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Peptide welding technology – A simple strategy for generating innovative ligands for G protein coupled receptors

机译:肽焊接技术 - 一种用于为G蛋白偶联受体产生创新配体的简单策略

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Highlights ? The PWT strategy allows the facile synthesis of tetrabranched peptides. ? In vitro PWT derivatives maintain the pharmacological features of parent peptides. ? In vivo PWT derivatives displayed high potency and particularly long lasting action. Abstract Based on their high selectivity of action and low toxicity, naturally occurring peptides have great potential in terms of drug development. However, the pharmacokinetic properties of peptides, in particular their half life, are poor. Among different strategies developed for reducing susceptibility to peptidases, and thus increasing the duration of action of peptides, the generation of branched peptides has been described. However, the synthesis and purification of branched peptides are extremely complicated thus limiting their druggability. Here we present a novel and facile synthesis of tetrabranched peptides acting as GPCR ligands and their in vitro and vivo pharmacological characterization. Tetrabranched derivatives of nociceptin/orphanin FQ (N/OFQ), N/OFQ related peptides, opioid peptides, tachykinins, and neuropeptide S were generated with the strategy named peptide welding technology (PWT) and characterized by high yield and purity of the desired final product. In general, PWT derivatives displayed a pharmacological profile similar to that of the natural sequence in terms of affinity, pharmacological activity, potency, and selectivity of action in vitro . More importantly, in vivo studies demonstrated that PWT peptides are characterized by increased potency associated with long lasting duration of action. In conclusion, PWT derivatives of biologically active peptides can be viewed as innovative pharmacological tools for investigating those conditions and states in which selective and prolonged receptor stimulation promotes beneficial effects.
机译:强调 ? PWT策略允许平坦肽的容易合成。还体外PWT衍生物维持亲本肽的药理特征。还体内PWT衍生品显示出高效力,特别是持久的行动。摘要基于它们对动作和低毒性的高选择性,天然存在的肽在药物发育方面具有很大的潜力。然而,肽的药代动力学特性,特别是它们的半衰期差。在用于减少对肽酶的易感性的不同策略中,因此增加了肽的作用持续时间,已经描述了支链肽的产生。然而,支化肽的合成和纯化非常复杂,从而限制了它们的可用性。在这里,我们提出了一种具有作为GPCR配体及其体外和体内药理学表征的十四步肽的新颖和体内合成。用命名肽焊接技术(PWT)的策略产生伤虫蛋白/孤儿林FQ(N / OFQ),N / OF相关肽,阿片类药物和神经肽S的四胞外衍生物,并通过所需决赛的高产率和纯度表征产品。通常,PWT衍生物显示出类似于亲和力,药理活性,效力,在体外作用的作用的选择性方面的药理学曲线。更重要的是,体内研究表明,PWT肽的特征在于与长期持续的作用持续时间相关的效力增加。总之,生物活性肽的PWT衍生物可以被视为用于研究选择性和长期受体刺激促进有益效果的那些条件和状态的创新药理学工具。

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