Key result
Exenatide significantly reversed corticosterone-induced increases in mean arterial blood pressure in a rat model of metabolic syndrome, and reduced MAP by 5 ± 3 mmHg in normotensive control rats.
Why the study?
Does exenatide reduce mean arterial blood pressure in a rat model of corticosterone-induced metabolic syndrome?
Does exenatide reduce mean arterial blood pressure in a rat model of corticosterone-induced metabolic syndrome?
Exenatide demonstrates a durable antihypertensive effect in a glucocorticoid-induced rat model of metabolic syndrome, independent of weight change.
Hypothesis-generating for exenatide in metabolic syndrome hypertension; prospective human trials needed before clinical adoption.
BACKGROUND: Exenatide is a peptide incretin mimetic that has glucoregulatory actions associated with weight reduction. Previous reports demonstrated acute increases in blood pressure after systemic or intracerebroventricular administration of exenatide or glucagon like peptide 1 (GLP 1) in rats. However, there are limited studies testing the chronic effects of these peptides on arterial pressure and no reports showing the effects of these peptides to reverse hypertension in the context of the metabolic syndrome. METHODS: Thus, we examined the response to peripheral exenatide using telemetry in conscious, unrestrained rats under normotensive conditions and in a model of hypertension/metabolic syndrome induced by corticosterone. Rats were implanted with either corticosterone or wax (control) pellets, followed 14 days later by the additional implantation of pumps to deliver exenatide (1 microg/kg per day) or vehicle for 7 days. RESULTS: The 21-day corticosterone treatment produced hypertriglyceridemia, visceral fat deposition, hyperglycemia, insulin resistance, and an elevation of mean arterial blood pressure (MAP) by 14 +/- 1 mmHg. Exenatide significantly reversed corticosterone-induced increases in blood pressure and this normalization occurred independently from change in body weight. Additionally, exenatide reduced MAP by 5 +/- 3 mmHg in normotensive control rats. CONCLUSIONS: These results are the first demonstration of a durable antihypertensive effect of exenatide in a glucocorticoid-induced model of the metabolic syndrome.
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Laugero et al. (2009) studied Hypertension/metabolic syndrome. Exenatide vs. Vehicle was evaluated on Mean arterial blood pressure (MAP). Exenatide significantly reversed corticosterone-induced increases in mean arterial blood pressure in a rat model of metabolic syndrome, and reduced MAP by 5 ± 3 mmHg in normotensive control rats.
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