Li Jiehua, Ding Mingming, Fu Qiang, Tan Hong, Xie Xingyi, Zhong Yinping
Sichuan University, Chengdu, China.
J Mater Sci Mater Med. 2008 Jul;19(7):2595-603. doi: 10.1007/s10856-007-3354-5. Epub 2008 Jan 16.
To improve the performance of small-diamater vascular grafts, endothelization of biomaterials surfaces and tissue engineering are more promising strategies to fabricate small-diamater vascular grafts. In this study, a Gly-Arg-Gly-Asp-Ser-Pro (GRGDSP) peptide was grafted on the surfaces of poly(carbonate urethane)s (PCUs), with photoactive 4-benzoylbenzoic acid (BBA) by UV irradiation. The photoactive peptides (BBM-GRGDSP) were synthesized with classical active ester of peptide synthesis. The modified surfaces of PCU with the photoactive RGD peptides were characterized by water contact angle measurement and X-ray Photoelectron Spectroscopy (XPS), which results suggested that the peptides were successfully grafted on the PCU surfaces. The effect of these modified surfaces on endothelial cells (ECs) adhesion and proliferation was examined over 72 h. PCU surfaces coupled with the synthetic photoactive RGD peptides, as characterized with phase contrast microscope and the metabolic activity (MTT) assay enhanced ECs proliferation and spreading with increasing concentration of RGD peptides grafted on their surfaces. Increased retention of ECs was also observed on the polymers surfaces under flow shear stress conditions. The results demonstrated that GRGDSP peptides grafted on the surfaces of polymers with photoactive 4-benzoylbenzoic acids could be an efficient method of fabrication for artificial small-diamater blood vessels. The modified polymer is expected to be used for small-diamater vascular grafts and functional tissue engineered blood vessels to improve ECs adhesion and retention on the polymer surfaces under flow shear stress conditions.
为了提高小口径血管移植物的性能,生物材料表面内皮化和组织工程是制造小口径血管移植物更具前景的策略。在本研究中,通过紫外线照射将甘氨酸-精氨酸-甘氨酸-天冬氨酸-丝氨酸-脯氨酸(GRGDSP)肽与光活性4-苯甲酰苯甲酸(BBA)接枝到聚碳酸酯聚氨酯(PCU)表面。光活性肽(BBM-GRGDSP)采用经典的肽合成活性酯法合成。通过水接触角测量和X射线光电子能谱(XPS)对含光活性RGD肽的PCU改性表面进行了表征,结果表明肽已成功接枝到PCU表面。在72小时内检测了这些改性表面对内皮细胞(ECs)粘附和增殖的影响。通过相差显微镜和代谢活性(MTT)分析表征,与合成的光活性RGD肽偶联的PCU表面随着其表面接枝的RGD肽浓度增加,增强了ECs的增殖和铺展。在流动剪切应力条件下,聚合物表面也观察到ECs保留增加。结果表明,将GRGDSP肽接枝到含有光活性4-苯甲酰苯甲酸的聚合物表面可能是制造人造小口径血管的有效方法。预计改性聚合物可用于小口径血管移植物和功能性组织工程血管,以改善流动剪切应力条件下ECs在聚合物表面的粘附和保留。