Effect of nilvadipine on the voltage-dependent Ca2+ channels in rat hippocampal CA1 pyramidal neurons

被引:29
作者
Ishibashi, H [1 ]
Murai, Y [1 ]
Akaike, N [1 ]
机构
[1] Kyushu Univ, Fac Med, Dept Physiol, Fukuoka 8128582, Japan
关键词
Ca2+ current; hippocampal CA1 region; pyramidal neuron; nilvadipine; amlodipine; flunarizine;
D O I
10.1016/S0006-8993(98)01018-X
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Effects of nilvadipine on the low- and high-voltage activated Ca2+ currents (LVA and HVA I-Ca, respectively) were compared with other organic Ca2+ antagonists in acutely dissociated rat hippocampal CAI pyramidal neurons. The inhibitory effects of nilvadipine, amlodipine and flunarizine on LVA I-Ca were concentration- and use-dependent. The apparent half-maximum inhibitory concentrations (IC(50)s) at every 1- and 30-s stimulation were 6.3 X 10(-7) M and 1.8 X 10(-6) M for flunarizine, 1.9 X 10(-6) M and 7.6 x 10(-6) M for nilvadipine, and 4.0 X 10(-6) M and 8.0 X 10(-6) M for amlodipine, respectively. Thus, the strength of the use-dependence was in the sequence of nilvadipine > flunarizine > amlodipine. Nilvadipine also inhibited the HVA I-Ca in a concentration-dependent manner with an IC50 of 1.5 X 10(-7) M. The hippocampal CA1 neurons were observed to have five pharmacologically distinct HVA Ca2+ channel subtypes consisting of L-, N-, P-, Q- and R-types. Nilvadipine selectively inhibited the L-type Ca2+ channel current which comprised 34% of the total HVA I-Ca. On the other hand, amlodipine non-selectively inhibited the HVA Ca2+ channel subtypes. These results suggest that the inhibitory effect of nilvadipine on the neuronal Ca2+ influx through both LVA and HVA. L-type Ca2+ channels, in combination with the cerebral vasodilatory action, may prevent neuronal damage during ischemia. (C) 1998 Published by Elsevier Science B.V. All rights reserved.
引用
收藏
页码:121 / 127
页数:7
相关论文
共 27 条
[11]   MUSCARINIC ACTIVATION OF IONIC CURRENTS MEASURED BY A NEW WHOLE-CELL RECORDING METHOD [J].
HORN, R ;
MARTY, A .
JOURNAL OF GENERAL PHYSIOLOGY, 1988, 92 (02) :145-159
[12]   REGIONAL DIFFERENCE OF HIGH VOLTAGE-ACTIVATED CA2+ CHANNELS IN RAT CNS NEURONS [J].
ISHIBASHI, H ;
RHEE, JS ;
AKAIKE, N .
NEUROREPORT, 1995, 6 (12) :1621-1624
[13]   SOMATOSTATIN MODULATES HIGH-VOLTAGE-ACTIVATED CA2+ CHANNELS IN FRESHLY DISSOCIATED RAT HIPPOCAMPAL-NEURONS [J].
ISHIBASHI, H ;
AKAIKE, N .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 74 (03) :1028-1036
[14]   Effect of nilvadipine on high-voltage activated Ca2+ channels in rat CNS neurons [J].
Ishibashi, H ;
Rhee, JS ;
Akaike, N .
NEUROREPORT, 1997, 8 (04) :853-857
[15]   PREVENTION OF DELAYED NEURONAL DEATH IN GERBIL HIPPOCAMPUS BY ION CHANNEL BLOCKERS [J].
IZUMIYAMA, K ;
KOGURE, K .
STROKE, 1988, 19 (08) :1003-1007
[16]  
KAWAMURA S, 1991, EXP BRAIN RES, V83, P434
[17]   EFFECT OF SINGLE ORAL-ADMINISTRATION OF NILVADIPINE ON CEREBRAL BLOOD-FLOW IN CHRONIC CEREBRAL INFARCTION [J].
KOBAYASHI, S ;
YAMAGUCHI, S ;
OKADA, K ;
SUYAMA, N ;
BOKURA, K ;
MURAO, M ;
TSUNEMATSU, T .
ANGIOLOGY, 1992, 43 (10) :801-809
[18]   NMDA-RECEPTOR ACTIVATION INCREASES CYTOPLASMIC CALCIUM-CONCENTRATION IN CULTURED SPINAL-CORD NEURONS [J].
MACDERMOTT, AB ;
MAYER, ML ;
WESTBROOK, GL ;
SMITH, SJ ;
BARKER, JL .
NATURE, 1986, 321 (6069) :519-522
[19]   P-TYPE CALCIUM CHANNELS IN RAT CENTRAL AND PERIPHERAL NEURONS [J].
MINTZ, IM ;
ADAMS, ME ;
BEAN, BP .
NEURON, 1992, 9 (01) :85-95
[20]   CALCIUM CHANNELS RESPONSIBLE FOR POTASSIUM-INDUCED TRANSMITTER RELEASE AT RAT CEREBELLAR SYNAPSES [J].
MOMIYAMA, A ;
TAKAHASHI, T .
JOURNAL OF PHYSIOLOGY-LONDON, 1994, 476 (02) :197-202