ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Nitric oxide transport in normal human thoracic aorta: effects of hemodynamics and nitric oxide scavengers.

PloS one2014Liu X, Wang Z, Zhao P, et al.
研究デザインその他の原著論文
対象ヒト

抄録

Despite the crucial role of nitric oxide (NO) in the homeostasis of the vasculature, little quantitative information exists concerning NO transport and distribution in medium and large-sized arteries where atherosclerosis and aneurysm occur and hemodynamics is complex. We hypothesized that local hemodynamics in arteries may govern NO transport and affect the distribution of NO in the arteries, hence playing an important role in the localization of vascular diseases. To substantiate this hypothesis, we presented a lumen/wall model of the human aorta based on its MRI images to simulate the production, transport and consumption of NO in the arterial lumen and within the aortic wall. The results demonstrated that the distribution of NO in the aorta was quite uneven with remarkably reduced NO bioavailability in regions of disturbed flow, and local hemodynamics could affect NO distribution mainly via flow dependent NO production rate of endothelium. In addition, erythrocytes in the blood could moderately modulate NO concentration in the aorta, especially at the endothelial surface. However, the reaction of NO within the wall could only slightly affect NO concentration on the luminal surface, but strongly reduce NO concentration within the aortic wall. A strong positive correlation was revealed between wall shear stress and NO concentration, which was affected by local hemodynamics and NO reaction rate. In conclusion, the distribution of NO in the aorta may be determined by local hemodynamics and modulated differently by NO scavengers in the lumen and within the wall.

MeSH

Aorta, ThoracicEndothelium, VascularErythrocytesFree Radical ScavengersHemodynamicsHumansMaleModels, CardiovascularNitric Oxide

DOI 10.1371/journal.pone.0112395

PMID 25405341

原文・出典を見る →