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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >Analgesic, antiallodynic, and anticonvulsant activity of novel hybrid molecules derived from N-benzyl-2-(2,5-dioxopyrrolidin-1-yl)propanamide and 2-(2,5-dioxopyrrolidin-1-yl)butanamide in animal models of pain and epilepsy
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Analgesic, antiallodynic, and anticonvulsant activity of novel hybrid molecules derived from N-benzyl-2-(2,5-dioxopyrrolidin-1-yl)propanamide and 2-(2,5-dioxopyrrolidin-1-yl)butanamide in animal models of pain and epilepsy

机译:衍生自N-苄基-2-(2,5-二恶烷吡咯烷蛋白-1-基)丙酰胺和2-(2,5-二恶烷吡咯烷-1-基)丁酰胺的新型杂化分子的镇痛,抗衰老和抗惊厥活性 疼痛和癫痫

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The purpose of the present study was to examine the analgesic activity of six novel hybrid molecules, which demonstrated in the previous research anticonvulsant activity in the maximal electroshock seizure (MES) and subcutaneous pentylenetetrazole seizure (scPTZ) tests in mice. The antinociceptive properties were estimated in three models of pain in mice-the hot plate test, the formalin test, and in the oxaliplatin-induced neuropathy. Moreover, extended anticonvulsant studies were carried out and the antiseizure activity was investigated in the 6-Hz test. Considering drug safety evaluation, the influence of compounds on locomotor activity and contextual memory were checked. Furthermore, chosen molecules were tested in vitro for potential hepatotoxicity. To explain the probable mechanism of action, the radioligand binding assays were performed. In both phases of formalin test, analgesic activity demonstrated compounds 4, 8, and 9. These agents relieved also mechanical allodynia in oxaliplatin-induced model of neuropathic pain. At active doses, they did not influence locomotor activity of mice. Moreover, for compounds 8 and 9, no deleterious effect on memory was observed, but compound 4 might induce memory deficits. All tested compounds (4, 5, 8, 9, 15, and 16) inhibited psychomotor seizures with the ED50 values = 24.66-47.21 mg/kg. The binding studies showed that compound 4 only at the high concentrations revealed the effective binding to the neuronal sodium channels and moderately binding to the L-type calcium (verapamil site) channels and NMDA receptors. The present preclinical results proved that novel hybrid molecules demonstrate very promising anticonvulsant and analgesic activity.
机译:本研究的目的是检查六种新型杂交分子的镇痛活性,其在先前的研究中的抗惊厥活性中证明了在小鼠中的最大闪管癫痫发作(MES)和皮下五烯酮四唑癫痫发作(SCPTZ)试验中。在小鼠的三种疼痛模型中估计抗血质性质 - 热板试验,福尔马林试验和奥沙利铂诱导的神经病变。此外,进行了扩展的抗惊厥药研究,并在6-Hz试验中研究了抗体激活。考虑到药物安全评估,检查了化合物对运动活性和语境记忆的影响。此外,在体外测试所选择的分子,用于潜在的肝毒性。为了解释可能的作用机制,进行了放射性配体结合测定。在福尔马林试验的两阶段中,镇痛活性证明了化合物4,8和9.这些试剂在奥沙利铂诱导的神经性疼痛模型中也缓解了机械异常性疼痛。在活性剂量上,它们没有影响小鼠的运动活性。此外,对于化合物8和9,没有对存储器的任何有害影响观察,但化合物4可能会引起记忆缺陷。所有测试的化合物(4,5,8,9,15和16)抑制了ED50值= 24.66-47.21mg / kg的精神咽部癫痫发作。结合研究表明,仅在高浓度下的化合物4显示与神经元钠通道的有效结合,并与L型钙(维拉帕米位点)通道和NMDA受体中等结合。本发明的临床前结果证明了新型杂化分子表现出非常有前途的抗惊厥和镇痛活性。

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