Department of Pharmacology and Toxicology, Faculty of Pharmacy, Cairo University, Kasr El Aini St, Cairo, Egypt.
J Pharm Pharmacol. 2021 Mar 27;73(5):626-640. doi: 10.1093/jpp/rgab011.
As one of the most frequent worldwide neurological disorders, epilepsy is an alteration of the central nervous system (CNS) characterized by abnormal increases in neuronal electrical activity. The mammalian target of rapamycin (mTOR) signalling pathway has been investigated as an interesting objective in epilepsy research. Vinpocetine (VNP), a synthesized derivative of the apovincamine alkaloid, has been used in different cerebrovascular disorders. This study aimed to examine the modulatory effects of VNP on neurobehavioral comorbidities via the mTOR signalling pathway in a lithium-pilocarpine (Li-Pil) rat model of seizures.
In male Wistar rats, seizures were induced with a single administration of pilocarpine (60 mg/kg; i.p.) 20 hours after the delivery of a single dose of lithium (3 mEq/kg; i.p.). VNP (10 mg/kg; i.p.) was administered daily for 14 consecutive days before Li-Pil administration.
VNP had a protective effect against Li-Pil-induced seizures. VNP improved both the locomotor and cognitive abilities, moreover, VNP exerted a neuroprotective action, as verified histologically and by its inhibitory effects on hippocampal glutamate excitotoxicity, mTOR pathway, and inflammatory and apoptotic parameters.
VNP is a valuable candidate for epilepsy therapy via its modulation of the mechanisms underlying epileptogenesis with emphasis on its modulatory effect on mTOR signalling pathway.
癫痫是一种最常见的全球神经系统疾病,是中枢神经系统(CNS)的改变,其特征是神经元电活动异常增加。哺乳动物雷帕霉素靶蛋白(mTOR)信号通路已被研究作为癫痫研究的一个有趣的目标。长春西汀(VNP)是阿朴长春胺生物碱的合成衍生物,已用于治疗不同的脑血管疾病。本研究旨在通过锂-匹罗卡品(Li-Pil)大鼠癫痫模型中 mTOR 信号通路,研究 VNP 对神经行为合并症的调节作用。
雄性 Wistar 大鼠在单次腹腔注射匹罗卡品(60mg/kg)后 20 小时,给予单次锂(3mEq/kg;腹腔注射),诱导癫痫发作。Li-Pil 给药前连续 14 天每日腹腔注射 VNP(10mg/kg)。
VNP 对 Li-Pil 诱导的癫痫发作有保护作用。VNP 改善了运动和认知能力,此外,VNP 还发挥了神经保护作用,这可通过组织学和对海马谷氨酸兴奋性毒性、mTOR 通路以及炎症和凋亡参数的抑制作用来证实。
VNP 通过调节癫痫发生的机制,是一种有价值的癫痫治疗候选药物,其重点是对 mTOR 信号通路的调节作用。