Ion channels and transporters in microglial function in physiology and brain diseases

被引:46
|
作者
Luo, Lanxin [1 ,2 ,3 ]
Song, Shanshan [2 ,3 ]
Ezenwukwa, Chibundum C. [2 ]
Jalali, Shayan [2 ]
Sun, Baoshan [4 ]
Sun, Dandan [2 ,3 ,5 ]
机构
[1] Northwestern Polytech Univ, Inst Med Res, Xian 710072, Shaanxi, Peoples R China
[2] Univ Pittsburgh, Dept Neurol, Pittsburgh, PA 15213 USA
[3] Univ Pittsburgh, Pittsburgh Inst Neurodegenerat Disorders, Pittsburgh, PA 15213 USA
[4] Inst Natl Invest Agr & Vet, IP, Polo DoisPortos, P-2565191 Quinta Da Almoinha, Doisportos, Portugal
[5] Vet Affairs Pittsburgh Hlth Care Syst, Geriatr Res Educ & Clin Ctr, Pittsburgh, PA 15213 USA
关键词
Brain diseases; Ion channels; Ion transporters; Intracellular Ca2+; Intracellular K+; Microglial activation;
D O I
10.1016/j.neuint.2020.104925
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Microglial cells interact with all components of the central nervous system (CNS) and are increasingly recognized to play essential roles during brain development, homeostasis and disease pathologies. Functions of microglia include maintaining tissue integrity, clearing cellular debris and dead neurons through the process of phagocytosis, and providing tissue repair by releasing anti-inflammatory cytokines and neurotrophic factors. Changes of microglial ionic homeostasis (Na+, Ca2+, K+, H+, Cl-) are important for microglial activation, including proliferation, migration, cytokine release and reactive oxygen species production, etc. These are mediated by ion channels and ion transporters in microglial cells. Here, we review the current knowledge about the role of major microglial ion channels and transporters, including several types of Ca2+ channels (store-operated Ca2+ entry (SOCE) channels, transient receptor potential (TRP) channels and voltage-gated Ca2+ channels (VGCCs)) and Na+ channels (voltage-gated Na+ channels (Nav) and acid-sensing ion channels (ASICs)), K+ channels (inward rectifier K+ channels (K-ir), voltage-gated K+ channels (K-V) and calcium-activated K+ channels (K-Ca)), proton channels (voltage-gated proton channel (Hv1)), and Cl- channels (volume (or swelling)-regulated Cl- channels (VRCCs) and chloride intracellular channels (CLICs)). In addition, ion transporter proteins such as Na+/Ca2+ exchanger (NCX), Na+-K+-Cl- cotransporter (NKCCl), and Na+/H+ exchanger (NHE1) are also involved in microglial function in physiology and brain diseases. We discussed microglial activation and neuroinflammation in relation to the ion channel/transporter stimulation under brain disease conditions and therapeutic aspects of targeting microglial ion channels/transporters for neurodegenerative disease, ischemic stroke, traumatic brain injury and neuropathic pain.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Ion channels and transporters on the move
    Schwab, A
    NEWS IN PHYSIOLOGICAL SCIENCES, 2001, 16 : 29 - 33
  • [22] Ion channels and transporters in osteoclasts
    Supanchart, Chayarop
    Kornak, Uwe
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2008, 473 (02) : 161 - 165
  • [23] Sodium channels and microglial function
    Black, Joel A.
    Waxman, Stephen G.
    EXPERIMENTAL NEUROLOGY, 2012, 234 (02) : 302 - 315
  • [24] IRBIT: A regulator of ion channels and ion transporters
    Ando, Hideaki
    Kawaai, Katsuhiro
    Mikoshiba, Katsuhiko
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2014, 1843 (10): : 2195 - 2204
  • [25] ABC Transporters in Pharmacology/Physiology and Human Diseases
    Chen, Zhe-Sheng
    CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2011, 12 (04) : 569 - 569
  • [26] Ion transporters in cardiovascular diseases
    Bril, A
    BIOFUTUR, 2003, (237) : 28 - +
  • [27] Ion channels in sperm physiology
    Darszon, A
    Labarca, P
    Nishigaki, T
    Espinosa, F
    PHYSIOLOGICAL REVIEWS, 1999, 79 (02) : 481 - 510
  • [28] Molecular physiology of renal ClC chloride channels/transporters
    Sile, Saba
    Vanoye, Carlos G.
    George, Alfred L., Jr.
    CURRENT OPINION IN NEPHROLOGY AND HYPERTENSION, 2006, 15 (05): : 511 - 516
  • [29] Cellular Physiology of Channels and Transporters in Gastrointestinal Tracts Foreword
    Saki, Hideki
    BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2011, 34 (06) : 783 - 783
  • [30] Cell Biology and Physiology of CLC Chloride Channels and Transporters
    Stauber, Tobias
    Weinert, Stefanie
    Jentsch, Thomas J.
    COMPREHENSIVE PHYSIOLOGY, 2012, 2 (03) : 1701 - 1744