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内皮细胞在光化学接枝于聚乙二醇改性聚氨酯上的不同浓度甘氨酸-精氨酸-甘氨酸-天冬氨酸上的生长情况。

Growth of endothelial cells on different concentrations of Gly-Arg-Gly-Asp photochemically grafted in polyethylene glycol modified polyurethane.

作者信息

Lin Y S, Wang S S, Chung T W, Wang Y H, Chiou S H, Hsu J J, Chou N K, Hsieh K H, Chu S H

机构信息

Department of Surgery, National Taiwan University Hospital, Taipei, Taiwan, Republic of China.

出版信息

Artif Organs. 2001 Aug;25(8):617-21. doi: 10.1046/j.1525-1594.2001.025008617.x.

Abstract

To improve endothelial cell adhesion and growth on the surface of polyethylene glycol modified polyurethane (PU-PEG), cell adhesive peptide Gly-Arg-Gly-Asp (GRGD) was photochemically grafted to the surface. The surface grafted GRGD-N-Succinimidyl-6-[4'-azido-2'-nitrophenylamino]hexanoate (SANPAH) on a PU-PEG surface was performed by adsorption and subsequent ultraviolet irradiation. Fourier transform infrared spectra (FTIR) and electron spectroscopy for chemical analysis (ESCA) confirmed the GRGD grafted to form a PU-PEG-GRGD surface. The composition fraction of nitrogen calculated from ESCA analysis for the PU-PEG-GRGD surface was well correlated with the concentration of GRGD to be immobilized. Human umbilical vein endothelial cells (ECs) were well adhered and growing on the PU-PEG-GRGD surface. Moreover, the viability of ECs growing on PU-PEG-GRGD surfaces, analyzed by MTT test, was also well correlated with the GRGD concentrations immobilized on the surface. With photochemical techniques, we could manipulate different contents of GRGD to form multiple regions of PU-PEG-GRGD surface that could enhance the growth of ECs on the surface, and the enhancement efficiency was well correlated with GRGD contents.

摘要

为了改善内皮细胞在聚乙二醇修饰聚氨酯(PU-PEG)表面的黏附与生长,通过光化学方法将细胞黏附肽甘氨酸-精氨酸-甘氨酸-天冬氨酸(GRGD)接枝到该表面。通过吸附并随后进行紫外线照射,在PU-PEG表面接枝GRGD-N-琥珀酰亚胺基-6-[4'-叠氮基-2'-硝基苯氨基]己酸酯(SANPAH)。傅里叶变换红外光谱(FTIR)和化学分析电子能谱(ESCA)证实GRGD接枝后形成了PU-PEG-GRGD表面。由ESCA分析计算得到的PU-PEG-GRGD表面氮的组成分数与要固定的GRGD浓度具有良好的相关性。人脐静脉内皮细胞(ECs)在PU-PEG-GRGD表面黏附良好且生长良好。此外,通过MTT试验分析,在PU-PEG-GRGD表面生长的ECs的活力也与固定在表面的GRGD浓度具有良好的相关性。利用光化学技术,我们可以调控不同含量的GRGD,形成多个PU-PEG-GRGD表面区域,这些区域能够促进ECs在表面的生长,且促进效率与GRGD含量具有良好的相关性。

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