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◆ Advanced Functional Materials2025-12-02· Materials science

Spatiotemporally Orchestrated H <sub>2</sub> S/NO‐Releasing Stent for Synergistic Vascular Healing

Jiayi Zhang, Yang Li, Zhen Xiang, Daihua Fu, Y X Wang

原始摘要(英文原文)· Original abstract
Abstract Cardiovascular stents persistently struggle to reconcile rapid endothelialization with long‐term prevention of thrombosis and restenosis. This study develops a spatiotemporally orchestrated dual‐gas‐releasing hydrogel coating that synchronizes H 2 S and NO delivery with the dynamic phases of vascular healing. The coating is fabricated by covalently grafting an alginate coating onto poly(L‐lactic acid) stents via a benzophenone‐mediated two‐step surface photopolymerization. A thiol‑activated H 2 S donor is anchored within the coating, while alginate‑chelated Cu 2 ⁺ catalyzes NO generation from endogenous S‑nitrosothiols. An early H 2 S burst synergizes with NO to suppress thromboinflammation and prime a regenerative niche, while sustained NO release maintains vascular homeostasis and directs long‐term remodeling. The coating reduces platelet adhesion by over 90%, virtually eliminates thrombosis in an arteriovenous shunt model, triples endothelial coverage, and suppresses smooth muscle cell proliferation by ≈73%. It also reprograms macrophage polarization, increasing the M2/M1 ratio tenfold, and reduces intracellular ROS levels by >90%. In a rabbit abdominal aorta model, the coating promotes flow‐aligned endothelialization, achieving CD31⁺/eNOS⁺ coverage comparable to native tissue within 3 months, while decreasing neointimal thickness by 66% versus controls. This spatiotemporally tailored gasotransmitter delivery resolves the healing dichotomy of stents, providing a clinically translatable platform for next‐generation vascular implants.
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Spatiotemporally Orchestrated H <sub>2</sub> S/NO‐Releasing Stent for Synergistic Vascular Healing — 科研速览 Science Skim