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Baicalein Exerts Neuroprotective Effects in FeCl3-Induced Posttraumatic Epileptic Seizures via Suppressing Ferroptosis

机译:黄ical素对FeCl3诱导的创伤后癫痫发作的抑制性肥大作用具有神经保护作用。

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摘要

Posttraumatic epilepsy (PTE) is a prevalent type of acquired epilepsy secondary to traumatic brain injury, and is characterized by repeated seizures. Traditional antiepileptic drugs have minimal response in preventing posttraumatic epileptic seizures. It is essential for the development of new therapeutic strategy. Our previous work disclosed a potent neuroprotective role of baicalein, a flavonoid extracted from Scutellaria baicalensis Georgi, against inherited epilepsy in rats. Whether baicalein has protective potential in posttraumatic epileptic seizures and the possible molecular mechanism remain elusive. Additionally, the brain is vulnerable to lipid peroxidation-induced damage due to high consumption of oxygen and abundant polyunsaturated fatty acids in neuronal membranes. Our present investigation aimed to elucidate whether baicalein exerts neuroprotective effects on posttraumatic epileptic seizures by inhibiting ferroptosis, a newly discovered lipid peroxidation-dependent cell death modality. We found that baicalein significantly reduced seizure score, number of seizures, and average seizure duration in an iron chloride (FeCl3)-induced PTE mouse model. The neuroprotective effect of baicalein was also validated in a ferric ammonium citrate (FAC)-induced HT22 hippocampal neuron damage model. Moreover, in vitro, baicalein could remarkably decrease ferroptotic indices (lipid reactive oxygen species, 4-hydroxynonenal, and prostaglandin endoperoxide synthase 2) and inhibit the expression of 12/15-lipoxygenase (12/15-LOX) in an iron-induced HT22 cell damage model. These findings were also validated in a mouse PTE model. It was concluded that baicalein exerted neuroprotective effects against posttraumatic epileptic seizures via suppressing ferroptosis and 12/15-LOX was likely to be involved in baicalein’s neuroprotection.
机译:创伤后癫痫(PTE)是脑外伤后继发性癫痫的一种普遍类型,其特征是反复发作。传统的抗癫痫药在预防创伤后癫痫发作中反应最小。这对于开发新的治疗策略至关重要。我们以前的工作揭示了黄ical素(一种从黄cut中提取的类黄酮)对大鼠遗传性癫痫的有效神经保护作用。黄ical素在创伤后癫痫发作中是否具有保护潜力以及可能的分子机制仍不清楚。此外,由于氧气的大量消耗和神经元膜中大量的多不饱和脂肪酸,大脑容易受到脂质过氧化诱导的损害。我们目前的研究旨在阐明黄ical素是否通过抑制ferroptosis(一种新发现的脂质过氧化依赖性细胞死亡方式)对创伤后癫痫发作发挥神经保护作用。我们发现黄ical素在氯化铁(FeCl3)诱导的PTE小鼠模型中显着降低了癫痫发作评分,癫痫发作次数和平均癫痫发作持续时间。在柠檬酸铁铵(FAC)诱导的HT22海马神经元损伤模型中也验证了黄ical素的神经保护作用。此外,在体外,黄ical素可显着降低铁的HT22(脂质反应性氧,4-羟基壬烯醛和前列腺素内过氧化物合酶2)并抑制铁诱导的HT22中12 / 15-脂加氧酶(12 / 15-LOX)的表达。细胞损伤模型。这些发现也已在小鼠PTE模型中得到验证。结论是,黄e素通过抑制ferroptosis对创伤后癫痫发作发挥神经保护作用,并且12 / 15-LOX可能参与了黄e素的神经保护作用。

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