Gusic Rebecca J, Petko Matus, Myung Richard, William Gaynor J, Gooch Keith J
The Institute for Medicine and Engineering, Department of Bioengineering, University of Pennsylvania, Philadelphia, PA, USA.
J Biomech. 2005 Sep;38(9):1770-9. doi: 10.1016/j.jbiomech.2005.04.002.
When grafted into an arterial environment in vivo, veins remodel in response to the new mechanical environment, thereby changing their mechanical properties and potentially impacting their patency as bypass grafts. Porcine saphenous veins were subjected for one week to four different ex vivo hemodynamic environments in which pressure and shear stress were varied independently, as well as an environment that mimicked that of an arterial bypass graft. After one week of ex vivo culture, the mechanical properties of intact saphenous veins were evaluated to relate specific aspects of the mechanical environment to vein remodeling and corresponding changes in mechanics. The compliance of all cultured veins tended to be less than that of fresh veins; however, this trend was more due to changes in medial and luminal areas than changes in the intrinsic properties of the vein wall. A combination of medial hypertrophy and eutrophic remodeling leads to significantly smaller (p<0.05) wall stresses measured in all cultured veins except those subjected to bypass graft conditions relative to stresses measured in fresh veins at corresponding pressures. Our results suggest that the mechanical environment effects changes in vessel size, as well as the nature of the remodeling, which contribute to altering vein mechanical properties.
当移植到体内的动脉环境中时,静脉会根据新的力学环境进行重塑,从而改变其力学性能,并可能影响其作为旁路移植物的通畅性。将猪隐静脉置于四种不同的体外血流动力学环境中一周,其中压力和剪切应力独立变化,还有一种环境模拟动脉旁路移植物的环境。体外培养一周后,评估完整隐静脉的力学性能,以将力学环境的特定方面与静脉重塑及相应的力学变化联系起来。所有培养静脉的顺应性往往低于新鲜静脉;然而,这种趋势更多是由于中膜和管腔面积的变化,而非静脉壁固有特性的变化。中膜肥厚和营养性重塑共同导致,除了处于旁路移植条件下的静脉外,所有培养静脉在相应压力下测得的壁应力相对于新鲜静脉测得的应力显著更小(p<0.05)。我们的结果表明,力学环境会影响血管大小的变化以及重塑的性质,这有助于改变静脉的力学性能。