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March 16, 2007The Journal of Physiology37 citationsOpen Access

Circulating angiotensin II attenuates the sympathetic baroreflex by reducing the barosensitivity of medullary cardiovascular neurones in the rat

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SMSimon McMullanAGAnn K. GoodchildPPPaul M. Pilowsky

Structured PICO

Does circulating Angiotensin II acutely modulate central cardiovascular control mechanisms in rats?

P
Population
Anaesthetized rats under neuromuscular blockade
I
Intervention
Intravenous pressor doses of Angiotensin II (Ang II)
C
Comparator
Equipressor responses evoked by phenylephrine (PE)
O
Outcome
Baroinhibition of splanchnic sympathetic nerve activity and barosensitivity of bulbospinal neurones in the rostral ventrolateral medullasurrogate

Circulating Angiotensin II acutely modulates central cardiovascular control mechanisms by attenuating the sympathetic baroreflex.

Abstract

Chronic intravenous angiotensin II (Ang II) has been widely used to establish centrally mediated hypertension in experimental animals, and disruption of Ang II activity is a frontline treatment for hypertensive disease. However, the acute central actions of circulating Ang II are poorly understood. We examined the effects of intravenous pressor doses of Ang II on autonomic activity in anaesthetized rats under neuromuscular blockade, and compared baroinhibition evoked by Ang II pressor ramps to equipressor responses evoked by phenylephrine (PE). Baroinhibition of splanchnic sympathetic nerve activity was attenuated during Ang II trials compared with PE, and rats remained sensitive to electrical stimulation of the aortic depressor nerve at higher arterial pressures during Ang II trials. This was not due to a direct effect of Ang II on aortic nerve baroreceptors. In a separate series of experiments, we provide direct evidence that bulbospinal barosensitive neurones in the rostral ventrolateral medulla are differentially sensitive to pressure ramps evoked by Ang II or PE vasoconstriction. Nineteen out of 41 units were equally sensitive to increased arterial pressure evoked by Ang II or PE. In 17 of 41 units, barosensitivity was attenuated during Ang II trials, and in five of 41 cases units that had previously been barosensitive increased their firing rate during Ang II trials. These results show, for the first time, that circulating Ang II acutely modulates central cardiovascular control mechanisms. We suggest that this results from activation by Ang II of a central pathway originating at the circumventricular organs.

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McMullan et al. (2007) studied this question.

synapsesocial.com/papers/6a19b09b3f3ec013f0deed59https://doi.org/10.1113/jphysiol.2007.128983
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