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心脏而非肺部的感受器介导清醒兔对静脉注射苯基双胍的降压反应。

Cardiac but not pulmonary receptors mediate depressor response to IV phenyl biguanide in conscious rabbits.

作者信息

Bell L B, O'Hagan K P, Clifford P S

机构信息

Department of Anesthesiology, Medical College of Wisconsin, Milwaukee 53226.

出版信息

Am J Physiol. 1993 Jun;264(6 Pt 2):R1050-7. doi: 10.1152/ajpregu.1993.264.6.R1050.

Abstract

Phenyl biguanide (PBG) stimulates pulmonary and cardiac receptors in the cat and rabbit. Previous reports have suggested that pulmonary receptors mediate the reflex respiratory responses and cardiac receptors mediate the reflex hypotension and bradycardia. Using selective denervation of the lung (LDX) and intrapericardial procaine to block cardiac nerves (CDX), we investigated the specific role of pulmonary and cardiac receptors in the reflex response to PBG infusion (60 micrograms/kg iv) in the conscious rabbit. Breathing frequency, arterial pressure, heart rate, and renal sympathetic nerve activity (RSNA) were recorded before and after LDX and CDX. Before LDX and CDX, PBG infusion produced tachypnea, hypotension, and bradycardia. This was accompanied by a withdrawal of RSNA to a level not different from that evoked by ganglionic blockade. These responses were preserved after LDX but were abolished after CDX with intrapericardial procaine. Intrapericardial infusion of PBG produced no response. These results indicate that in conscious rabbits both the respiratory and cardiovascular responses to PBG infusion are mediated by cardiac receptors not accessible from the epicardial surface. Furthermore, the reflex hypotension is mediated largely by withdrawal of sympathetic nerve activity resulting in a decreased peripheral resistance.

摘要

苯双胍(PBG)可刺激猫和兔的肺及心脏感受器。以往的报道表明,肺感受器介导反射性呼吸反应,而心脏感受器介导反射性低血压和心动过缓。我们通过选择性去支配肺(LDX)和心包内注射普鲁卡因阻断心脏神经(CDX),研究了在清醒兔中肺和心脏感受器在对PBG输注(60微克/千克静脉注射)的反射反应中的具体作用。在LDX和CDX前后记录呼吸频率、动脉压、心率和肾交感神经活动(RSNA)。在LDX和CDX之前,PBG输注会导致呼吸急促、低血压和心动过缓。这伴随着RSNA降至与神经节阻断所诱发的水平无异的程度。这些反应在LDX后得以保留,但在心包内注射普鲁卡因进行CDX后被消除。心包内输注PBG未产生反应。这些结果表明,在清醒兔中,对PBG输注的呼吸和心血管反应均由心外膜表面无法触及的心脏感受器介导。此外,反射性低血压在很大程度上是由交感神经活动的撤回导致外周阻力降低所介导的。

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