Qi Hao, Cheng Can, Wang Xu, Yu Xixiun
College of Polymer Science and Engineering, Sichuan University Chengdu 610065 China
RSC Adv. 2018 Aug 24;8(53):30098-30105. doi: 10.1039/c8ra06427j.
A new method of fabricating vascular scaffolds was designed in this article by crosslinking the porcine arteries using dialdehyde carboxymethyl (DCMC) and further introducing the Sr element on the surface of modified arteries using DOPA. DCMC had been selected as an ideal crosslinking reagent for its excellent cytobiocompatibility and suitable chemical reactivity. Unfortunately, the endothelialization of biological vascular scaffolds fixed by DCMC was unsatisfactory. To overcome this deficiency, the Sr element was introduced onto arteries to improve the endothelialization of fixed arteries due to the Sr element being able to promote the expression of vascular endothelial growth factor (VEGF) being crucial for growth and proliferation of HUVECs. After modifying and crosslinking, their chemical structures, mechanical properties, stability, and cytocompatibility were examined. Our findings demonstrated that DCMC could improve the mechanical properties of animal-derived materials successfully and possess suitable biocompatibility compared with glutaraldehyde (GA). The Sr element can easily be introduced onto the surface of DCMC modified arteries by DOPA. Compared with purely DCMC-crosslinked ones, SrCl/DCMC modification has no significant effect on the mechanical strength of fixed arteries, but a slight tendancy to improve the stability of fixed samples in D-Hanks solution. MTT assay and fluorescence tests implied that SrCl/DCMC modification could effectively stimulate HUVECs' adhesion and proliferation, and thus promote the endothelialization process of fixed arteries. SrCl/DCMC-modified arteries with excellent physicochemical properties and appealing HUVEC-cytocompatibility should be promising materials for fabricating vascular scaffolds.
本文设计了一种制造血管支架的新方法,即使用二醛羧甲基(DCMC)交联猪动脉,并进一步使用多巴在改性动脉表面引入锶元素。DCMC因其优异的细胞生物相容性和合适的化学反应性而被选为理想的交联剂。不幸的是,用DCMC固定的生物血管支架的内皮化效果并不理想。为了克服这一缺陷,将锶元素引入动脉,以改善固定动脉的内皮化,因为锶元素能够促进对人脐静脉内皮细胞(HUVECs)生长和增殖至关重要的血管内皮生长因子(VEGF)的表达。经过改性和交联后,对它们的化学结构、力学性能、稳定性和细胞相容性进行了检测。我们的研究结果表明,与戊二醛(GA)相比,DCMC能够成功改善动物源材料的力学性能,并具有合适的生物相容性。通过多巴可以很容易地将锶元素引入到DCMC改性动脉的表面。与单纯DCMC交联的动脉相比,SrCl/DCMC改性对固定动脉的机械强度没有显著影响,但有轻微的趋势可以提高固定样品在D-Hanks溶液中的稳定性。MTT法和荧光测试表明,SrCl/DCMC改性能够有效刺激HUVECs的黏附和增殖,从而促进固定动脉的内皮化过程。具有优异理化性质和良好HUVEC细胞相容性的SrCl/DCMC改性动脉应该是制造血管支架的有前途的材料。