Melatonin Pretreatment Protects Against Status epilepticus, Glutamate Transport, and Oxidative Stress Induced by Kainic Acid in Zebrafish

氧化应激 褪黑素 神经保护 谷氨酸的 斑马鱼 谷氨酸受体 药理学 化学 红藻氨酸 内科学 内分泌学 SOD2 兴奋毒性 癫痫 癫痫持续状态 超氧化物歧化酶 生物 医学 生物化学 神经科学 受体 基因
作者
Ana Caroline Salvador de Farias,Karolyne de Pieri Pickler,Henrique Teza Bernardo,Samira Leila Baldin,Eduardo Ronconi Dondossola,Eduardo Pacheco Rico
出处
期刊:Molecular Neurobiology [Springer Science+Business Media]
卷期号:59 (1): 266-275 被引量:11
标识
DOI:10.1007/s12035-021-02579-4
摘要

Status epilepticus (SE) develops from abnormal electrical discharges, resulting in neuronal damage. Current treatments include antiepileptic drugs. However, the most common drugs used to treat seizures may sometimes be ineffective and have many side effects. Melatonin is an endogenous physiological hormone that is considered an alternative treatment for neurological disorders because of its free radical scavenging property. Thus, this study aimed to determine the effects of melatonin pretreatment on SE by inducing glutamatergic hyperstimulation in zebrafish. Seizures were induced in zebrafish using kainic acid (KA), a glutamate analog, and the seizure intensity was recorded for 60 min. Melatonin treatment for 7 days showed a decrease in seizure intensity (28%), latency to reach score 5 (14 min), and duration of SE (29%). In addition, melatonin treatment attenuated glutamate transporter levels, which significantly decreased in the zebrafish brain after 12 h of KA-induced seizures. Melatonin treatment reduced the increase in oxidative stress by reactive oxygen species formation through thiobarbituric acid reactive substances and 2',7'-dichiorofluorescin, induced by KA-seizure. An imbalance of antioxidant enzyme activities such as superoxide dismutase and catalase was influenced by melatonin and KA-induced seizures. Our study indicates that melatonin promotes a neuroprotective response against the epileptic profile in zebrafish. These effects could be related to the modulation of glutamatergic neurotransmission, recovery of glutamate uptake, and oxidative stress parameters in the zebrafish brain.
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