Thyroid status influences baroreflex function and autonomic contributions to arterial pressure and heart rate.
نویسندگان
چکیده
The effect of thyroid status on arterial baroreflex function and autonomic contributions to resting blood pressure and heart rate (HR) were evaluated in conscious rats. Rats were rendered hyperthyroid (Hyper) or hypothyroid (Hypo) with triiodothyronine and propylthiouracil treatments, respectively. Euthyroid (Eut), Hyper, and Hypo rats were chronically instrumented to measure mean arterial pressure (MAP), HR, and lumbar sympathetic nerve activity (LSNA). Baroreflex function was evaluated with the use of a logistic function that relates LSNA or HR to MAP during infusion of phenylephrine and sodium nitroprusside. Contributions of the autonomic nervous system to resting MAP and HR were assessed by blocking autonomic outflow with trimethaphan. In Hypo rats, the arterial baroreflex curve for both LSNA and HR was shifted downward. Hypo animals exhibited blunted sympathoexcitatory and tachycardic responses to decreases in MAP. Furthermore, the data suggest that in Hypo rats, the sympathetic influence on HR was predominant and the autonomic contribution to resting MAP was greater than in Eut rats. In Hyper rats, arterial baroreflex function generally was similar to that in Eut rats. The autonomic contribution to resting MAP was not different between Hyper and Eut rats, but predominant parasympathetic influence on HR was exhibited in Hyper rats. The results demonstrate baroreflex control of LSNA and HR is attenuated in Hypo but not Hyper rats. Thyroid status alters the balance of sympathetic to parasympathetic tone in the heart, and the Hypo state increases the autonomic contributions to resting blood pressure.
منابع مشابه
Heart rate variability and spontaneous baroreflex sequences: implications for autonomic monitoring during hemorrhage.
BACKGROUND Noninvasive procedures for predicting progression to hemodynamic instability during induced central hypovolemia in humans were evaluated. The purpose of this study was twofold: (1) to track changes in autonomic function induced by a model of hemorrhage, and (2) to determine whether measures of autonomic function are reliable without strict control of breathing. METHODS Electrocardi...
متن کاملاثر استروژن و پروژسترون بر حساسیت بارورفلکسها در شرایط حاد فشار خون در موشهای صحرایی
Background: Epidemiological studies suggested that incidence of cardiovascular diseases in menopause women is more than their nonmenopausal period. The cardioprotective role of estrogen may be responsible for some of these effects. In the present study we evaluated the role of female sex hormones on baroreflex sensitivity in acute hypertension state of rat. Materials and Methods: This was an...
متن کاملتحریک الکتریکی هسته دسته منزوی ، حساسیت بارورفلکس را در رت های معتاد به مورفین افزایش می دهد
The previous studies have shown that the endogenous opiate system depress the baroreflex sensitivity in morphine dependent persons. Nucleus Tractus Soloitarii(NTS) is the main termination site of baroreceptor afferent neurons. The aim of this study was to determine the role of electrical stimulation of Nucleus Tractus Soloitarii on baroreflex sensitivity in morphine...
متن کاملنقش استروژن بر روی حساسیت بارورفلکس از طریق سیستم اتونومیک در موش های صحرایی نر
Introduction & Objective :Studies have shown that estrogen has important cardiovascular protective role. Nucleus tractus solitarii (NTS) is the termination point for all afferent of baroreceptor fibers that is important in regulation of heart function and circulation. For recognizing the estrogen mechanisms the role of estrogen through autonomic system in NTS have been evaluated. Hypertension...
متن کاملSOD1 Overexpression Preserves Baroreflex Control of Heart Rate with an Increase of Aortic Depressor Nerve Function
Overproduction of reactive oxygen species (ROS), such as the superoxide radical (O2 (∙-)), is associated with diseases which compromise cardiac autonomic function. Overexpression of SOD1 may offer protection against ROS damage to the cardiac autonomic nervous system, but reductions of O2 (∙-) may interfere with normal cellular functions. We have selected the C57B6SJL-Tg (SOD1)2 Gur/J mouse as a...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- American journal of physiology. Heart and circulatory physiology
دوره 280 5 شماره
صفحات -
تاریخ انتشار 2001