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Study 8 of 31Vasopressin literatureJournal of hypertension · Observational2011

The pressor and renal sympathetic nerve responses to vascular and spinal V1 receptor activation after manipulation of dietary sodium intake.

High sodium intake appears to enhance the body's responses to vasopressin, while low sodium intake may suppress these responses, indicating a complex relationship between diet and blood pressure regulation.

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Where it sits

this study against the rest of the vasopressin corpus
7
Preclinical
21
Observational · this one
1
Open-label
1
Randomised
1
Reviews

Summary and findings

This study examined the effects of dietary sodium intake on pressor and renal sympathetic nerve responses to vasopressin in male Wistar rats. Low (0.03%) and high (3.0%) sodium diets were administered from weaning (4 weeks) to adulthood (11 weeks). The findings indicated that high sodium intake enhanced responses to vasopressin, while low sodium intake suppressed these responses.

How much of this paper we could read: full text read (0.70). We had a clear abstract, so the summary below closely tracks the paper. What this means →
Dose-dependent increases in MAP were observed with intravenous vasopressin (1-10 ng 0.2 ml), P<0.001.2011

Abstract

The authors’ words, as Journal of hypertension supplied them

<h4>Objective</h4>Excessive dietary Na intake can enhance the autonomic control of blood pressure, but the physiological mechanisms are unclear. This study examined how low (0.03%) and high (3.0%) dietary Na intake, from weaning (4 weeks) to adulthood (11 weeks), altered the pressor and renal sympathoexcitatory responses to peripheral and spinal V1 receptor activation.<h4>Methods</h4>Mean arterial pressure (MAP) and renal sympathetic nerve activity (RSNA) were monitored in α-chloralose/urethane anaesthetized male Wistar rats.<h4>Results</h4>Dose-dependent increases in MAP were observed in all groups to intravenous (i.v.) vasopressin [arginine vasopressin (AVP); 1-10 ng 0.2 ml] and phenylephrine (1-10 μg 0.2 ml), and in the high Na group, these responses were enhanced but to a greater extent for AVP than phenylephrine (P<0.001). A direct dose-dependent rise in RSNA to intrathecal (10 μl) AVP (1-100 μmol/l) and glutamate (10-100 mmol/l) was observed in the normal Na group. The RSNA responses were enhanced in the high Na group at lower doses of intrathecal AVP (1 μmol/l, P<0.01; 5 μmol/l, P<0.05) and all doses of glutamate (P<0.001) compared to the normal Na group. In the low Na group, the RSNA responses to intrathecal AVP were suppressed, but those to intrathecal glutamate were enhanced compared to normal Na (P<0.001) and similar to the high Na group.<h4>Conclusion</h4>These data demonstrated that high Na enhanced peripheral and spinal V1-mediated responses. Interestingly, low Na intake blunted the spinal V1-mediated RSNA responses, but sensitized those to spinal glutamate, which may be a compensatory mechanism to ensure adequate neural control of the kidney when dietary Na intake is reduced.

Background

Not reported in abstract.

Methods

Not reported in abstract.

Results

Not reported in abstract.

Interpretation

Not reported in abstract.

Limitations

Not reported in abstract.

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