Hall Sara M, LeBaron Lindsay, Ramos-Colon Cyf, Qu Chaoling, Xie Jennifer Yanhua, Porreca Frank, Lai Josephine, Lee Yeon Sun, Hruby Victor J
Department of Chemistry and Biochemistry, University of Arizona , Tucson, Arizona 85721, United States.
Department of Pharmacology, University of Arizona , Tucson, Arizona 85719, United States.
ACS Chem Neurosci. 2016 Dec 21;7(12):1746-1752. doi: 10.1021/acschemneuro.6b00258. Epub 2016 Sep 27.
Dynorphin A (Dyn A) is a unique endogenous ligand that possesses well-known neuroinhibitory effects via opioid receptors with a preference for the kappa receptor but also neuroexcitatory effects, which cause hyperalgesia. We have shown that the neuroexcitatory effects are mediated through bradykinin (BK) receptors and that intrathecal (i.th.) administration of our lead ligand 1, [des-Arg]-Dyn A-(4-11), which shows good binding affinity (IC = 150 nM) at the BK receptors, blocks Dyn A-induced hyperalgesia in naïve animals and reverses thermal and tactile hypersensitivities in a dose-dependent manner in nerve-injured animals. However, 1 has a serious drawback as a potential drug candidate for the treatment of neuropathic pain because of its susceptibility to enzymatic degradation. In an effort to increase its stability, we modified ligand 1 using non-natural amino acids and found that analogues substituted at or near the N-terminus with a d-isomer retain binding at the receptor and provide a large increase in stability. In particular when Leu was modified, with either the d-isomer or N-methylation, there was a large increase in stability (t = 0.7-160 h in rat plasma) observed. From these studies, we have developed a very stable Dyn A analogue 16, [d-Leu,des-Arg]-Dyn A-(4-11), that binds to BK receptors (IC = 130 nM) in the same range as ligand 1 and shows good antihyperalgesic effects in both naïve rats and L/L spinal nerve ligation rats.
强啡肽A(Dyn A)是一种独特的内源性配体,它通过对κ受体具有偏好性的阿片受体发挥众所周知的神经抑制作用,但也具有神经兴奋作用,可导致痛觉过敏。我们已经表明,神经兴奋作用是通过缓激肽(BK)受体介导的,并且鞘内(i.th.)给予我们的先导配体1,[去精氨酸]-Dyn A-(4-11),其在BK受体上显示出良好的结合亲和力(IC = 150 nM),可阻断未处理动物中Dyn A诱导的痛觉过敏,并在神经损伤动物中以剂量依赖性方式逆转热和触觉超敏反应。然而,1作为治疗神经性疼痛的潜在药物候选物存在一个严重缺陷,即它易受酶促降解。为了提高其稳定性,我们使用非天然氨基酸修饰配体1,发现用d-异构体在N-末端或其附近进行取代的类似物保留了在受体上的结合,并使稳定性大幅提高。特别是当Leu用d-异构体或N-甲基化进行修饰时,观察到稳定性有大幅提高(在大鼠血浆中的t = 0.7 - 160小时)。通过这些研究,我们开发了一种非常稳定的Dyn A类似物16,[d-亮氨酸,去精氨酸]-Dyn A-(4-11),它与BK受体结合(IC = 130 nM),与配体1处于相同范围,并且在未处理的大鼠和L/L脊髓神经结扎大鼠中均显示出良好的抗痛觉过敏作用。