Key Laboratory for Advanced Technologies of Materials, Ministry of Education, School of Material Science and Engineering, Southwest Jiaotong University , Chengdu 610031, P. R. China.
School of Life Science, Zhengzhou University , 100 Science Road, Zhengzhou 450001, P. R. China.
ACS Appl Mater Interfaces. 2017 Sep 13;9(36):30343-30358. doi: 10.1021/acsami.7b07444. Epub 2017 Sep 1.
The molecular weights (MWs) of hyaluronic acid (HA) in extracellular matrix secreted from both vascular endothelial cells (VECs) and vascular smooth muscle cells (VSMCs) play crucial roles in the cardiovascular physiology, as HA with appropriate MW influences important pathways of cardiovascular homeostasis, inhibits VSMC synthetic phenotype change and proliferation, inhibits platelet activation and aggregation, promotes endothelial monolayer repair and functionalization, and prevents inflammation and atherosclerosis. In this study, HA samples with gradients of MW (4 × 10, 1 × 10, and 5 × 10 Da) were prepared by covalent conjugation to a copolymerized film of polydopamine and hexamethylendiamine (PDA/HD) as multifunctional coatings (PDA/HD-HA) with potential to improve the biocompatibility of cardiovascular biomaterials. The coatings immobilized with high-MW-HA (PDA/HD-HA-2: 1 × 10 Da; PDA/HD-HA-3: 5 × 10 Da) exhibited a remarkable suppression of platelet activation/aggregation and thrombosis under 15 dyn/cm blood flow and simultaneously suppressed the adhesion and proliferation of VSMC and the adhesion, activation, and inflammatory cytokine release of macrophages. In particular, PDA/HD-HA-2 significantly enhanced VEC adhesion, proliferation, migration, and functional factors release, as well as the captured number of endothelial progenitor cells under dynamic condition. The in vivo results indicated that the multifunctional surface (PDA/HD-HA-2) created a favorable microenvironment of endothelial monolayer formation and functionalization for promoting reendothelialization and reducing restenosis of cardiovascular biomaterials.
细胞外基质中由血管内皮细胞 (VEC) 和血管平滑肌细胞 (VSMC) 分泌的透明质酸 (HA) 的分子量 (MW) 在心血管生理学中起着至关重要的作用,因为具有适当 MW 的 HA 会影响心血管稳态的重要途径,抑制 VSMC 合成表型改变和增殖,抑制血小板激活和聚集,促进内皮单层修复和功能化,并防止炎症和动脉粥样硬化。在这项研究中,通过共价偶联到聚多巴胺和己二胺的共聚物膜 (PDA/HD) 上,制备了具有 MW 梯度的 HA 样品 (4×10、1×10 和 5×10 Da),作为多功能涂层 (PDA/HD-HA),具有改善心血管生物材料生物相容性的潜力。固定有高分子量 HA 的涂层 (PDA/HD-HA-2:1×10 Da; PDA/HD-HA-3:5×10 Da) 在 15 dyn/cm 血流下表现出对血小板激活/聚集和血栓形成的显著抑制作用,同时抑制了 VSMC 的黏附和增殖以及巨噬细胞的黏附和激活以及炎性细胞因子的释放。特别是,PDA/HD-HA-2 显著增强了 VEC 在动态条件下的黏附、增殖、迁移和功能因子释放以及内皮祖细胞的捕获数量。体内结果表明,多功能表面 (PDA/HD-HA-2) 为促进再内皮化和减少心血管生物材料的再狭窄创造了有利的内皮单层形成和功能化的微环境。