Ino Julia M, Sju Ervi, Ollivier Véronique, Yim Evelyn K F, Letourneur Didier, Le Visage Catherine
Inserm, U698, Cardiovascular Bio-Engineering, X. Bichat Hospital, 75018, Paris, France; Institut Galilée, University Paris 13, 93430, Villetaneuse, France.
J Biomed Mater Res B Appl Biomater. 2013 Nov;101(8):1549-59. doi: 10.1002/jbm.b.32977. Epub 2013 Jul 11.
Engineered grafts are still needed for small diameter blood vessels reconstruction. Ideal materials would prevent thrombosis and intimal hyperplasia by displaying hemocompatibility and mechanical properties close to those of native vessels. In this study, poly(vinyl alcohol) (PVA)/gelatin blends were investigated as a potential vascular support scaffold. We modified a chemically crosslinked PVA hydrogel by incorporation of gelatin to improve endothelial cell attachment with a single-step method. A series of crosslinked PVA/gelatin films with specific ratios set at 100:0, 99:1, 95:5, and 90:10 (w/w) were prepared and their mechanical properties were examined by uniaxial tensile testing. Tubes, obtained from sutured films, were found highly compliant (3.1-4.6%) and exhibited sufficient mechanical strength to sustain hemodynamic strains. PVA-based hydrogels maintained low level of platelet adhesion and low thrombogenic potential. Endothelial cell adhesion and proliferation were drastically improved on PVA/gelatin films with a feed gelatin content as low as 1% (w/w), leading to the formation of a confluent endothelium. Hydrogels with higher gelatin content did not sustain complete endothelialization because of modifications of the film surface, including phase segregation and formation of microdomains. Thus, PVA/gelatin (99:1, w/w) hydrogels appear as promising materials for the design of endothelialized vascular materials with long-term patency.
小直径血管重建仍需要工程化移植物。理想的材料应通过展现与天然血管相近的血液相容性和机械性能来防止血栓形成和内膜增生。在本研究中,对聚乙烯醇(PVA)/明胶共混物作为潜在的血管支撑支架进行了研究。我们通过掺入明胶以单步方法对化学交联的PVA水凝胶进行改性,以改善内皮细胞附着。制备了一系列特定比例设定为100:0、99:1、95:5和90:10(w/w)的交联PVA/明胶薄膜,并通过单轴拉伸试验检测其机械性能。由缝合薄膜制成的管子具有高度顺应性(3.1 - 4.6%),并表现出足够的机械强度以承受血流动力学应变。基于PVA的水凝胶保持低水平的血小板粘附和低血栓形成潜力。在明胶含量低至1%(w/w)的PVA/明胶薄膜上,内皮细胞的粘附和增殖得到显著改善,导致形成汇合的内皮。由于薄膜表面的改性,包括相分离和微区形成,明胶含量较高的水凝胶不能维持完全内皮化。因此,PVA/明胶(99:1,w/w)水凝胶似乎是设计具有长期通畅性的内皮化血管材料的有前景的材料。