Why the study?
Does sub-acute pressure elevation alter vasomotor behavior and ET-1/eNOS expression in intact human conduit vessels?
Does sub-acute pressure elevation alter vasomotor behavior and ET-1/eNOS expression in intact human conduit vessels?
Subacute pressure elevation dynamically regulates vasomotor tone through differential temporal expression of endothelial eNOS and ET-1 in human conduit vessels.
Hypothesis-generating for pressure-induced endothelial regulation; leaves open translation to human conduit vessels.
OBJECTIVE: By using a computerized vascular perfusion model, we investigated temporal effects of sub-acute pressure elevation on vasomotor behavior and expression of endothelin-1 (ET-1) and endothelial nitric oxide synthase (eNOS) in intact human conduit vessels. METHODS: Paired umbilical veins were perfused during 1.5, 3 and 6 h under high/low intraluminal pressure (40/20 mmHg) and at identical shear stress level of 10 dyn/cm(2). ET-1 and eNOS gene and protein expression was quantified with real-time reverse-transcribed polymerase chain reaction and quantitative immunohistochemistry, respectively. RESULTS: Pressure induced differential temporal regulation patterns of ET-1 and eNOS gene expression. During the high pressure condition, eNOS mRNA was upregulated after 3 h and leveled off after 6 h of perfusion, while ET-1 mRNA was elevated after 6 h perfusion. Immunohistochemistry verified synchronal changes at the protein level. Significant vasodilation was observed after 3 h in the high-pressure system. CONCLUSION: Thus, subacute pressure elevation exerts differential effects on the endothelial eNOS/ET-1 expression, which dynamically regulate the vasomotor tone.
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Gan et al. (2000) studied this question.
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