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具有生理剪切应力作用的新型柔顺聚(碳酸酯 - 脲)聚氨酯血管移植物的最佳内皮化

Optimal endothelialisation of a new compliant poly(carbonate-urea)urethane vascular graft with effect of physiological shear stress.

作者信息

Salacinski H J, Tai N R, Punshon G, Giudiceandrea A, Hamilton G, Seifalian A M

机构信息

Vascular Haemodynamic Laboratory, University Department of Surgery, London, NW3 2QG, UK.

出版信息

Eur J Vasc Endovasc Surg. 2000 Oct;20(4):342-52. doi: 10.1053/ejvs.2000.1185.

Abstract

OBJECTIVE

to define the optimal seeding conditions of a new stress free poly(carbonate-urea)urethane (CPU) graft with compliance similar to that of human artery with honeycomb structure engineered during the manufacturing process to enhance adhesion and growth of endothelial cells.

METHODS

(111)Indium-oxine radiolabeled human umbilical vein endothelial cells (HUVEC) were seeded onto CPU grafts at (a) concentrations from 2-24x10(5)cells/cm(2)and (b) incubated for 0.5, 1, 2, 4 and 6 h. Following incubation, graft segments were subjected to three washing/gamma counting procedures and scanning electron microscopy (SEM). Cell viability was measured using a modified Alamar blue(TM)assay. To test physiological retention a pulsatile flow phantom was used to subject optimally seeded (16x10(5), 4 h) CPU grafts to arterial shear stress for 6 h with real time acquisition of scintigraphic images of seeded grafts using a nuclear medicine gamma camera system.

RESULTS

the seeding efficiency of 54+/-13% post three washes was achieved using 16x10(5)cells/cm(2). Similarly in SEM micrographs a seeding density of 16x10(5)cells/cm(2)resulted in a confluent monolayer. Seeded CPU segments incubated for 4 h exhibited significantly higher resistance to wash-off than segments incubated for 30 min (p <0.05). Exposure of seeded grafts to pulsatile shear stress resulted in some cell loss with 67+/-3% of cells adherent following 6 h of perfusion with ongoing metabolic activity. Thus, optimal conditions were 16x10(5)cells/cm(2)at 4 h.

CONCLUSIONS

the optimal seeding conditions have been defined for "tissue-engineered" vascular graft which allow complete endothelialisation and high cell-to-substrate strength that resists hydrodynamic stress.

摘要

目的

确定一种新型无应力聚(碳酸酯 - 脲)聚氨酯(CPU)移植物的最佳接种条件,该移植物具有类似于人类动脉的顺应性,在制造过程中具有蜂窝结构,以增强内皮细胞的黏附与生长。

方法

将(111)铟 - 奥辛放射性标记的人脐静脉内皮细胞(HUVEC)接种到CPU移植物上,接种浓度为(a)2 - 24×10⁵个细胞/平方厘米,(b)孵育0.5、1、2、4和6小时。孵育后,对移植物片段进行三次洗涤/γ计数程序和扫描电子显微镜(SEM)检查。使用改良的阿拉玛蓝(Alamar blue™)测定法测量细胞活力。为测试生理保留情况,使用脉动流模型对最佳接种(16×10⁵个细胞/平方厘米,4小时)的CPU移植物施加动脉剪切应力6小时,同时使用核医学γ相机系统实时采集接种移植物的闪烁图像。

结果

三次洗涤后,接种效率达到54±13%,接种浓度为16×10⁵个细胞/平方厘米。同样,在SEM显微照片中,接种密度为16×10⁵个细胞/平方厘米时形成了汇合单层。孵育4小时的接种CPU片段比孵育30分钟的片段表现出对冲洗的显著更高抗性(p<0.05)。接种移植物暴露于脉动剪切应力导致一些细胞损失,灌注6小时后仍有67±3%的细胞黏附且具有持续的代谢活性。因此,最佳条件为4小时时接种浓度为16×10⁵个细胞/平方厘米。

结论

已确定“组织工程化”血管移植物的最佳接种条件,该条件可实现完全内皮化以及高细胞与底物强度,以抵抗流体动力应力。

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