再狭窄
血栓形成
医学
纳米纤维
细胞外基质
新生内膜
生物医学工程
材料科学
血管疾病
心脏病学
病理
内皮
支架
作者
Yang He,Jieling Zhao,Hongqiang Sun,Zhen Zhang,Junbo Xu,Guang Yang,Xilin Li,Shaobing Zhou
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-07-15
卷期号:20 (29): 20892-20908
标识
DOI:10.1021/acsnano.6c08680
摘要
Small-diameter vascular grafts (SDVGs) are indispensable devices for clinical revascularization. However, their efficacy is compromised by acute thrombosis and restenosis, which ultimately jeopardize sustained patency. To address this challenge, we developed a bifacially micropatterned nanofibrous SDVG (BMN-SDVG) with distinct topographies tailored for its luminal and abluminal surfaces. The luminal square micropatterns selectively promote rapid endothelial coverage and functional maturation, thereby establishing an antithrombogenic endothelial monolayer. Simultaneously, the abluminal groove micropatterns guide the circumferential alignment and contractile differentiation of smooth muscle cells to prevent restenosis. In an abdominal aorta interposition model, the BMN-SDVG maintained 100% patency with physiological blood flow velocity, demonstrating robust vascular regeneration during the critical early remodeling phase. This spatially orchestrated dual-layer BMN-SDVG offers a clinically translatable solution for sustained SDVG patency.
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