Zhang Kun, Chen Jun-ying, Qin Wei, Li Jing-an, Guan Fang-xia, Huang Nan
School of Life Science, Zhengzhou University, 100 Science Road, Zhengzhou, 450001, People's Republic of China.
Center of Stem Cell and Regenerative Medicine, First Affiliated Hospital of Zhengzhou University, 40 University Road, Zhengzhou, 450052, People's Republic of China.
J Mater Sci Mater Med. 2016 Apr;27(4):81. doi: 10.1007/s10856-016-5693-6. Epub 2016 Mar 2.
The modification of cardiovascular stent surface for a better micro-environment has gradually changed to multi-molecule, multi-functional designation. In this study, heparin (Hep) and type IV collagen (IVCol) were used as the functional molecule to construct a bifunctional micro-environment of anticoagulation and promoting endothelialization on titanium (Ti). The surface characterization results (AFM, Alcian Blue 8GX Staining and fluorescence staining of IVCol) indicated that the bio-layer of Hep and IVCol were successfully fabricated on the Ti surface through electrostatic self-assembly. The APTT and platelet adhesion test demonstrated that the bionic layer possessed better blood compatibility compared with Ti surface. The adhesion, proliferation, migration and apoptosis tests of endothelial cells proved that the Hep/IVCol layer was able to enhance the endothelialization of the Ti surface. The in vivo animal implantation results manifested that the bionic surface could encourage new endothelialization. This work provides an important reference for the construction of multifunction micro-environment on the cardiovascular scaffold surface.
为营造更好的微环境而对心血管支架表面进行的改性已逐渐转变为多分子、多功能设计。在本研究中,肝素(Hep)和IV型胶原(IVCol)被用作功能分子,以在钛(Ti)上构建具有抗凝和促进内皮化功能的双功能微环境。表面表征结果(原子力显微镜、阿尔新蓝8GX染色和IVCol荧光染色)表明,通过静电自组装在Ti表面成功制备了Hep和IVCol生物层。活化部分凝血活酶时间和血小板黏附试验表明,与Ti表面相比,仿生层具有更好的血液相容性。内皮细胞的黏附、增殖、迁移和凋亡试验证明,Hep/IVCol层能够增强Ti表面的内皮化。体内动物植入结果表明,仿生表面可促进新的内皮化。这项工作为在心血管支架表面构建多功能微环境提供了重要参考。