首页> 外文期刊>Physiology International: Acta Physiologica Hungarica >Instillation of bradykinin into femoral artery elicits cardiorespiratory reflexes involving perivascular afferents in anesthetized rats
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Instillation of bradykinin into femoral artery elicits cardiorespiratory reflexes involving perivascular afferents in anesthetized rats

机译:将Bradykinin滴注到股票动脉患者心脏动脉患者心脏射频反射,涉及麻省大鼠的血管内

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The physiology of baroreceptors and chemoreceptors present in large blood vessels of the heart is well known in the regulation of cardiorespiratory functions. Since large blood vessels and peripheral blood vessels are of the same mesodermal origin, therefore, involvement of the latter in the regulation of cardiorespiratory system is expected. The role of perivascular nerves in mediating cardiorespiratory alterations produced after intra-arterial injection of a nociceptive agent (bradykinin) was examined in urethane-anesthetized male rats. Respiratory frequency, blood pressure, and heart rate were recorded for 30 min after the retrograde injection of bradykinin/saline into the femoral artery. In addition, paw edema was determined and water content was expressed as percentage of wet weight. Injection of bradykinin produced immediate tachypneic, hypotensive and bradycardiac responses of shorter latency (5-8 s) favoring the neural mechanisms involved in it. Injection of equi-volume of saline did not produce any responses and served as time-matched control. Paw edema was observed in the ipsilateral hind limb. Pretreatment with diclofenac sodium significantly attenuated the bradykinin-induced responses and also blocked the paw edema. Ipsilateral femoral and sciatic nerve sectioning attenuated bradykinin-induced responses significantly, indicating the origin of responses from the local vascular bed. Administration of bradykinin in the segment of an artery produced reflex cardiorespiratory changes by stimulating the perivascular nociceptors involving prostaglandins. This is a novel study exhibiting the role of peripheral blood vessels in the regulation of the cardiorespiratory system.
机译:在心肺功能的调节中,心脏大血管中存在的丧失运动员和化学感受器的生理学。由于大型血管和外周血血管具有相同的中涂层来源,因此预期后者的参与预期在内景体系统的调节中。在氨基甲酸酯 - 麻醉的雄性大鼠中检查了血管内神经在介导后产生的动脉注射伤害剂(Bradykinin)后产生的心肺改变。将逆行注射Bradykinin /盐水进入股动脉后,呼吸频率,血压和心率记录30分钟。此外,确定爪子水肿,并表示水含量为湿重的百分比。 Bradykinin注射产生即时的Tachypneic,低度和心动过速应对较短的延迟(5-8秒),偏好参与其中的神经机制。注射Equi-体积的盐水没有产生任何反应并用作时间匹配的对照。在同侧后肢观察到爪子水肿。用双氯芬酸钠进行预处理,显着减弱了Bradykinin诱导的反应,并且还阻止了爪子水肿。同侧股骨和坐骨神经切片显着减弱了Bradykinin诱导的反应,表明来自局部血管床的反应起源。通过刺激涉及前列腺素的血管伤害者,在动脉段产生的Bradykinin施用在动脉段产生的反射心肺部普查。这是一种新的研究,表现出外周血管在心肺系统调节中的作用。

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