School of Materials Science and Engineering, Nanyang Technological University, Block N4.1, 50 Nanyang Avenue, Singapore 639798, Singapore.
Biointerphases. 2010 Sep;5(3):FA53-62. doi: 10.1116/1.3483218.
This study characterized human umbilical vein endothelial cell (HUVEC) adhesion, proliferation, and gene expression on bilayered polyelectrolyte coatings composed of an outermost layer of glycosaminoglycans (hyaluronan, heparin, or chondroitin sulfate), with an underlying layer of poly-L-lysine or chitosan. The proportion of cells that adhered to the various polyelectrolyte coatings after 1 and 2 h incubations was quantified by the WST-8 assay. Interchanging poly-L-lysine with chitosan resulted in significant differences in cellular adhesion to the outermost glycosaminoglycan layer after 1 h, but these differences became insignificant after 2 h. The proliferation of HUVEC on the various bilayered polyelectrolyte coatings over 10 days was characterized using the WST-8 assay. Regardless of whether the underlying layer was poly-L-lysine or chitosan, HUVEC proliferation on the hyaluronan outermost layer was significantly less than on heparin or chondroitin sulfate. Additionally, it was observed that there was more proliferation with poly-L-lysine as the underlying layer, compared to chitosan. Subsequently, real-time polymerase chain reaction was used to analyze the expression of seven genes related to adhesion, migration, and endothelial function (VWF, VEGFR, VEGFA, endoglin, integrin-α5, ICAM1, and ICAM2) by HUVEC cultured on the various bilayered polyelectrolyte coatings for 3 days. With poly-L-lysine as the underlying layer, biologically significant differences (greater than twofold) in the expression of VWF, VEGFR, VEGFA, endoglin, and ICAM1 were observed among the three glycosaminoglycans. With chitosan as the underlying layer, all three glycosaminoglycans displayed biologically significant differences in the expression of VWF and VEGFR compared to the chitosan control. CT-HA displayed the highest level of expression of VWF, whereas expression levels of VEGFR were almost similar among the three glycosaminoglycans.
本研究对由最外层糖胺聚糖(透明质酸、肝素或硫酸软骨素)和底层聚-L-赖氨酸或壳聚糖组成的双层聚电解质涂层上的人脐静脉内皮细胞(HUVEC)黏附、增殖和基因表达进行了表征。通过 WST-8 测定法量化了在 1 和 2 h 孵育后各种聚电解质涂层上黏附的细胞比例。将聚-L-赖氨酸与壳聚糖互换会导致在 1 h 后对最外层糖胺聚糖层的细胞黏附产生显著差异,但在 2 h 后这些差异变得不显著。通过 WST-8 测定法在 10 天内对各种双层聚电解质涂层上的 HUVEC 增殖进行了表征。无论底层是聚-L-赖氨酸还是壳聚糖,HUVEC 在透明质酸最外层的增殖均显著低于肝素或硫酸软骨素。此外,观察到聚-L-赖氨酸作为底层时,增殖更多。随后,通过实时聚合酶链反应分析了在各种双层聚电解质涂层上培养 3 天后与黏附、迁移和内皮功能相关的 7 种基因(VWF、VEGFR、VEGFA、内格林、整合素-α5、ICAM1 和 ICAM2)的表达。在聚-L-赖氨酸作为底层时,在三种糖胺聚糖中观察到 VWF、VEGFR、VEGFA、内格林和 ICAM1 的表达存在生物学显著差异(大于两倍)。在壳聚糖作为底层时,与壳聚糖对照相比,所有三种糖胺聚糖的 VWF 和 VEGFR 表达均存在生物学显著差异。CT-HA 显示出 VWF 的最高表达水平,而三种糖胺聚糖中 VEGFR 的表达水平几乎相似。
Clin Hemorheol Microcirc. 2008
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2008-8
Biomed Mater Eng. 2006
Cell Mol Life Sci. 2017-8-2