SEW2871 reduces seizures via the sphingosine 1-phosphate receptor-1 pathway in the pentylenetetrazol and phenobarbitone kindling model of drug-refractory epilepsy

IF 2.9 4区 医学 Q2 Medicine
Ashish Jain, Arti Ralta, Gitika Batra, Rupa Joshi, Nitika Garg, Alka Bhatia, Bikash Medhi, Amitava Chakrabarti, Ajay Prakash
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Abstract

Epilepsy is a prevalent neurological disorder characterized by neuronal hypersynchronous discharge in the brain, leading to central nervous system (CNS) dysfunction. Despite the availability of anti-epileptic drugs (AEDs), resistance to AEDs is the greatest challenge in treating epilepsy. The role of sphingosine-1-phosphate-receptor 1 (S1PR1) in drug-resistant epilepsy is unexplored. This study investigated the effects of SEW2871, a potent S1PR1 agonist, on a phenobarbitone (PHB)-resistant pentylenetetrazol (PTZ)-kindled Wistar rat model. We measured the messenger ribonucleic acid (mRNA) expression of multi-drug resistance 1 (MDR1) and multi-drug resistance protein 5 (MRP5) as indicators for drug resistance. Rats received PHB + PTZ for 62 days to develop a drug-resistant epilepsy model. From day 48, SEW2871 (0.25, 0.5, 0.75 mg/kg, intraperitoneally [i.p.]) was administered for 14 days. Seizure scoring, behaviour, oxidative markers like reduced glutathione, catalase, superoxide dismutase, inflammatory markers like interleukin 1 beta tumour necrosis factor alpha, interferon gamma and mRNA expression (MDR1 and MRP5) were assessed, and histopathological assessments were conducted. SEW2871 demonstrated dose-dependent improvements in seizure scoring and neurobehavioral parameters with a reduction in oxidative and inflammation-induced neuronal damage. The S1PR1 agonist also downregulated MDR1 and MRP5 gene expression and significantly decreased the number of dark-stained pyknotic nuclei and increased cell density with neuronal rearrangement in the rat brain hippocampus. These findings suggest that SEW2871 might ameliorate epileptic symptoms by modulating drug resistance through downregulation of MDR1 and MRP5 gene expression.

Abstract Image

SEW2871通过1-磷酸鞘氨醇受体-1途径减少药物难治性癫痫戊四唑和苯巴比妥点滴模型中的癫痫发作
癫痫是一种常见的神经系统疾病,其特点是大脑神经元过度同步放电,导致中枢神经系统(CNS)功能障碍。尽管有抗癫痫药物(AED),但抗药性是治疗癫痫的最大挑战。鞘氨醇-1-磷酸受体1(S1PR1)在耐药性癫痫中的作用尚未得到研究。本研究探讨了强效 S1PR1 激动剂 SEW2871 对苯巴比妥(PHB)耐药戊四唑(PTZ)诱发的 Wistar 大鼠模型的影响。我们测量了作为耐药性指标的多重耐药1(MDR1)和多重耐药蛋白5(MRP5)的信使核糖核酸(mRNA)表达。大鼠接受 PHB + PTZ 治疗 62 天,以建立耐药性癫痫模型。从第48天开始,连续14天腹腔注射SEW2871(0.25、0.5、0.75 mg/kg,i.p.)。对癫痫发作评分、行为、氧化指标(如还原型谷胱甘肽、过氧化氢酶、超氧化物歧化酶)、炎症指标(如白细胞介素1β、肿瘤坏死因子α、干扰素γ和mRNA表达(MDR1和MRP5))进行了评估,并进行了组织病理学评估。SEW2871 对癫痫发作评分和神经行为参数有剂量依赖性的改善,同时减少了氧化和炎症引起的神经元损伤。这种 S1PR1 激动剂还能下调 MDR1 和 MRP5 基因的表达,并显著减少大鼠大脑海马中暗色染色的脓细胞核数量,增加细胞密度和神经元重排。这些研究结果表明,SEW2871可通过下调MDR1和MRP5基因的表达来调节耐药性,从而改善癫痫症状。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
128
审稿时长
6 months
期刊介绍: Clinical and Experimental Pharmacology and Physiology is an international journal founded in 1974 by Mike Rand, Austin Doyle, John Coghlan and Paul Korner. Our focus is new frontiers in physiology and pharmacology, emphasizing the translation of basic research to clinical practice. We publish original articles, invited reviews and our exciting, cutting-edge Frontiers-in-Research series’.
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