Role of Nitric Oxide in the Cardiovascular System of South American Rattlesnakes (Crotalus durissus).

IF 1.8 3区 生物学 Q3 PHYSIOLOGY
Samanta Aparecida Castro, Edwin William Taylor, Driele Tavares, Renato Filogonio, Gerson Jhonatan Rodrigues, Cléo Alcantara Costa Leite
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引用次数: 2

Abstract

AbstractUnderstanding the basis of vascular tonus regulation is fundamental to comprehending cardiovascular physiology. In the present study, we used the recently developed decerebrate rattlesnake preparation to investigate the role of nitric oxide (NO) in the control of vascular tonus in a squamate reptile. This preparation allowed multiple concomitant cardiovascular parameters to be monitored, while avoiding the deleterious effect of anesthetic drugs on autonomic modulation. We observed that both systemic and pulmonary circuits were clearly responsive to NO signaling. NO increased vascular conductance in the systemic and pulmonary systems. Vasodilation by NO of the systemic circulation was compensated by cardiovascular alterations involving venous return, cardiac output, and cardiac shunt adjustments. The cardiac shunt seemed to be actively used for hemodynamic adjustments via modulation of the pulmonary artery constriction. N(ω)-nitro-L-arginine methyl ester injection demonstrated that NO contributes to modulating resting vasodilation in the systemic circuit. In contrast, NO-mediated vasodilation did not have an important role in the pulmonary circulation in inactive decerebrated snakes at 25°C. These responses vary importantly from those described for anesthetized snakes.

一氧化氮在南美响尾蛇(Crotalus durissus)心血管系统中的作用
摘要了解血管张力调节的基础是理解心血管生理学的基础。在本研究中,我们使用最近开发的去脑响尾蛇制剂来研究一氧化氮(NO)在控制血管张力中的作用。该制剂可以监测多种伴随的心血管参数,同时避免麻醉药物对自主神经调节的有害影响。我们观察到全身和肺回路都明显响应NO信号。一氧化氮增加全身和肺系统的血管传导。全身循环一氧化氮引起的血管舒张被包括静脉回流、心输出量和心分流调整在内的心血管改变所补偿。心脏分流术似乎通过调节肺动脉收缩积极用于血流动力学调节。N(ω)-硝基- l -精氨酸甲酯注射表明NO有助于调节全身回路的静息血管舒张。相比之下,no介导的血管舒张在25°C下无活性的去脑蛇的肺循环中没有重要作用。这些反应与麻醉蛇的反应有很大的不同。
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来源期刊
CiteScore
3.20
自引率
6.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches primarily publishes original research in animal physiology and biochemistry as considered from behavioral, ecological, and/or evolutionary perspectives. Studies at all levels of biological organization from the molecular to the whole organism are welcome, and work that integrates across levels of organization is particularly encouraged. Studies that focus on behavior or morphology are welcome, so long as they include ties to physiology or biochemistry, in addition to having an ecological or evolutionary context. Subdisciplines of interest include nutrition and digestion, salt and water balance, epithelial and membrane transport, gas exchange and transport, acid-base balance, temperature adaptation, energetics, structure and function of macromolecules, chemical coordination and signal transduction, nitrogen metabolism and excretion, locomotion and muscle function, biomechanics, circulation, behavioral, comparative and mechanistic endocrinology, sensory physiology, neural coordination, and ecotoxicology ecoimmunology.
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