Guan Jianjun, Sacks Michael S, Beckman Eric J, Wagner William R
McGowan Institute for Regenerative Medicine, University of Pittsburgh, 300 Technology Drive, Pennsylvania 15219, USA.
J Biomed Mater Res. 2002 Sep 5;61(3):493-503. doi: 10.1002/jbm.10204.
The engineering of tissue for mechanically demanding applications in the cardiovascular system is likely to require mechanical conditioning of cell-scaffold constructs prior to their implantation. Scaffold properties amenable to such an application include high elasticity and strength coupled with controllable biodegradative and cell-adhesive properties. To fulfill such design criteria, we have synthesized a family of poly(ester-urethane)ureas (PEUUs) from polycaprolactone and 1,4-diisocyanatobutane. Lysine ethyl ester (Lys) or putrescine was used as chain extenders. To encourage cell adhesion, PEUUs were surface modified with radio-frequency glow discharge followed by coupling of Arg-Gly-Asp-Ser (RGDS). The synthesized PEUUs were highly flexible, with breaking strains of 660-895% and tensile strengths from 9.2-29 MPa. Incubation in aqueous buffer for 8 weeks resulted in mass loss, from >50% (Lys chain extender) to 10% (putrescine chain extender). Human endothelial cells cultured for 4 days with medium containing the degradation products from PEUUs with either the Lys or putrescine chain extender showed no toxic effects. Cell adhesion was 85% of that measured on tissue-culture polystyrene for unmodified PEUU surfaces (p < 0.01) and >160% (p < 0.001) of polystyrene on RGDS-modified PEUUs. These biodegradable PEUUs demonstrate potential for future application as cell scaffolds in cardiovascular tissue-engineering or other soft-tissue applications.
对于心血管系统中需要承受机械力的组织工程应用而言,在植入细胞 - 支架构建体之前可能需要对其进行机械预处理。适用于此类应用的支架特性包括高弹性和强度,以及可控的生物降解性和细胞粘附性。为满足这些设计标准,我们用聚己内酯和1,4 - 二异氰酸丁酯合成了一系列聚(酯 - 聚氨酯)脲(PEUUs)。赖氨酸乙酯(Lys)或腐胺用作扩链剂。为促进细胞粘附,对PEUUs进行射频辉光放电表面改性,随后偶联精氨酸 - 甘氨酸 - 天冬氨酸 - 丝氨酸(RGDS)。合成的PEUUs具有高度柔韧性,断裂应变在660 - 895%之间,拉伸强度为9.2 - 29MPa。在水性缓冲液中孵育8周会导致质量损失,从>50%(Lys扩链剂)到10%(腐胺扩链剂)。用人内皮细胞在含有来自带有Lys或腐胺扩链剂的PEUUs降解产物的培养基中培养4天,未显示出毒性作用。对于未改性的PEUU表面,细胞粘附力是在组织培养聚苯乙烯上测得的85%(p < 0.01),而在RGDS改性的PEUUs上则是聚苯乙烯的>160%(p < 0.001)。这些可生物降解的PEUUs显示出在未来作为心血管组织工程或其他软组织应用中的细胞支架的应用潜力。