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3天器官培养中高血压和低血压动脉开口角度的变化。

Changes of opening angle in hypertensive and hypotensive arteries in 3-day organ culture.

作者信息

Han Hai-Chao, Marita Satoko, Ku David N

机构信息

Department of Mechanical Engineering, University of Texas at San Antonio, San Antonio, TX 78249, USA.

出版信息

J Biomech. 2006;39(13):2410-8. doi: 10.1016/j.jbiomech.2005.08.003. Epub 2005 Sep 19.

Abstract

To study the effect of pressure changes on the opening angle of arteries in organ culture, tubular segments of porcine common carotid arteries were cultured with pulsatile flow perfusion under hypertensive (150+/-20 mmHg), normotensive (100+/-20 mmHg), or hypotensive (30+/-10 mmHg) pressure while maintaining the arteris at a physiological wall shear stress of approximately 15 dyn/cm(2) for up to 3 days. Arteries were then cut into short ring segments by sections perpendicular to the axis and then cut open radially to observe the opening angle in aerated phosphate buffered saline solution (37 degrees C). Norepinephrine (NE, 10 microM), carbacol (CCh, 100 microM), and sodium nitroprusside (SNP, 10 microM) were added after the radial cut at 30, 20, and 30 min intervals, the opening angles were measured, respectively. Results show that hypertensive arteries developed a significantly larger opening angle than normotensive and hypotensive arteries, associated with a significant increase in cell proliferation. In addition, with smooth muscle contraction activated by NE, the opening angle decreases significantly in hypertensive arteries but has little change in hypotensive and normotensive arteries, indicating an enhancement of smooth muscle contraction on the lumen side of the hypertensive arterial wall. In comparison, hypotensive pressure has little effect on arterial opening angle and cell proliferation.

摘要

为研究压力变化对器官培养中动脉开口角度的影响,将猪颈总动脉的管状节段在高血压(150±20 mmHg)、正常血压(100±20 mmHg)或低血压(30±10 mmHg)压力下进行搏动血流灌注培养,同时将动脉维持在约15 dyn/cm²的生理壁面切应力下长达3天。然后将动脉沿垂直于轴线的方向切成短环段,再沿径向切开以观察在充气的磷酸盐缓冲盐溶液(37℃)中的开口角度。在径向切开后,分别在30、20和30分钟的间隔添加去甲肾上腺素(NE,10 μM)、卡巴胆碱(CCh,100 μM)和硝普钠(SNP,10 μM),并分别测量开口角度。结果表明,高血压动脉的开口角度明显大于正常血压和低血压动脉,且与细胞增殖显著增加有关。此外,随着NE激活平滑肌收缩,高血压动脉的开口角度显著减小,而低血压和正常血压动脉的开口角度变化不大,这表明高血压动脉壁管腔侧的平滑肌收缩增强。相比之下,低血压对动脉开口角度和细胞增殖影响不大。

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