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October 31, 2007Clinical and Experimental Pharmacology and Physiology8 citations

Effect of Peripheral Sympathetic Nerve Dysfunction on Salt Sensitivity of Arterial Pressure

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JOJohn W. OsbornJCJohn P. CollisterPGPilar Guzmán

Key Result

Pharmacological blockade or destruction of peripheral sympathetic neural pathways did not cause statistically significant changes in mean arterial pressure during a high sodium diet in rats.

Structured PICO

Does pharmacological blockade of peripheral sympathetic nerve function cause salt-dependent hypertension in rats?

P
Population
Conscious rats (n=27)
I
Intervention
Pharmacological blockade of sympathetic nerve function (hexamethonium [n=5], guanethidine [n=7], prazosin [n=7], or terazosin [n=8]) followed by 7 days of high dietary sodium intake
C
Comparator
Baseline measurement during 5 days of normal dietary sodium intake
O
Outcome
Mean arterial pressure (MAP) and heart rate measured 24 h/day by radiotelemetrysurrogate

Pharmacological ablation or blockade of peripheral sympathetic neural pathways does not induce salt-dependent hypertension in rats.

Abstract

Dysregulation of peripheral sympathetic pathways contributes to some forms of salt-dependent hypertension. However, at the present time it is not known whether salt-induced activation of sympathetic nerves or loss of normal sympathoinhibitory responses to salt-induced volume expansion contributes to neurogenic salt-dependent hypertension. The present study was performed to the test the hypothesis that loss of peripheral sympathetic nerve function results in salt-dependent hypertension. 2. The effect of three pharmacological interventions of sympathetic nerve function on the long-term salt-sensitivity of mean arterial pressure (MAP) were measured: (i) blockade of ganglionic transmission with hexamethonium (HEX; n = 5); (ii) destruction of sympathetic nerve terminals with guanethidine (GUAN; n = 7); and (iii) alpha-adrenoceptor blockade with two specific antagonists, namely prazosin (PRAZ; n = 7) and terazosin (TERAZ; n = 8). 3. Mean arterial pressure and heart rate were measured 24 h/day by radiotelemetry in conscious rats during 5 days of normal and 7 days of high (HNa) dietary sodium intake. Despite marked increases in both sodium and water intake during 7 days of the HNa diet, no statistically significant changes in MAP were observed in HEX, GUAN, PRAZ or TERAZ groups. 4. We conclude that loss of peripheral sympathetic neural pathways alone does not cause salt-dependent hypertension in the rat.

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Cite This Study

Osborn et al. (2007) studied Salt-dependent hypertension (n=27). Hexamethonium, guanethidine, prazosin, or terazosin vs. Normal dietary sodium intake was evaluated on Mean arterial pressure (MAP). Pharmacological blockade or destruction of peripheral sympathetic neural pathways did not cause statistically significant changes in mean arterial pressure during a high sodium diet in rats.

synapsesocial.com/papers/6a192af82471b46e09d9588fhttps://doi.org/10.1111/j.1440-1681.2007.04827.x
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