC Clin Pharmacol. 2009;9:5.
  • Urban P, Zakharov S, Diblík P, et al. Visual evoked potentials in patients after methanol poisoning. Int J Occup Med Environ Health. 2016;29:471–478.
  • McMartin KE, Makar AB, Martin G, et al. Methanol poisoning. I. The role of formic acid in the development of metabolic acidosis in the monkey and the reversal by 4-methylpyrazole. Biochem Med. 1975;13:319–333.
  • Hubacek JA, Pelclova D, Seidl Z, et al. Rare alleles within the CYP2E1 (MEOS system) could be associated with better short-term health outcome after acute methanol poisoning. Basic Clin Pharmacol Toxicol. 2015;116:168–172.
  • Zakharov S, Navratil T, Pelclova D. Analysis of serum anion gap and osmolal gap in diagnostics and prognosis of acute methanol poisoning: clinical study in 86 patients. Monatsh Chem. 2015;146:787–794.
  • Zakharov S, Kurcova I, Navratil T, et al. Is the measurement of serum formate concentration useful in the diagnostics of acute methanol poisoning? A prospective study of 38 patients. Basic Clin Pharmacol Toxicol. 2015;116:445–451.
  • Lagraoui M, Latoche JR, Cartwright NG, et al. Controlled cortical impact and craniotomy induce strikingly similar profiles of inflammatory gene expression, but with distinct kinetics. Front Neur. 2012;3:1–14.
  • Ciceri P, Rabuffetti M, Monopoli A, et al. Production of leukotrienes in a model of focal cerebral ischaemia in the rat. Br J Pharmacol. 2001;133:1323–1329.
  • Dhillon H, Dose J, Prasad M. Regional generation of leukotriene C4 after experimental brain injury in anesthetized rats. J Neurotrauma. 1996;13:781–789.
  • Schuhmann MU, Mokhtarzadeh M, Stichtenoth DO, et al. Temporal profiles of cerebrospinal fluid leukotrienes, brain edema and inflammatory response following experimental brain injury. Neurol Res. 2003;25:481–491.
  • Wang M, Huang X, Fang S, et al. Leukotriene D4 induces brain edema and enhances CysLT2 receptor-mediated aquaporin 4 expression. Biochem Biophys Res Commun. 2006;350:399–404.
  • Zhang W, Hu H, Zhang L, et al. Expression of cysteinyl leukotriene receptor 1 in human traumatic brain injury and brain tumors. Neurosci Lett. 2004;363:247–251.
  • Corser-Jensen CE, Goodell DJ, Freund RK, et al. Blocking leukotriene synthesis attenuates the pathophysiology of traumatic brain injury and associated cognitive deficits. Exp Neurol. 2014;256:7–16.
  • Blood A, Corser-Jensen CE, Heidenreich KA. Prolonged neuroinflammation following a single closed head injury (chi) in mice. J Invest Med. 2015;63:124–125.
  • Gebicke-Haerter PJ. Microglia in neurodegeneration: molecular aspects. Microsc Res Tech. 2001;54:47–58.
  • Karve IP, Taylor JM, Crack PJ. The contribution of astrocytes and microglia to traumatic brain injury. Br J Pharmacol. 2016;173:692–702.
  • Plog BA, Dashnaw ML, Hitomi E, et al. Biomarkers of traumatic injury are transported from brain to blood via the glymphatic system. J Neurosci. 2015;35:518–526.
  • Barceloux DG, Bond GR, Krenzelok EP, et al. American Academy of Clinical Toxicology practice guidelines on the treatment of methanol poisoning. J Toxicol Clin Toxicol. 2002;40:415–446.
  • Zakharov S, Navratil T, Pelclova D, et al. Fomepizole versus ethanol in the treatment of acute methanol poisoning: comparison of clinical effectiveness in a mass poisoning outbreak. Clin Toxicol. 2015;53:797–806.
  • Zakharov S, Navratil T, Pelclova D. Fomepizole in the treatment of acute methanol poisonings: experience from the Czech mass methanol outbreak 2012–2013. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub. 2014;158:641–649.
  • Zakharov S, Navratil T, Salek T, et al. Fluctuations in serum ethanol concentration in the treatment of acute methanol poisoning: a prospective study of 21 patients. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub. 2015;159:666–676.
  • Zakharov S, Pelclova D, Navratil T, et al. Intermittent hemodialysis is superior to continuous veno-venous hemodialysis/hemodiafiltration to eliminate methanol and formate during treatment for methanol poisoning. Kidney Int. 2014;86:199–207.
  • Zakharov S, Pelclova D, Navratil T, et al. Efficiency of acidemia correction on intermittent versus continuous hemodialysis in acute methanol poisoning. Clin Toxicol. 2016;55:123–132.
  • Zakharov S, Nurieva O, Navratil T, et al. Acute methanol poisonings: folates administration and visual sequelae. J Appl Biomed. 2014;12:309–316.
  • Syslova K, Kacer P, Vilhanova B, et al. Determination of cysteinyl leukotrienes in exhaled breath condensate:method combining immunoseparation with LC-ESI-MS/MS. J Chromatogr. 2011;B879:2220–2228.
  • Bush TG, Puvanachandra N, Horner CH, et al. Leukocyte infiltration, neuronal degeneration, and neurite outgrowth after ablation of scar-forming, reactive astrocytes in adult transgenic mice. Neuron. 1999;23:297–308.
  • Faulkner JR, Hermann JE, Woo MJ, et al. Reactive astrocytes protect tissue and preserve function after spinal cord injury. J Neurosci. 2004;24:2143–2155.
  • Farias SE, Zarini S, Precht T, et al. Transcellular biosynthesis of cysteinyl leukotrienes in rat neuronal and glial cells. J Neurochem. 2007;103:1310–1318.
  • Sofroniew MV. Molecular dissection of reactive astrogliosis and glial scar formation. Trends Neurosci. 2009;32:638–647.
  • Farias S, Frey LC, Murphy RC, et al. Injury-related production of cysteinyl leukotrienes contributes to brain damage following experimental traumatic brain injury. J Neurotrauma. 2009;26:1977–1986.
  • Pelclova D, Navratil T, Fenclova Z, et al. Increased oxidative/nitrosative stress markers measured non- invasively in patients with high 2,3,7,8-tetrachloro-dibenzo-p-dioxin plasma level. Neuro Endocrinol Lett. 2011;32 Suppl 1:71–76.
  • Pelclova D, Zdimal V, Kacer P, et al. Leukotrienes in exhaled breath condensate and fractional exhaled nitric oxide in workers exposed to TiO2 nanoparticles. J Breath Res. 2016;10:036004.
  • Banks C, Leins P. A review of experimental evidence linking neurotoxic organophosphorus compounds and inflammation. Neurotoxicology. 2012;33:575–584.
  • Voigt C, Donat CK, Hartig W, et al. Effect of leukotriene inhibitors on evolution of experimental brain contusions. Neuropathol Appl Neurobiol. 2012;38:354–366.
  • Kochanek PM, Bauman RA, Long JB, et al. A critical problem begging for new insight and new therapies. J Neurotrauma. 2009;814:813–814.
  • Barkhoudarian G, Hovda DA, Giza CC. The molecular pathophysiology of concussive brain injury. Clin Sports Med. 2011;30:33–48.
  • Morganti-Kossmann MC, Satgunaseelan L, Bye N, et al. Modulation of immune response by head injury. Injury. 2007;38:1392–1400.
  • Shlosberg D, Benifla M, Kaufer D, et al. Blood-brain barrier breakdown as a therapeutic target in traumatic brain injury. Nat Rev Neurol. 2010;6:393–403.
  • Paasma R, Hovda KE, Hassanian-Moghaddam H, et al. Risk factors related to poor outcome after methanol poisoning and the relation between outcome and antidotes – a multicenter study. Clin Toxicol. 2012;50:823–831.
  • Wang Q, Kalogeris TJ, Wang M, et al. Antecedent ethanol attenuates cerebral ischemia/reperfusion-induced leukocyte-endothelial adhesive interactions and delayed neuronal death: role of large conductance, Ca2+-activated K+ channels. Microcirculation. 2010;17:427–438.
  • Wang Q, Sun AY, Simonyi A, et al. Ethanol preconditioning protects against ischemia/reperfusion-induced brain damage: role of NADPH oxidase-derived ROS. Free Radic Biol Med. 2007;43:1048–1060.
  • Zakharov S, Pelclova D, Urban P, et al. Use of out-of-hospital ethanol administration to improve outcome in mass methanol outbreaks. Ann Emerg Med. 2016;68:52–61.
  • Zakharov S, Nurieva O, Kotikova K, et al. Positive serum ethanol concentration on admission to hospital as the factor predictive of treatment outcome in acute methanol poisoning. Monatsh Chem. 2016; [11 p.]. DOI:10.1007/s00706-016-1846-z
  • Prins ML, Greco T, Alexander D, et al. The pathophysiology of traumatic brain injury at a glance. Dis Model Mech. 2013;6:1307–1315.
  • Pike CJ, Cummings BJ, Cotman CW. Early association of reactive astrocytes with senile plaques in Alzheimer’s disease. Exp Neurol. 1995;132:172–179.
  • Psychogios N, Hau DD, Peng J, et al. The human serum metabolome. PLoS One. 2011;6:e16957.