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Antiobesity and emetic effects of a short-length peptide YY analog and its PEGylated and alkylated derivatives

机译:短长肽YY模拟及其聚乙二醇化和烷基化衍生物的抗菌性和辐射效应

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Graphical abstract Display Omitted Abstract Neuropeptide Y2 receptor (Y2R) agonism is an important anorectic signal and a target of antiobesity drug discovery. Recently, we synthesized a short-length Y2R agonist, PYY-1119 (4-imidazolecarbonyl-[ d -Hyp 24 ,Iva 25 ,Pya(4) 26 ,Cha 27,36 ,γMeLeu 28 ,Lys 30 ,Aib 31 ]PYY(23–36), 1 ) as an antiobesity drug candidate. Compound 1 induced marked body weight loss in diet-induced obese (DIO) mice; however, 1 also induced severe vomiting in dogs at a lower dose than the minimum effective dose administered to DIO mice. The rapid absorption of 1 after subcutaneous administration caused the severe vomiting. Polyethylene glycol (PEG)- and alkyl-modified derivatives of 1 were synthesized to develop Y2R agonists with improved pharmacokinetic profiles, i.e., lower maximum plasma concentration (C max ) and longer time at maximum concentration (T max ). Compounds 5 and 10 , modified with 20?kDa PEG at the N-terminus and eicosanedioic acid at the Lys 30 side chain of 1 , respectively, showed high Y2R binding affinity and induced significant body weight reduction upon once-daily administration to DIO mice. Compounds 5 and 10 , with their relatively low C max and long T max , partially attenuated emesis in dogs compared with 1 . These results indicate that optimization of pharmacokinetic properties of Y2R agonists is an effective strategy to alleviate emesis induced by Y2R agonism.
机译:图形摘要显示省略了抽象的神经肽Y2受体(Y2R)激动是一种重要的厌食式信号和抗菌药物发现的目标。最近,我们合成了短型Y2R激动剂Pyy-1119(4-咪唑癸酰基-[D-HYP 24,IVA 25,PyA(4)26,CHA 27,36,γmeleu28,Lys 30,Aib 31] Pyy( 23-36),1)作为抗菌药物候选物。化合物1在饮食诱导的肥胖(DIO)小鼠中诱导标记的体重减轻;然而,1也诱导狗的严重呕吐,比施用到DIO小鼠的最小有效剂量。皮下给药后1的快速吸收导致严重呕吐。合成聚乙二醇(PEG) - 和烷基改性的衍生物,以产生具有改善的药代动力学谱的Y 2R激动剂,即降低最大血浆浓度(C max)和最大浓度(t max)的较长时间。化合物5和10分别在Lys 30侧链的N-末端和氧赞酸在1的N-末端和氧赞酸中修饰,显示出高Y2R结合亲和力,并在每日施用到DIO小鼠时诱导体重减轻。化合物5和10,其相对较低的C max和长t max,与1相比,狗的部分衰减的呕吐。这些结果表明,Y2R激动剂的药代动力学性质的优化是减轻Y2R激动诱导的呕吐的有效策略。

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