Multiple mechanisms underlying the neuroprotective effects of antiepileptic drugs against in vitro ischemia

被引:90
作者
Costa, C
Martella, G
Picconi, B
Prosperetti, C
Pisani, A
Di Filippo, M
Pisani, F
Bernardi, G
Calabresi, P
机构
[1] Univ Perugia, Neurol Clin, Osped Silvestrini, I-06156 Perugia, Italy
[2] Fdn Santa Lucia, IRCCS, Rome, Italy
[3] Univ Roma Tor Vergata, Neurol Clin, Dipartimento Neurosci, Rome, Italy
[4] Univ Messina, Dipartimento Neurosci Psichiatria & Anestesiol, Messina, Italy
关键词
antiepileptic drugs; Ca2+; electrophysiology; ischemia; Na2+;
D O I
10.1161/01.STR.0000217303.22856.38
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background and Purpose-The possible neuroprotective effects of classic and new antiepileptic drugs on the electrophysiological changes induced by in vitro ischemia on striatal neurons were investigated. In particular, the aim of the study was to correlate the putative neuroprotective effects with the action of these drugs on fast sodium (Na+) and high-voltage-activated (HVA) calcium (Ca2+) currents. Methods-Extracellular field potentials were recorded from rat corticostriatal brain-slice preparations. In vitro ischemia was delivered by switching to an artificial cerebrospinal fluid solution in which glucose and oxygen were omitted. Na+ and HVA Ca2+ currents were analyzed by whole-cell patch-clamp recordings from acutely isolated rat striatal neurons. Excitatory postsynaptic potential was measured following synaptic stimulation in corticostriatal slices by sharp intracellular microelectrodes. Results-Neuroprotection against in vitro ischemia was observed in slices treated with carbamazepine (CBZ), valproic acid (VPA), and topiramate (TPM), whereas it was not achieved by using levetiracetam (LEV). Fast Na+ conductances were inhibited by CBZ and TPM, whereas VPA and LEV showed no effect. HVA Ca2+ conductances were reduced by CBZ, TPM, and LEV. VPA had no effect on this current. All antiepileptic drugs induced a small reduction of excitatory postsynaptic potential amplitude at concentrations higher than 100 mu m without changes of paired-pulse facilitation. Conclusions-The concomitant inhibition of fast Na+ and HVA Ca2+ conductances is critically important for the neuroprotection, whereas the presynaptic inhibition on glutamate transmission does not seem to play a major role.
引用
收藏
页码:1319 / 1326
页数:8
相关论文
共 35 条
[1]  
BARGAS J, 1994, J NEUROSCI, V14, P6667
[2]   Cellular factors controlling neuronal vulnerability in the brain - A lesson from the striatum [J].
Calabresi, P ;
Centonze, D ;
Bernardi, G .
NEUROLOGY, 2000, 55 (09) :1249-1255
[3]   Striatal spiny neurons and cholinergic interneurons express differential ionotropic glutamatergic responses and vulnerability: Implications for ischemia and Huntington's disease [J].
Calabresi, P ;
Centonze, D ;
Pisani, A ;
Sancesario, G ;
Gubellini, P ;
Marfia, GA ;
Bernardi, G .
ANNALS OF NEUROLOGY, 1998, 43 (05) :586-597
[4]   Antiepileptic drugs as a possible neuroprotective strategy in brain ischemia [J].
Calabresi, P ;
Cupini, LM ;
Centonze, D ;
Pisani, F ;
Bernardi, G .
ANNALS OF NEUROLOGY, 2003, 53 (06) :693-702
[5]   Synaptic plasticity in the ischaemic brain [J].
Calabresi, P ;
Centonze, D ;
Pisani, A ;
Cupini, LM ;
Bernardi, G .
LANCET NEUROLOGY, 2003, 2 (10) :622-629
[6]   Lamotrigine and remacemide protect striatal neurons against in vitro ischemia: an electrophysiological study [J].
Calabresi, P ;
Marti, M ;
Picconi, B ;
Saulle, E ;
Costa, C ;
Centonze, D ;
Pisani, F ;
Bernardi, G .
EXPERIMENTAL NEUROLOGY, 2003, 182 (02) :461-469
[7]   Post-ischaemic long-term synaptic potentiation in the striatum: a putative mechanism for cell type-specific vulnerability [J].
Calabresi, P ;
Saulle, E ;
Centonze, D ;
Pisani, A ;
Marfia, GA ;
Bernardi, G .
BRAIN, 2002, 125 :844-860
[8]   Is pharmacological neuroprotection dependent on reduced glutamate release? [J].
Calabresi, P ;
Picconi, B ;
Saulle, E ;
Centonze, D ;
Hainsworth, AH ;
Bernardi, G .
STROKE, 2000, 31 (03) :766-772
[9]   Electrophysiology of sipatrigine: A lamotrigine derivative exhibiting neuroprotective effects [J].
Calabresi, P ;
Stefani, A ;
Marfia, GA ;
Hainsworth, AH ;
Centonze, D ;
Saulle, E ;
Spadoni, F ;
Leach, MJ ;
Giacomini, P ;
Bernardi, G .
EXPERIMENTAL NEUROLOGY, 2000, 162 (01) :171-179
[10]   Ionic mechanisms underlying differential vulnerability to ischemia in striatal neurons [J].
Centonze, D ;
Marfia, GA ;
Pisani, A ;
Picconi, B ;
Giacomini, P ;
Bernardi, G ;
Calabresi, P .
PROGRESS IN NEUROBIOLOGY, 2001, 63 (06) :687-696