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Analgesic Neuropeptide W Suppresses Seizures in the Brain Revealed by Rational Repositioning and Peptide Engineering

机译:镇痛性神经肽W抑制了通过合理定位和肽工程技术揭示的脑部癫痫发作

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摘要

Anticonvulsant neuropeptides play an important role in controlling neuronal excitability that leads to pain or seizures. Based on overlapping inhibitory mechanisms, many anticonvulsant compounds have been found to exhibit both analgesic and antiepileptic activities. An analgesic neuropeptide W (NPW) targets recently deorphanized G-protein coupled receptors. Here, we tested the hypothesis that the analgesic activity of NPW may lead to the discovery of its antiepileptic properties. Indeed, direct administration of NPW into the brain potently reduced seizures in mice. To confirm this discovery, we rationally designed, synthesized, and characterized NPW analogues that exhibited anticonvulsant activities following systemic administration. Our results suggest that the combination of neuropeptide repositioning and engineering NPW analogues that penetrate the blood-brain barrier could provide new drug leads, not only for the treatment of epilepsy and pain but also for studying effects of this peptide on regulating feeding and energy metabolism coupled to leptin levels in the brain.
机译:抗惊厥神经肽在控制导致疼痛或癫痫发作的神经元兴奋性中起重要作用。基于重叠的抑制机制,已发现许多抗惊厥化合物同时表现出止痛和抗癫痫活性。镇痛神经肽W(NPW)靶向最近去孤儿的G蛋白偶联受体。在这里,我们测试了NPW的镇痛活性可能导致其抗癫痫特性发现的假设。确实,直接将NPW注入大脑可有效减少小鼠的癫痫发作。为了证实这一发现,我们合理设计,合成和表征了在全身给药后表现出抗惊厥活性的NPW类似物。我们的研究结果表明,神经肽重新定位和穿透血脑屏障的工程化NPW类似物的结合可以提供新的药物线索,不仅可以用于治疗癫痫和疼痛,还可以研究该肽在调节饮食和能量代谢方面的作用。在大脑中的瘦素水平。

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