NEUROPHARMACOLOGICAL CHARACTERIZATION OF VOLTAGE-SENSITIVE CALCIUM CHANNELS - POSSIBLE EXISTENCE OF NEOMYCIN-SENSITIVE, OMEGA-CONOTOXIN GVIA- AND DIHYDROPYRIDINES-RESISTANT CALCIUM CHANNELS IN THE RAT-BRAIN

被引:22
作者
YAMADA, K
TERAOKA, T
MORITA, S
HASEGAWA, T
NABESHIMA, T
机构
[1] NAGOYA UNIV,SCH MED,DEPT NEUROPSYCHOPHARMACOL,NAGOYA 466,JAPAN
[2] NAGOYA UNIV,SCH MED,HOSP PHARM,NAGOYA 466,JAPAN
[3] OTSUKA PHARMACEUT CO LTD,TOKUSHIMA INST NEW DRUG RES 3,TOKUSHIMA 77101,JAPAN
关键词
CALCIUM CHANNEL (N-TYPE; L-TYPE); OMEGA-CONOTOXIN GVIA; NEOMYCIN; CA2+ INFLUX;
D O I
10.1254/jjp.63.423
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
We attemped to characterize the functional roles of subtypes of voltage-sensitive calcium channels in the brain. The maximal number of [I-125]omega-conotoxin GVIA (omega-CTX) binding sites in rat brain associated with N-type calcium channels (N-channels) was approximately 10 times more than that of [H-3]-PN200-110 associated with L-type calcium channels (L-channels). [I-125]omega-CTX binding was inhibited by aminoglycoside antibiotics, neomycin and dynorphin A(1-13), but not by various classes of L-channel antagonists. A 6-hydroxydopamine-induced lesion of the striatum resulted in a marked reduction of both [(125)1]-omega-CTX and [H-3]PN200-110 binding. Kainic acid-induced lesion of the striatum reduced [H-3]PN200-110 binding by 57%, but did not reduce [I-125]omega-CTX binding. omega-CTX produced a small (18%) but significant reduction of potassium-stimulated Ca2+ influx into rat brain synaptosomes, although it produced a concentration-dependent inhibition in chick brain synaptosomes. Neomycin inhibited Ca2+ influx in both preparations in a concentration-dependent manner. Both omega-CTX and neomycin inhibited potassium-stimulated [H-3]dopamine (DA) release from rat striatal slices. The L-channel antagonists had no effect on either Ca2+ influx or [H-3]DA release. These results suggest that DA release in the striatum is regulated by Ca2+ influx through N-channels located in presynaptic nerve terminals, and that the most of the Ca2+ influx in rat brain appears to be governed by neomycin-sensitive, omega-CTX- and DHP-resistant calcium channels.
引用
收藏
页码:423 / 432
页数:10
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