Neuroprotectant minocycline depresses glutamatergic neurotransmission and Ca2+ signalling in hippocampal neurons

被引:94
作者
Gonzalez, Jose Carlos
Egea, Javier
del Carmen Godino, Maria
Fernandez-Gomez, Francisco J.
Sanchez-Prieto, Jose
Gandia, Luis
Garcia, Antonio G.
Jordan, Joaquin
Hernandez-Guijo, Jesus M.
机构
[1] Univ Autonoma Madrid, Inst Teofilo Hernando, E-28029 Madrid, Spain
[2] Univ Autonoma Madrid, Fac Med, Dept Farmacol & Terapeut, E-28029 Madrid, Spain
[3] Univ Complutense, Fac Vet, Dept Bioquim, Madrid, Spain
[4] Univ Autonoma Madrid, Fac Med, Hosp Univ Princesa, Serv Farmacol Clin, Madrid, Spain
[5] Univ Castilla La Mancha, Fac Med, Dept Ciencias Med, Grp Neurofarmacol, Albacete, Spain
[6] Ctr Reg Invest Biomed, Albacete, Spain
关键词
glutamate release; synaptic transmission; tetracycline;
D O I
10.1111/j.1460-9568.2007.05873.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The mechanism of the neuroprotective action of the tetracycline antibiotic minocycline against various neuron insults is controversial. In an attempt to clarify this mechanism, we have studied here its effects on various electrophysiological parameters, Ca2+ signalling, and glutamate release, in primary cultures of rat hippocampal neurons, and in synaptosomes. Spontaneous excitatory postsynaptic currents and action potential firing were drastically decreased by minocycline at concentrations known to afford neuroprotection. The drug also blocked whole-cell inward Na+ currents (I-Na) by 20%, and the whole-cell Ca2+ current (I-Ca) by about 30%. Minocycline inhibited glutamate-evoked elevation of the cytosolic Ca2+ concentration ([Ca2+](c)) by nearly 40%, and K+-evoked glutamate release from synaptosomes by 63%. Minocycline also depressed the frequency and amplitude of spontaneous excitatory postsynaptic currents, but did not affect the whole-cell inward current elicited by gamma-aminobutyric acid or glutamate. This pharmacological profile suggests that the neuroprotective effects of minocycline might be associated with the mitigation of neuronal excitability, glutamate release, and Ca2+ overloading.
引用
收藏
页码:2481 / 2495
页数:15
相关论文
共 45 条
[1]   Minocycline inhibits poly(ADP-ribose) polymerase-1 at nanomolar concentrations [J].
Alano, Conrad C. ;
Kauppinen, Tiina M. ;
Valls, Andreu Viader ;
Swanson, Raymond A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (25) :9685-9690
[2]  
Attur MG, 1999, J IMMUNOL, V162, P3160
[3]   Microglia-mediated neurotoxicity: uncovering the molecular mechanisms [J].
Block, Michelle L. ;
Zecca, Luigi ;
Hong, Jau-Shyong .
NATURE REVIEWS NEUROSCIENCE, 2007, 8 (01) :57-69
[4]   Clinical potential of minocycline for neurodegenerative disorders [J].
Blum, D ;
Chtarto, A ;
Tenenbaum, L ;
Brotchi, J ;
Levivier, M .
NEUROBIOLOGY OF DISEASE, 2004, 17 (03) :359-366
[5]   Minocycline inhibits caspase-1 and caspase-3 expression and delays mortality in a transgenic mouse model of Huntington disease [J].
Chen, M ;
Ona, VO ;
Li, MW ;
Ferrante, RJ ;
Fink, KB ;
Zhu, S ;
Bian, J ;
Guo, L ;
Farrell, LA ;
Hersch, SM ;
Hobbs, W ;
Vonsattel, JP ;
Cha, JHJ ;
Friedlander, RM .
NATURE MEDICINE, 2000, 6 (07) :797-+
[6]   Inhibition of thrombin-induced microglial activation and NADPH oxidase by minocycline protects dopaminergic neurons in the substantia nigra in vivo [J].
Choi, SH ;
Lee, DY ;
Chung, ES ;
Hong, YB ;
Kim, SU ;
Jin, BK .
JOURNAL OF NEUROCHEMISTRY, 2005, 95 (06) :1755-1765
[7]   REDUCTION OF CENTRAL-NERVOUS-SYSTEM REPERFUSION INJURY IN RABBITS USING DOXYCYCLINE TREATMENT [J].
CLARK, WM ;
CALCAGNO, FA ;
GABLER, WL ;
SMITH, JR ;
COULL, BM .
STROKE, 1994, 25 (07) :1411-1415
[8]   Neuroprotective potential of ionotropic glutamate receptor antagonists [J].
Danysz, Wojciech ;
Parsons, Chris G. .
NEUROTOXICITY RESEARCH, 2002, 4 (02) :119-126
[9]   Deleterious effects of minocycline in animal models of Parkinson's disease and Huntington's disease [J].
Diguet, E ;
Fernagut, PO ;
Wei, X ;
Du, YS ;
Rouland, R ;
Gross, C ;
Bezard, E ;
Tison, F .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2004, 19 (12) :3266-3276
[10]   Neuroprotection by tetracyclines [J].
Domercq, M ;
Matute, C .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2004, 25 (12) :609-612