Chen Nuoya, Li Mingyu, Wu Haoshaung, Qin Yumei, Wang Jian, Xu Kai, Luo Rifang, Yang Li, Wang Yunbing, Zhang Xingdong
National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China.
Shanxi Key Laboratory of Functional Proteins, Shanxi Jinbo Bio-Pharmaceutical Co., Ltd, Taiyuan 030032, Shanxi, China.
Regen Biomater. 2023 May 30;10:rbad055. doi: 10.1093/rb/rbad055. eCollection 2023.
Anti-inflammation and anti-coagulation are the primary requirements for cardiovascular stents and also the widely accepted trajectory for multi-functional modification. In this work, we proposed an extracellular matrix (ECM)-mimetic coating for cardiovascular stents with the amplified functionalization of recombinant humanized collagen type III (rhCOL III), where the biomimetics were driven by structure mimicry and component/function mimicry. Briefly, the structure-mimic was constructed by the formation of a nanofiber (NF) structure via the polymerization of polysiloxane with a further introduction of amine groups as the nanofibrous layer. The fiber network could function as a three-dimensional reservoir to support the amplified immobilization of rhCoL III. The rhCOL III was tailored for anti-coagulant, anti-inflammatory and endothelialization promotion properties, which endows the ECM-mimetic coating with desired surface functionalities. Stent implantation in the abdominal aorta of rabbits was conducted to validate the re-endothelialization of the ECM-mimetic coating. The mild inflammatory responses, anti-thrombotic property, promotion of endothelialization and suppression of excessive neointimal hyperplasia confirmed that the ECM-mimetic coating provided a promising approach for the modification of vascular implants.
抗炎和抗凝是心血管支架的主要要求,也是多功能修饰被广泛认可的发展方向。在本研究中,我们提出了一种用于心血管支架的细胞外基质(ECM)模拟涂层,其通过重组人源化III型胶原蛋白(rhCOL III)的功能放大实现了功能化,其中仿生是由结构模仿以及成分/功能模仿驱动的。简而言之,通过聚硅氧烷聚合形成纳米纤维(NF)结构并进一步引入胺基作为纳米纤维层来构建结构模仿。纤维网络可作为三维储存库,以支持rhCoL III的放大固定。rhCOL III针对抗凝、抗炎和促进内皮化特性进行了定制,这赋予了ECM模拟涂层所需的表面功能。在兔腹主动脉中进行支架植入以验证ECM模拟涂层的再内皮化。轻微的炎症反应、抗血栓形成特性、内皮化促进作用以及对过度内膜增生的抑制证实,ECM模拟涂层为血管植入物的修饰提供了一种有前景的方法。