Baker J W, Thubrikar M J, Parekh J S, Forbes M S, Nolan S P
Department of Surgery, University of Virginia Health Sciences Center, Charlottesville 22908.
Atherosclerosis. 1991 Aug;89(2-3):209-21. doi: 10.1016/0021-9150(91)90062-8.
Arterial branch sites have very high intramural stresses at physiologic intraluminal pressures; the same sites have a predilection for atherosclerosis. The effect of intramural stress on endothelial cell morphology was investigated. Five rabbits had permanent casts placed around a segment of the abdominal aorta-left renal artery branch area during controlled hypotension, thus reducing intramural stress without narrowing the lumen. These five animals, and three normal rabbits, were sacrificed after 4-8 weeks, and the vessels were perfused with buffered 2.5% glutaraldehyde for 2 h at 100 mm Hg pressure. The aortas were examined by scanning electron microscopy. In normal aortas, the distal region of the ostia of the left renal and celiac arteries just beyond the flow divider displayed many morphologically altered endothelial cells ranging from spindle shape to cobble-stone shape. The same aortic area of casted rabbits, as well as the straight abdominal aorta in all rabbits, showed a smooth surface of endothelial cells with intact cell borders and no morphologically altered cells. At branch sites, the occurrence of morphologically altered endothelial cells may be due to increased intramural stress. When intramural stress is reduced, the morphology of branch endothelial cells changes to resemble that of the unbranched regions. In conclusion, endothelial cell morphology changes in response to changes in intramural stress.
在生理腔内压力下,动脉分支部位具有非常高的壁内应力;相同部位易患动脉粥样硬化。研究了壁内应力对内皮细胞形态的影响。在控制性低血压期间,对5只兔子的腹主动脉 - 左肾动脉分支区域的一段周围放置永久性铸型,从而在不使管腔变窄的情况下降低壁内应力。4 - 8周后处死这5只动物和3只正常兔子,在100 mmHg压力下用缓冲的2.5%戊二醛灌注血管2小时。通过扫描电子显微镜检查主动脉。在正常主动脉中,左肾动脉和腹腔动脉开口的远端区域,就在血流分流器之外,显示出许多形态改变的内皮细胞,从纺锤形到鹅卵石形不等。铸型兔子的相同主动脉区域,以及所有兔子的直腹主动脉,显示出内皮细胞表面光滑,细胞边界完整,没有形态改变的细胞。在分支部位,形态改变的内皮细胞的出现可能是由于壁内应力增加。当壁内应力降低时,分支内皮细胞的形态会发生变化,类似于未分支区域的形态。总之,内皮细胞形态会随着壁内应力的变化而改变。