1 |
Neuroprotective effects of trans-caryophyllene against kainic acid induced seizure activity and oxidative stress in mice.  |
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2 |
Correlation of seizures and biochemical parameters of oxidative stress in experimentally induced inflammatory rat models  |
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3 |
Protective effect of vineatrol against kainic acid induced seizures, oxidative stress and on the expression of heat shock proteins in rats  |
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4 |
EFFECT OF MELATONIN COTREATMENT AGAINST KAINIC ACID ON COENZYME Q10, LIPID PEROXIDATION AND TRX mRNA IN RAT HIPPOCAMPUS  |
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5 |
The origins and uses of mouse outbred stocks.  |
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6 |
Effects of lnterleukin-2 on Various Models of Experimental Epilepsy in DBA/2 Mice  |
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7 |
Simultaneous calcium recordings of hippocampal CA1 and primary motor cortex M1 and their relations to behavioral activities in freely moving epileptic mice  |
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8 |
The adenosine A1 receptor agonist WAG 994 suppresses acute kainic acid-induced status epilepticus in vivo.  |
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9 |
Epileptic brain fluorescent imaging reveals apigenin can relieve the myeloperoxidase-mediated oxidative stress and inhibit ferroptosis  |
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10 |
Eltokhi A, Kurpiers B, Pitzer C. Behavioral tests assessing neuropsychiatric phenotypes in adolescent mice reveal strain- and sex-specific effects. Sci Rep. 2020;10:11263. |
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11 |
Susceptibility to seizure-induced sudden death in DBA/2 mice is altered by adenosine  |
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12 |
Cadmium induces iron deficiency anemia through the suppression of iron transport in the duodenum.  |
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13 |
Efficacy of Aerosolized Rifaximin versus Tobramycin for Treatment of Pseudomonas aeruginosa Pneumonia in Mice.  |
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14 |
Genetic regulatory network analysis reveals that low density lipoprotein receptor-related protein 11 is involved in stress responses in mice  |
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15 |
Comparison of seizure phenotype and neurodegeneration induced by systemic kainic acid in inbred, outbred, and hybrid mouse strains  |
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16 |
Differential susceptibility to seizures induced by systemic kainic acid treatment in mature DBA/2J and C57BL/6J mice.  |
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17 |
Spatial memory and hippocampal function  |
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18 |
Kainic Acid-induced neurotoxicity: targeting glial responses and glia-derived cytokines.  |
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19 |
Marchi N, Granata T, Janigro D. Inflammatory pathways of seizure disorders. Trends Neurosci. 2014;37:55–65. |
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20 |
Epilepsy and brain inflammation  |
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21 |
The role of cytokines in the pathophysiology of epilepsy  |
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22 |
Brain Inflammation in Epilepsy: Experimental and Clinical Evidence  |
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23 |
IL-12p35 deficiency alleviates kainic acid-induced hippocampal neurodegeneration in C57BL/6 mice  |
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24 |
TNF-alpha receptor 1 deficiency enhances kainic acid-induced hippocampal injury in mice.  |
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25 |
Inflammatory mechanisms associated with brain damage induced by kainic acid with special reference to the interleukin‐1 system  |
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26 |
IL-18 deficiency aggravates kainic acid-induced hippocampal neurodegeneration in C57BL/6 mice due to an overcompensation by IL-12  |
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