Investigation Of Structure-Activity Relationships With Molecular Docking For Some Antiepileptic Drugs And Voltage-Gated Calcium (CaV) Channels

E. Çakmak, M. Gür, B. Kiran
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Abstract

In the study, the active drugs molecules used in the treatment of convulsive seizures occurring in epilepsy disease were used. These molecules; Vigabatrin, Lokosamidin, Zonisamide, Oxcarbazepine, Levetiracetam, Tiagabin, Topiramate, Lamotrigine, Gabapentin, Felbamate, Ethosuximide, Valproic Acid, Mesuximide, Ethotoin, Primidone, Trimethadion, Phenytoin, Remasemide, Mephenytoin. These molecules have been selected considering the physiopathological mechanisms of action of epilepsy. Since the selected molecules are used as a potential antiepileptic agent, they were deemed suitable for molecular insertion studies. In addition, voltage-gated calcium channels, which play an important role in epilepsy, are emphasized. Voltage-gated calcium channels (CaV) act by providing the flow of Ca+ ions during the action potential that triggers seizure formation, and among the ten subtypes of voltage-gated calcium (CaV) channels, CaV3.1- CaV3.3, T-type or abnormal activities are associated with epilepsy, psychiatric form the associated low-voltage-activated subfamily. For this reason, the PDB ID: 6KZP receptor, which acts as an antagonist according to its activity on the channel in the formation of epileptic seizures, was chosen for the molecular insertion study. As a result of molecular placement studies; Oxcarbazepine and Phenytoin gave the best binding affinity for 6KZP with a value of -7.5 kcal/mol. Other results are in descending order (in kcal/mol); Tiagabine (-7.4), Mesuximide (-7.3), Primidone (-7.1), Remasemide (-7.0), Topiramate (-6.9) Mephenytoin (-6.7), Lomotrigine and Ethotoin (-6.4), Locosamide and Zonisamide (-6.1) , Felbamate (-6.0), Levetiracetam and Gabapentin (-5.4), Esuximide (-5.1), Valproic Acid (-4.9), Trimethadione (-4.7), Vigabatrin (-4.4) determined as.
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一些抗癫痫药物与电压门控钙离子通道分子对接的构效关系研究
在这项研究中,使用了用于治疗癫痫疾病中发生的惊厥发作的活性药物分子。这些分子;维加巴林、洛科沙脒、唑尼沙胺、奥卡西平、左乙拉西坦、替加加滨、托吡酯、拉莫三嗪、加巴喷丁、非胺酸酯、乙氧亚胺、丙戊酸、甲氧亚胺、乙氧亚胺、普米酮、甲美沙酮、苯妥英、雷马塞米、美苯妥英。这些分子的选择考虑了癫痫的生理病理机制。由于所选分子被用作潜在的抗癫痫剂,因此它们被认为适合于分子插入研究。此外,还强调了在癫痫中起重要作用的电压门控钙通道。电压门控钙通道(CaV)的作用是在动作电位期间提供钙离子的流动,从而触发癫痫发作的形成,在10种电压门控钙通道亚型中,CaV3.1- CaV3.3、t型或异常活动与癫痫、精神病相关,形成相关的低压激活亚家族。因此,PDB ID: 6KZP受体根据其在癫痫发作形成通道上的活性作为拮抗剂,被选择用于分子插入研究。作为分子放置研究的结果;苯妥英和奥卡西平对6KZP的结合亲和力最高,为-7.5 kcal/mol。其他结果按降序排列(单位:千卡/摩尔);替加滨(-7.4),美苏昔胺(-7.3),Primidone (-7.1), Remasemide(-7.0),托吡酯(-6.9),甲苯妥英(-6.7),洛莫三嗪和乙托英(-6.4),Locosamide和Zonisamide (-6.1), Felbamate(-6.0),左乙拉西坦和加巴喷丁(-5.4),Esuximide(-5.1),丙戊酸(-4.9),Trimethadione (-4.7), Vigabatrin(-4.4)测定为:
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