S-Allylcysteine Protects Against Excitotoxic Damage in Rat Cortical Slices Via Reduction of Oxidative Damage, Activation of Nrf2/ARE Binding, and BDNF Preservation

被引:0
作者
Carolina Y. Reyes-Soto
Edgar Rangel-López
Sonia Galván-Arzate
Ana Laura Colín-González
Alejandro Silva-Palacios
Cecilia Zazueta
José Pedraza-Chaverri
Jair Ramírez
Anahí Chavarria
Isaac Túnez
Tao Ke
Michael Aschner
Abel Santamaría
机构
[1] Instituto Nacional de Neurología y Neurocirugía,Laboratorio de Aminoácidos Excitadores
[2] Instituto Nacional de Neurología y Neurocirugía,Departamento de Neuroquímica
[3] Instituto Nacional de Cardiología Ignacio Chávez,Departamento de Biomedicina Cardiovascular
[4] Universidad Nacional Autónoma de México,Facultad de Química, Departamento de Biología
[5] Universidad Nacional Autónoma de México,Unidad de Investigación en Medicina Experimental, Facultad de Medicina
[6] Universidad de Córdoba,Departamento de Bioquímica y Biología Molecular, Facultad de Medicina y Enfermería, Instituto Maimónides de Investigación Biomédica de Córdoba (IMIBIC)
[7] Albert Einstein College of Medicine,Department of Molecular Pharmacology
来源
Neurotoxicity Research | 2020年 / 38卷
关键词
Quinolinic acid; Oxidative damage; Antioxidant defense; Nrf2; -allylcysteine; Preconditioning;
D O I
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中图分类号
学科分类号
摘要
Neuroprotective approaches comprising different mechanisms to counteract the noxious effects of excitotoxicity and oxidative stress need validation and detailed characterization. Although S-allylcysteine (SAC) is a natural compound exhibiting a broad spectrum of protective effects characterized by antioxidant, anti-inflammatory, and neuromodulatory actions, the mechanisms underlying its protective role on neuronal cell damage triggered by early excitotoxic insults remain elusive. In this study, we evaluated if the preconditioning or the post-treatment of isolated rat cortical slices with SAC (100 μM) can ameliorate the toxic effects induced by the excitotoxic metabolite quinolinic acid (QUIN, 100 μM), and whether this protective response involves the early display of specific antioxidant and neuroprotective signals. For this purpose, cell viability/mitochondrial reductive capacity, lipid peroxidation, levels of reduced and oxidized glutathione (GSH and GSSG, respectively), the rate of cell damage, the NF-E2-related factor 2/antioxidant response element (Nrf2/ARE) binding activity, heme oxygenase 1 (HO-1) regulation, extracellular signal-regulated kinase (ERK1/2) phosphorylation, and the levels of tumor necrosis factor-alpha (TNF-α) and the neurotrophin brain-derived neurotrophic factor (BDNF) were all estimated in tissue slices exposed to SAC and/or QUIN. The incubation of slices with QUIN augmented all toxic endpoints, whereas the addition of SAC prevented and/or recovered all toxic effects of QUIN, exhibiting better results when administered 60 min before the toxin and demonstrating protective and antioxidant properties. The early stimulation of Nrf2/ARE binding activity, the upregulation of HO-1, the ERK1/2 phosphorylation and the preservation of BDNF tissue levels by SAC demonstrate that this molecule displays a wide range of early protective signals by triggering orchestrated antioxidant responses and neuroprotective strategies. The relevance of the characterization of these mechanisms lies in the confirmation that the protective potential exerted by SAC begins at the early stages of excitotoxicity and neurodegeneration and supports the design of integral prophylactic/therapeutic strategies to reduce the deleterious effects observed in neurodegenerative disorders with inherent excitotoxic events.
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页码:929 / 940
页数:11
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  • [1] Alam J(1999)Nrf2, a Cap’n’Collar transcription factor, regulate the induction of the heme oxygenase-1 gene J Biol Chem 274 26071-26078
  • [2] Stewart D(2017)S-allyl cysteine ameliorates cognitive deficits in streptozotocin-diabetic rats via suppression of oxidative stress, inflammation, and acetylcholinesterase Eur J Pharmacol 794 69-76
  • [3] Touchard C(2014)The DNA intercalators ethidium bromide and propidium iodide also bind to core histones FEBS Open Bio 4 251-259
  • [4] Boinapally S(1993)Characterization of the cellular reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT): subcellular localization, substrate dependence, and involvement of mitochondrial electron transport in MTT reduction Arch Biochem Biophys 303 474-482
  • [5] Choi AMK(2019)Curcumin prevents high glucose damage in retinal pigment epithelial cells through ERK1/2-mediated activation of the Nrf2/HO-1 pathway J Cell Physiol 234 17295-17304
  • [6] Cook JL(2005)Resveratrol upregulates heme oxygenase-1 expression via activation of NF-E2-related factor 2 in PC12 cells Biochem Biophys Res Commun 331 993-1000
  • [7] Baluchnejadmojarad T(2017)Brain-derived neurotrophic factor increases synaptic protein levels via the MAPK/Erk signaling pathway and Nrf2/Trx axis following the transplantation of neural stem cells in a rat model of traumatic brain injury Neurochem Res 42 3073-3083
  • [8] Kiasalari Z(2012)The antioxidant mechanisms underlying the aged garlic extract- and S-allylcysteine-induced protection Oxidative Med Cell Longev 2012 907162-139
  • [9] Afshin-Majd S(2014)Early modulation of the transcription factor Nrf2 in rodent striatal slices by quinolinic acid, a toxic metabolite of the kynurenine pathway Neuroscience 260 130-91
  • [10] Ghasemi Z(2015)On the antioxidant, neuroprotective and anti-inflammatory properties of S-allyl cysteine: an update Neurochem Int 89 83-337