Key result
In utero exposure to maternal diabetes increased mean arterial pressure (137 vs 119 mmHg) and enhanced sympathetic and nitrergic innervation activity in the superior mesenteric artery of adult male offspring.
Why the study?
Does exposure to a diabetic intrauterine environment alter perivascular innervation function in mesenteric arteries of offspring?
Does exposure to a diabetic intrauterine environment alter perivascular innervation function in mesenteric arteries of offspring?
Absolute Event Rate: 137% vs 119%
p-value: p=<0.05
Exposure to a diabetic intrauterine environment increases sympathetic and nitrergic innervation activity in the superior mesenteric artery of offspring, which may contribute to increased blood pressure.
Maternal diabetes may program offspring hypertension via vascular innervation; hypothesis-generating for human risk, requires confirmation.
BACKGROUND AND PURPOSE: We have reported that exposure to a diabetic intrauterine environment during pregnancy increases blood pressure in adult offspring, but the mechanisms involved are not completely understood. This study was designed to analyse a possible role of perivascular sympathetic and nitrergic innervation in the superior mesenteric artery (SMA) in this effect. EXPERIMENTAL APPROACH: Diabetes was induced in pregnant Wistar rats by a single injection of streptozotocin. Endothelium-denuded vascular rings from the offspring of control (O-CR) and diabetic rats (O-DR) were used. Vasomotor responses to electrical field stimulation (EFS), NA and the NO donor DEA-NO were studied. The expressions of neuronal NOS (nNOS) and phospho-nNOS (P-nNOS) and release of NA, ATP and NO were determined. Sympathetic and nitrergic nerve densities were analysed by immunofluorescence. KEY RESULTS: Blood pressure was higher in O-DR animals. EFS-induced vasoconstriction was greater in O-DR animals. This response was decreased by phentolamine more in O-DR animals than their controls. L-NAME increased EFS-induced vasoconstriction more strongly in O-DR than in O-CR segments. Vasomotor responses to NA or DEA-NO were not modified. NA, ATP and NO release was increased in segments from O-DR. nNOS expression was not modified, whereas P-nNOS expression was increased in O-DR. Sympathetic and nitrergic nerve densities were similar in both experimental groups. CONCLUSIONS AND IMPLICATIONS: The activity of sympathetic and nitrergic innervation is increased in SMA from O-DR animals. The net effect is an increase in EFS-induced contractions in these animals. These effects may contribute to the increased blood pressure observed in the offspring of diabetic rats.
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Queiroz et al. (2015) studied Maternal diabetes. Maternal diabetes (in utero exposure to hyperglycemia) vs. Offspring of control rats was evaluated on Mean arterial pressure (p=<0.05). In utero exposure to maternal diabetes increased mean arterial pressure (137 vs 119 mmHg) and enhanced sympathetic and nitrergic innervation activity in the superior mesenteric artery of adult male offspring.
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