Hosono M, Fujii S, Hiruma T, Watanabe K, Hayashi Y, Ohnishi H, Takata Y, Kato H
Pharmaceuticals Research Laboratories, Fujirebio Inc., Tokyo, Japan.
Jpn J Pharmacol. 1995 Oct;69(2):127-34. doi: 10.1254/jjp.69.127.
We reported previously that cilnidipine inhibited increases in blood pressure and plasma norepinephrine (NE) level in response to cold stress in spontaneously hypertensive rats (SHRs). In the present study, we investigated the effect of cilnidipine on sympathetic neurotransmission and subsequent vasoconstriction in SHRs. In pithed SHRs, electrical sympathetic nerve stimulation (ESNS) elevated blood pressure, and this pressor response was abolished by guanethidine. Cilnidipine at 10 micrograms/kg, i.v. and phentolamine at 1 mg/kg, i.v. suppressed the pressor response to ESNS by 28 +/- 6% and 67 +/- 3%, respectively. Neither nifedipine nor nicardipine inhibited it. The pressor response to exogenous NE was not influenced by cilnidipine. alpha, beta-Methylene ATP inhibited the pressor response to ESNS in the presence or absence of phentolamine. Cilnidipine also attenuated the phentolamine-resistant pressor response to ESNS. In SHR mesenteric vasculatures preloaded with [3H]-NE, cilnidipine (10(-7) M) as well as omega-conotoxin significantly inhibited the 3H overflow evoked by periarterial nerve stimulation. In radioligand binding experiments, cilnidipine inhibited [125I]-omega-conotoxin binding to rat synaptosomes, but it did not inhibit [3H]-prazosin binding to rat cortex membranes. These results suggest that cilnidipine may reduce electrically stimulated NE release from the sympathetic nerve endings of SHR vasculatures probably through its N-type Ca channel blocking action and that cilnidipine may also inhibit the vasoconstriction induced by ATP released concomitantly during nerve stimulation.
我们之前报道过,西尼地平可抑制自发性高血压大鼠(SHR)对冷应激的血压升高和血浆去甲肾上腺素(NE)水平升高。在本研究中,我们研究了西尼地平对SHR交感神经传递及随后血管收缩的影响。在脊髓横断的SHR中,电刺激交感神经(ESNS)可升高血压,而胍乙啶可消除这种升压反应。静脉注射10微克/千克的西尼地平和静脉注射1毫克/千克的酚妥拉明分别使对ESNS的升压反应抑制28±6%和67±3%。硝苯地平和尼卡地平均未抑制该反应。西尼地平对外源性NE的升压反应无影响。α,β-亚甲基ATP在有或无酚妥拉明存在时均抑制对ESNS的升压反应。西尼地平也减弱了对ESNS的酚妥拉明抵抗性升压反应。在预先加载[3H]-NE的SHR肠系膜血管中,西尼地平(10^(-7) M)以及ω-芋螺毒素均显著抑制动脉周围神经刺激引起的3H溢出。在放射性配体结合实验中,西尼地平抑制[125I]-ω-芋螺毒素与大鼠突触体的结合,但不抑制[3H]-哌唑嗪与大鼠皮质膜的结合。这些结果表明,西尼地平可能通过其N型钙通道阻断作用减少SHR血管交感神经末梢电刺激引起的NE释放,并且西尼地平还可能抑制神经刺激期间伴随释放的ATP诱导的血管收缩。