Institute of Biophysics, Bulgarian Academy of Sciences, Sofia, Bulgaria.
J Biomater Sci Polym Ed. 2011;22(16):2205-26. doi: 10.1163/092050610X537147. Epub 2010 Nov 11.
There is a need to create cell- and histocompatible implant materials, which might temporarily replace the mechanical function of a native tissue for regenerative therapies. To match the elastic behavior of the native tissue two different multiblock co-polymers were investigated: PDC, consisting of poly(p-dioxanone) (PPDO)/poly(ε-caprolactone) (PCL), and PDD, based on PPDO/poly((adipinate-alt-1,4-butanediol)-co-(adipinate-alt-ethylene glycol)-co-adipinate-alt-diethylene glycol) (Diorez). PDC is capable of a shapememory effect. Both multiblock co-polymers show an improved elasticity compared to materials applied in established vascular prosthesis. PDD is softer than PDC at 20°C, while PDC maintains its elasticity at 37°C. Thermodynamic characteristics indicate a more polar surface of PDD. Low cell adhesion was found on surfaces with low molar free energy of hysteresis (ΔG) derived from contact angle measurements in wetting and dewetting mode and high cell adhesion on high-ΔG surfaces. An increasing content of PCL in PDC improved cell adhesion and spreading of human umbilical vein endothelial cells. The prothrombotic potential of PDD is higher than PDC. Finally, it is concluded that PDC is a promising material for vascular tissue engineering because of its improved elastic properties, as well as balanced prothrombotic and anti-thrombotic properties with endothelial cells.
需要开发细胞和组织相容性的植入材料,以暂时替代天然组织的机械功能,用于再生治疗。为了匹配天然组织的弹性特性,研究了两种不同的多嵌段共聚物:PDC,由聚(对二氧环己酮)(PPDO)/聚(ε-己内酯)(PCL)组成;以及 PDD,基于 PPDO/聚((癸二酸-alt-1,4-丁二醇)-共-(癸二酸-alt-乙二醇)-共-癸二酸-alt-二甘醇)(Diorez)。PDC 具有形状记忆效应。与用于传统血管假体的材料相比,这两种多嵌段共聚物均显示出更好的弹性。在 20°C 时,PDD 比 PDC 更柔软,而 PDC 在 37°C 时仍能保持其弹性。热力学特性表明 PDD 的表面更具极性。通过在润湿和去湿模式下进行接触角测量得出的低摩尔滞后自由能(ΔG)表面具有低细胞粘附性,而高ΔG 表面具有高细胞粘附性。PDC 中 PCL 含量的增加可提高人脐静脉内皮细胞的黏附和铺展。与 PDC 相比,PDD 的促血栓形成潜力更高。最后得出结论,PDC 是一种有前途的血管组织工程材料,因为其弹性性能得到了改善,并且具有与内皮细胞平衡的促血栓形成和抗血栓形成特性。