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延髓腹外侧头端区注射肾上腺髓质素对大鼠血压、心率和肾交感神经活动的影响(英文) 被引量:7

Microinjection of adrenomedullin into rostral ventrolateral medulla increases blood pressure, heart rate and renal sympathetic nerve activity in rats
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摘要 本研究在 3 4只麻醉Sprague Dawley大鼠观察了延髓腹外侧头端区内微量注射肾上腺髓质素 ( 10μmol/L ,2 0 0nl)对平均动脉压 (MAP)、心率 (HR)和肾交感神经放电 (RSNA)的影响。实验结果如下 :( 1)延髓腹外侧头端区内微量注射肾上腺髓质素可引起MAP、HR、和RSNA明显增加 ,分别由 99 0 9± 3 3 2mmHg ,3 70 78± 7 84bpm和 10 0± 0 %增至 113 5 7± 3 64mmHg (P <0 0 0 1) ,3 83 2 8± 7 3 8bpm (P <0 0 0 1)和 12 3 72±2 74% (P <0 0 0 1) ;( 2 )降钙素基因相关肽受体阻断剂CGRP8 3 7( 10 0 μmol/L ,2 0 0nl)不能阻断肾上腺髓质素的上述效应 ;( 3 )静脉注射NO前体L 精氨酸 ( 10 0mg/kg ,0 2ml)可消除肾上腺髓质素的上述效应。以上结果提示 ,肾上腺髓质素作用于延髓腹外侧头端区可产生显著的心血管作用 ,此作用不是由降钙素基因相关肽受体介导 。 The present study was undertaken to examine the effects of microinjection of adrenomedullin (AM) into rostral ventrolateral medulla (RVLM) on mean arterial pressure (MAP), heart rate (HR) and renal sympathetic nerve activity (RSNA) in 34 anesthetized Sprague-Dawley rats. The results obtained are as follows. (1) Following microinjection of AM (10 μmol/L, 200 nl) into the RVLM, MAP, HR and RSNA were significantly increased from 99.09±3.32 mmHg, 370.78±7.84 bpm and 100±0% to 113.57±3.64 mmHg (P<0.001), 383.28±7.38 bpm (P<0.001) and 123.72±2.74% (P<0.001), respectively. (2) Pretreatment with microinjection of calcitonin gene-related peptide receptor antagonist CGRP8-37 (100 μmol/L, 200 nl) did not change the effects of AM. (3) L-arginine (100 mg/kg, 0.2 ml, i.v.), an NO precursor, abolished the effects of AM. This study demonstrates that AM acting at the rostral ventrolateral medulla may produce significant cardiovascular responses, the effects are not mediated by CGRP receptor but may be abolished by NO.
出处 《生理学报》 CAS CSCD 北大核心 2002年第6期460-466,共7页 Acta Physiologica Sinica
关键词 延髓腹外侧头端区 注射 肾上腺髓质素 大鼠 血压 心率 肾交感神经 降钙素基因相关肽受体拮抗剂 L-精氨酸 adrenomedullin rostral ventrolateral medulla mean arterial pressure heart rate renal sympathetic nerve calcitonin gene-related peptide receptor antagonist L-arginine
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  • 1季淑梅,王泽民,李学平,何瑞荣.侧脑室注射肾上腺髓质素增加大鼠心血管相关核团中c-fos的表达并激活脑内一氧化氮神经元(英文)[J].生理学报,2004,56(3):328-334. 被引量:4
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