Paroxetine suppresses recombinant human P2X7 responses

被引:0
|
作者
Phuong Dao-Ung
Kristen K. Skarratt
Stephen J. Fuller
Leanne Stokes
机构
[1] University of Sydney,Sydney Medical School Nepean
[2] Nepean Hospital,School of Pharmacy
[3] University of East Anglia,undefined
来源
Purinergic Signalling | 2015年 / 11卷
关键词
P2X7; Antidepressant; Paroxetine; Fluoxetine; Trifluoperazine; Interleukin 1β; ATP;
D O I
暂无
中图分类号
学科分类号
摘要
P2X7 receptor (P2X7) activity may link inflammation to depressive disorders. Genetic variants of human P2X7 have been linked with major depression and bipolar disorders, and the P2X7 knockout mouse has been shown to exhibit anti-depressive-like behaviour. P2X7 is an ATP-gated ion channel and is a major regulator of the pro-inflammatory cytokine interleukin 1β (IL-1β) secretion from monocytes and microglia. We hypothesised that antidepressants may elicit their mood enhancing effects in part via modulating P2X7 activity and reducing inflammatory responses. In this study, we determined whether common psychoactive drugs could affect recombinant and native human P2X7 responses in vitro. Common antidepressants demonstrated opposing effects on human P2X7-mediated responses; paroxetine inhibited while fluoxetine and clomipramine mildly potentiated ATP-induced dye uptake in HEK-293 cells stably expressing recombinant human P2X7. Paroxetine inhibited dye uptake mediated by human P2X7 in a concentration-dependent manner with an IC50 of 24 μM and significantly reduces ATP-induced inward currents. We confirmed that trifluoperazine hydrochloride suppressed human P2X7 responses (IC50 of 6.4 μM). Both paroxetine and trifluoperazine did not inhibit rodent P2X7 responses, and mutation of a known residue (F 95L) did not alter the effect of either drug, suggesting neither drug binds at this site. Finally, we demonstrate that P2X7-induced IL-1β secretion from lipopolysaccharide (LPS)-primed human CD14+ monocytes was suppressed with trifluoperazine and paroxetine.
引用
收藏
页码:481 / 490
页数:9
相关论文
共 50 条
  • [31] Allosteric modulation of human P2X7 receptor by clemastine
    Hempel, C.
    Urban, N.
    Sobottka, H.
    Noerenberg, W.
    Schaefer, M.
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2010, 381 : 17 - 17
  • [32] P2X7 targeting inhibits growth of human mesothelioma
    Amoroso, Francesca
    Salaro, Erica
    Falzoni, Simonetta
    Chiozzi, Paola
    Giuliani, Anna Lisa
    Cavallesco, Giorgio
    Maniscalco, Pio
    Puozzo, Andrea
    Bononi, Ilaria
    Martini, Fernanda
    Tognon, Mauro
    Di Virgilio, Francesco
    ONCOTARGET, 2016, 7 (31) : 49664 - 49676
  • [33] The P2X7 carboxyl tail is a regulatory module of P2X7 receptor channel activity
    Becker, Daniel
    Woltersdorf, Ronja
    Boldt, Wolfgang
    Schmitz, Stephan
    Braam, Ursula
    Schmalzing, Gurnther
    Markwardt, Fritz
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (37) : 25725 - 25734
  • [34] Targeting the P2X7 receptor in rheumatoid arthritis: biological rationale for P2X7 antagonism
    McInnes, I. B.
    Cruwys, S.
    Bowers, K.
    Braddock, M.
    CLINICAL AND EXPERIMENTAL RHEUMATOLOGY, 2014, 32 (06) : 878 - 882
  • [35] P2X7 polymorphisms and the role of P2X7 in graft-versus-host disease
    Adhikary, S.
    Geraghty, N.
    Belfiore, L.
    Alexander, S.
    Sluyter, R.
    Watson, D.
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2016, 46 : 725 - 725
  • [36] P2X7 receptors and klotho
    Robert Unwin
    Purinergic Signalling, 2020, 16 : 151 - 152
  • [37] Activation of P2X7 receptor suppresses the transport of glutamate in cultured spinal microglia
    Morioka, Norimitsu
    Abdin, Joynal
    Kitayama, Tomoya
    Morita, Katsuya
    Dohi, Toshihiro
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2007, 103 : 93P - 93P
  • [38] The Elusive P2X7 Macropore
    Di Virgilio, Francesco
    Schmalzing, Guenther
    Markwardt, Fritz
    TRENDS IN CELL BIOLOGY, 2018, 28 (05) : 392 - 404
  • [39] The P2X7 Receptor in Osteoarthritis
    Li, Zihao
    Huang, Ziyu
    Bai, Lunhao
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2021, 9
  • [40] The P2X7 Receptor in Autoimmunity
    Grassi, Fabio
    Salina, Gaia
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (18)