首页> 外文期刊>Pharmacology: International Journal of Experimental and Clinical Pharmacology >Angiotensin-induced enhancement of excitatory junction potentials evoked by periarteriolar nerve stimulation and vasoconstriction in rat mesenteric arteries are both mediated by the angiotensin at1 receptor.
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Angiotensin-induced enhancement of excitatory junction potentials evoked by periarteriolar nerve stimulation and vasoconstriction in rat mesenteric arteries are both mediated by the angiotensin at1 receptor.

机译:血管紧张素诱导的大鼠肠系膜动脉小动脉周围神经刺激和血管收缩引起的兴奋性连接电位的增强均由血管紧张素at1受体介导。

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摘要

The aims of the present study were to determine the angiotensin II (AngII) receptor subtype(s) involved in vasoconstriction and enhancement of sympathetic neurotransmission in rat isolated mesenteric arteries. Vasoconstriction was assessed in mesenteric artery ring preparations suspended under 0.5 g of tension in a myograph. In control arteries, with an intact endothelium, AngII (1 nmol/l-3 &mgr;mol/l) caused a concentration-dependent contraction. The pEC(50) for AngII was 7.6 +/- 0.2 and the maximum response of 0.24 +/- 0.07 g was reached with 100 nmol/l. In the presence of indomethacin (3.0 &mgr;mol/l) and N(omega)-nitro-L-arginine (NOLA) (100 &mgr;mol/l) to remove the influence of endothelium-derived prostaglandins and nitric oxide, the maximum response evoked by AngII was increased to 0.48 +/- 0.1 g and the pEC(50) was 7.6 +/- 0.3. The AT1 receptor antagonist losartan (30 nmol/l) competitively blocked the AngII-induced contractions with an estimated pA(2) of 8.2 in both the control arteries and in arteries treated with indomethacin and NOLA. The AT2 receptor antagonist PD 123319 (1 &mgr;mol/l) did not affect AngII-induced contractions under either condition. Conventional intracellular microelectrode recording techniques were used to investigate the effects of AngII on excitatory junction potentials (EJP) evoked by stimulation of periarteriolar sympathetic nerves. Stimulation with trains of 10 pulses delivered at 0.9 Hz evoked EJP which were blocked by tetrodotoxin (0.1 &mgr;mol/l), guanethidine (30 &mgr;mol/l) and the P(2X) receptor desensitizing agent alpha,beta-methylene ATP (30 &mgr;mol/l) suggesting the EJP were mediated by ATP, or a related purine, released from sympathetic nerves. AngII (0.3- 100 nmol/l) did not affect the resting membrane potential or the amplitude of the first EJP, but did enhance the amplitude of the plateau EJP later in the train. A maximum 49.2 +/- 3.9% enhancement of the plateau EJP amplitude was elicited by 10 nmol/l AngII and the pEC(50) was 9.1 +/- 0.1. The facilitatory effect of AngII on EJP amplitude was not altered in the presence of indomethacin and NOLA. Losartan (30 nmol/l) competitively blocked the AngII-induced enhancement of plateau EJP amplitude, with an estimated pA(2) of 8.6. PD 123319 did not alter the enhancement of plateau EJP amplitude by AngII. The results from the present study show that both the vasoconstriction and enhancement of plateau EJP amplitude by AngII in rat mesenteric arteries are blocked by the AT1 receptor antagonist losartan and are unaffected by the AT2 receptor antagonist PD 123319. Copyright 2001 S. Karger AG, Basel
机译:本研究的目的是确定参与大鼠肠系膜动脉血管收缩和交感神经传递增强的血管紧张素II(AngII)受体亚型。在肌电图仪中以0.5 g张力悬挂的肠系膜动脉环制剂评估了血管收缩。在具有完整内皮的对照动脉中,AngII(1 nmol / l-3&mgr; mol / l)引起浓度依赖性的收缩。 AngII的pEC(50)为7.6 +/- 0.2,使用100 nmol / l达到的最大响应为0.24 +/- 0.07 g。在消炎痛(3.0 mg / mol / l)和N(硝基)-硝基-L-精氨酸(NOLA)(100 mg / mol / l)的存在下,可消除内皮源性前列腺素和一氧化氮的影响AngII引起的反应增加至0.48 +/- 0.1 g,pEC(50)为7.6 +/- 0.3。 AT1受体拮抗剂氯沙坦(30 nmol / l)在对照动脉以及用消炎痛和NOLA治疗的动脉中均以8.2的pA(2)估计阻断AngII诱导的收缩。 AT2受体拮抗剂PD 123319(1 mg / mol / l)在两种情况下均不影响AngII诱导的收缩。使用常规的细胞内微电极记录技术来研究AngII对刺激小动脉周围交感神经引起的兴奋性连接电位(EJP)的影响。以0.9 Hz的频率发出的10个脉冲序列刺激引起EJP,其被河豚毒素(0.1 mg / mol / l),胍乙啶(30 mg / mol / l)和P(2X)受体脱敏剂α,β-亚甲基ATP阻断(30μmol/ l)暗示EJP是由从交感神经释放的ATP或相关的嘌呤介导的。 AngII(0.3-100 nmol / l)不会影响静息膜电位或第一个EJP的振幅,但会在以后的火车中增强平台EJP的振幅。 10 nmol / l AngII引起高原EJP振幅最大增加49.2 +/- 3.9%,pEC(50)为9.1 +/- 0.1。在吲哚美辛和NOLA存在下,AngII对EJP振幅的促进作用没有改变。氯沙坦(30 nmol / l)竞争性地阻断了AngII诱导的高原EJP振幅增强,估计pA(2)为8.6。 PD 123319并未改变AngII对高原EJP幅度的增强作用。本研究的结果表明,Ang1对大鼠肠系膜动脉的血管收缩和高原EJP幅度增强均被AT1受体拮抗剂氯沙坦阻断,而不受AT2受体拮抗剂PD 123319的影响。版权所有2001 S. Karger AG,巴塞尔

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