Munoz-Pinto Dany J, Guiza-Arguello Viviana R, Becerra-Bayona Silvia M, Erndt-Marino Josh, Samavedi Satyavrata, Malmut Sarah, Russell Brooke, Hӧӧk Magnus, Hahn Mariah S
Department of Biomedical Engineering, Rensselaer Polytechnic Institute, Troy, NY.
Center for Infectious and Inflammatory Diseases, Texas A&M Health Science Center, Houston, TX.
J Mater Chem B. 2015 Oct 28;3(40):7912-7919. doi: 10.1039/C5TB00990A. Epub 2015 Jul 15.
This work evaluates the response of human aortic endothelial cells (HAECs) to thromboresistant collagen-mimetic hydrogel coatings toward improving the biocompatibility of existing "off-the-shelf" small-caliber vascular grafts. Specifically, bioactive hydrogels - previously shown to support α/α integrin-mediated cell adhesion but to resist platelet activation - were fabricated by combining poly(ethylene glycol) (PEG) with a 120 kDa, triple-helical collagen-mimetic protein(Scl2-2) containing the GFPGER adhesion sequence. Analysis of HAECs seeded onto the resulting PEG-Scl2-2 hydrogels demonstrated that HAEC adhesion increased with increasing Scl2-2 concentration, while HAEC migration rate decreased over this same concentration range. In addition, evaluation of HAEC phenotype at confluence indicated significant differences in the gene expression of NOS3, thrombomodulin, and E-selectin on the PEG-Scl2-2 hydrogels relative to PEG-collagen controls. At the protein level, however, only NOS3 was significantly different between the PEG-Scl2-2 and PEG-collagen surfaces. Furthermore, PECAM-1 and VE-cadherin expression on PEG-Scl2-2 hydrogels versus PEG-collagen controls could not be distinguished at either the gene or protein level. Cumulatively, these data indicate the PEG-Scl2-2 hydrogels warrant further investigation as "off-the-shelf" graft coatings. In future studies, the Scl2-2 protein can potentially be modified to include additional extracellular matrix or cytokine binding sites to further improve endothelial cell responses.
这项工作评估了人主动脉内皮细胞(HAECs)对具有抗血栓性能的仿胶原蛋白水凝胶涂层的反应,以改善现有“现货供应”的小口径血管移植物的生物相容性。具体而言,通过将聚乙二醇(PEG)与一种含有GFPGER黏附序列的120 kDa三螺旋仿胶原蛋白蛋白(Scl2-2)相结合,制备了具有生物活性的水凝胶——此前已证明其能支持α/α整合素介导的细胞黏附,但能抵抗血小板激活。对接种在所得PEG-Scl2-2水凝胶上的HAECs进行分析表明,HAEC的黏附随着Scl2-2浓度的增加而增加,而在相同浓度范围内HAEC的迁移率下降。此外,对汇合状态下HAEC表型的评估表明,相对于PEG-胶原蛋白对照,PEG-Scl2-2水凝胶上NOS3、血栓调节蛋白和E-选择素的基因表达存在显著差异。然而,在蛋白质水平上,PEG-Scl2-2和PEG-胶原蛋白表面之间只有NOS3存在显著差异。此外,在基因或蛋白质水平上,均无法区分PEG-Scl2-2水凝胶与PEG-胶原蛋白对照上PECAM-1和VE-钙黏蛋白的表达。总体而言,这些数据表明PEG-Scl2-2水凝胶作为“现货供应”的移植物涂层值得进一步研究。在未来的研究中,Scl2-2蛋白可能会被修饰,以包含额外的细胞外基质或细胞因子结合位点,从而进一步改善内皮细胞反应。