Synthesis and biological evaluation of piperazine derivatives as novel isoform selective voltage-gated sodium (Nav) 1.3 channel modulators

被引:0
|
作者
Marko Jukič
Rok Frlan
Fiona Chan
Robert W. Kirby
David J. Madge
Jan Tytgat
Steve Peigneur
Marko Anderluh
Danijel Kikelj
机构
[1] University of Ljubljana,Faculty of Pharmacy
[2] Xention Limited,undefined
[3] University of Leuven (KULeuven),undefined
[4] Toxicology & Pharmacology O&N2,undefined
来源
关键词
Voltage-gated; Sodium channels; Na; channels; Na; channel modulators; Isoform selective modulators; Piperazine derivatives;
D O I
暂无
中图分类号
学科分类号
摘要
Sponges of the genus Agelas produce compounds that modulate the activity of voltage-gated sodium ion channels and contribute novel scaffolds for the development of compounds with activity against a plethora of biological targets. In particular, clathrodin and dibromosceptrin were reported to decrease the average maximum amplitude of inward sodium currents in isolated chick embryo sympathetic ganglia cells; we envisaged these compounds as a starting point to design novel Nav channel modulators. This endeavor was part of our long-term goal of designing a comprehensive library of Agelas alkaloid analogs that would cover a broader chemical space and allow us to examine the activity of such compounds on Nav channels. Our series of compounds was designed by maintaining the terminal structural features found in clathrodin while rigidizing the central part of the molecule and replacing the 3-aminopropene linker with a 4-methylenepiperazine moiety. Synthesised compounds were screened for inhibitory action against the human voltage-gated sodium channel isoforms Nav 1.3, Nav 1.4, cardiac Nav 1.5, and Nav 1.7 using an automated patch clamp electrophysiology technique. The results demonstrate that we have obtained a series of compounds with a modest but selective inhibitory activity against the Nav 1.3 channel isoform. The most potent compound showed selective activity against the Nav 1.3 channel isoform with an IC50 of 19 μM and is a suitable starting point for further development of selective Nav 1.3 channel modulators. Such compounds could prove to be beneficial as a pharmacological tool towards the development of novel therapeutically useful compounds in the treatment of pain.
引用
收藏
页码:2366 / 2380
页数:14
相关论文
共 50 条
  • [41] Nav1.9: A unique voltage-gated sodium channel with a role in inflammatory pain
    Theys, Margaux
    Bosmans, Frank
    BIOPHYSICAL JOURNAL, 2023, 122 (03) : 103A - 103A
  • [42] Veratridine modifies the gating of human voltage-gated sodium channel Nav1.7
    Xiao-yu Zhang
    Rui-yun Bi
    Peng Zhang
    Ye-hua Gan
    Acta Pharmacologica Sinica, 2018, 39 : 1716 - 1724
  • [43] Khellinone derivatives as blockers of the voltage-gated potassium channel Kv1.3:: Synthesis and immunosuppressive activity
    Baell, JB
    Gable, RW
    Harvey, AJ
    Toovey, N
    Herzog, T
    Hänsel, W
    Wulff, H
    JOURNAL OF MEDICINAL CHEMISTRY, 2004, 47 (09) : 2326 - 2336
  • [44] Effect of rufinamide on gating properties of voltage-gated sodium channel Nav1.7
    Suter, M. R.
    Abriel, H.
    Decosterd, I.
    SWISS MEDICAL WEEKLY, 2010, 140 : 9S - 10S
  • [45] Therapeutic targeting of voltage-gated sodium channel NaV1.7 for cancer metastasis
    Pukkanasut, Piyasuda
    Jaskula-Sztul, Renata
    Gomora, Juan Carlos
    Velu, Sadanandan E.
    FRONTIERS IN PHARMACOLOGY, 2024, 15
  • [46] Inhibitory effect of atomoxetine on Nav1.2 voltage-gated sodium channel currents
    Nakatani, Yoshihiko
    Ishikawa, Kanami
    Aoki, Yuko
    Shimooki, Takahiro
    Yamamoto, Naoki
    Amano, Taku
    PHARMACOLOGICAL REPORTS, 2023, 75 (03) : 746 - 752
  • [47] Veratridine modifies the gating of human voltage-gated sodium channel Nav1.7
    Zhang, Xiao-yu
    Bi, Rui-yun
    Zhang, Peng
    Gan, Ye-hua
    ACTA PHARMACOLOGICA SINICA, 2018, 39 (11) : 1716 - 1724
  • [48] Extracellular Proton Modulation of the Cardiac Voltage-Gated Sodium Channel, Nav1.5
    Jones, D. K.
    Peters, C. H.
    Tolhurst, S. A.
    Claydon, T. W.
    Ruben, P. C.
    BIOPHYSICAL JOURNAL, 2011, 101 (09) : 2147 - 2156
  • [49] Structure of the human voltage-gated sodium channel Nav1.4 in complex with β1
    Pan, Xiaojing
    Li, Zhangqiang
    Zhou, Qiang
    Shen, Huaizong
    Wu, Kun
    Huang, Xiaoshuang
    Chen, Jiaofeng
    Zhang, Juanrong
    Zhu, Xuechen
    Lei, Jianlin
    Xiong, Wei
    Gong, Haipeng
    Xiao, Bailong
    Yan, Nieng
    SCIENCE, 2018, 362 (6412)
  • [50] μ-Conotoxins Targeting the Human Voltage-Gated Sodium Channel Subtype NaV1.7
    McMahon, Kirsten L.
    Tran, Hue N. T.
    Deuis, Jennifer R.
    Craik, David J.
    Vetter, Irina
    Schroeder, Christina, I
    TOXINS, 2022, 14 (09)