Lee Yeon Sun, Remesic Michael, Ramos-Colon Cyf, Hall Sara M, Kuzmin Alexander, Rankin David, Porreca Frank, Lai Josephine, Hruby Victor J
Department of Chemistry and Biochemistry, University of Arizona, Tucson, AZ 85721, USA.
Department of Chemistry and Biochemistry, University of Arizona, Tucson, AZ 85721, USA.
Bioorg Med Chem Lett. 2016 Nov 15;26(22):5513-5516. doi: 10.1016/j.bmcl.2016.10.010. Epub 2016 Oct 6.
Nerve injury and inflammation cause up-regulation of an endogenous opioid ligand, dynorphin A (Dyn A), in the spinal cord resulting in hyperalgesia via the interaction with bradykinin receptors (BRs). This is a non-opioid neuroexcitatory effect that cannot be blocked by opioid antagonists. Our systematic structure-activity relationships study on Dyn A identified lead ligands 1 and 4, along with the key structural feature (i.e. amphipathicity) for the BRs. However, the ligands showed very low metabolic stability in plasma (t <1h) and therefore, in order to improve their metabolic stabilities with retained biological activities, various modifications were performed. Cyclization of ligand 4 afforded a cyclic Dyn A analogue 5 that retained the same range of binding affinity as the linear ligand with improved metabolic stability (t >5h) and therefore possesses the potential as a pharmacophoric scaffold to be utilized for drug development.
神经损伤和炎症会导致脊髓中内源性阿片样物质配体强啡肽A(Dyn A)上调,通过与缓激肽受体(BRs)相互作用导致痛觉过敏。这是一种非阿片样神经兴奋作用,不能被阿片拮抗剂阻断。我们对Dyn A进行的系统构效关系研究确定了先导配体1和4,以及BRs的关键结构特征(即两亲性)。然而,这些配体在血浆中的代谢稳定性非常低(t<1小时),因此,为了在保留生物活性的同时提高它们的代谢稳定性,我们进行了各种修饰。配体4的环化得到了一种环状Dyn A类似物5,它保留了与线性配体相同范围的结合亲和力,同时代谢稳定性得到改善(t>5小时),因此具有作为药效基团支架用于药物开发的潜力。