Du Zeyu, Qiao Feng, Tong Liping, Zhang Wentai, Mou Xiaohui, Zhao Xin, Maitz Manfred F, Wang Huaiyu, Huang Nan, Yang Zhilu
School of Materials Science and Engineering, Department of Cardiology, Third People's Hospital of Chengdu Affiliated with Southwest Jiaotong University, Southwest Jiaotong University, Chengdu 610031, China.
Dongguan Key Laboratory of Smart Biomaterials and Regenerative Medicine, The Tenth Affiliated Hospital of Southern Medical University, Dongguan 523059, China.
Innovation (Camb). 2024 Jun 29;5(5):100671. doi: 10.1016/j.xinn.2024.100671. eCollection 2024 Sep 9.
Universal coatings with versatile surface adhesion, good mechanochemical robustness, and the capacity for secondary modification are of great scientific interest. However, incorporating these advantages into a system is still a great challenge. Here, we report a series of catechol-decorated polyallylamines (CPAs), denoted as pseudo- foot protein 5 (-Mefp-5), that mimic not only the catechol and amine groups but also the backbone of Mefp-5. CPAs can fabricate highly adhesive, robust, multifunctional polyCPA (PCPA) coatings based on synergetic catechol-polyamine chemistry as universal building blocks. Due to the interpenetrating entangled network architectures, these coatings exhibit high chemical robustness against harsh conditions (HCl, pH 1; NaOH, pH 14; HO, 30%), good mechanical robustness, and wear resistance. In addition, PCPA coatings provide abundant grafting sites, enabling the fabrication of various functional surfaces through secondary modification. Furthermore, the versatility, multifaceted robustness, and scalability of PCPA coatings indicate their great potential for surface engineering, especially for withstanding harsh conditions in multipurpose biomedical applications.
具有通用表面粘附性、良好的机械化学稳定性以及二次修饰能力的通用涂层具有重大的科学意义。然而,将这些优点整合到一个体系中仍然是一个巨大的挑战。在此,我们报道了一系列儿茶酚修饰的聚烯丙胺(CPAs),命名为类贻贝足蛋白5(-Mefp-5),它不仅模拟了儿茶酚和胺基,还模拟了Mefp-5的主链。CPAs可以基于协同的儿茶酚 - 多胺化学作为通用构建模块制备高粘附性、坚固耐用、多功能的聚CPA(PCPA)涂层。由于互穿缠结的网络结构,这些涂层在苛刻条件下(盐酸,pH 1;氢氧化钠,pH 14;过氧化氢,30%)表现出高化学稳定性、良好的机械稳定性和耐磨性。此外,PCPA涂层提供了丰富的接枝位点,能够通过二次修饰制备各种功能表面。此外,PCPA涂层的多功能性、多方面的稳定性和可扩展性表明它们在表面工程方面具有巨大潜力,特别是在多用途生物医学应用中耐受苛刻条件方面。