再狭窄
医学
临床前研究
生物相容性
支架
生物吸附支架
生物医学工程
介入心脏病学
临床试验
体内
动物模型
临床前试验
人体研究
临床实习
生物相容性材料
冠状动脉再狭窄
医学物理学
实验研究
材料试验
作者
Samuel Hansen,Thuy Anh Bui,Xiaoxue Xu,Kristine McGrath
标识
DOI:10.1016/j.bioactmat.2025.09.004
摘要
Cardiovascular stents are widely used to treat atherosclerosis by relieving vascular obstruction and providing structural support after coronary angioplasty. Bioresorbable metallic stents represent a promising alternative to conventional corrosion-resistant stents, which are linked to late-stage complications such as in-stent restenosis and thrombosis. Due to the diversity of stent materials and designs, rigorous evaluation of their interactions with the vascular environment in relevant preclinical models is essential before clinical translation. However, current studies employ highly variable in vitro cell systems, in vivo animal models, and experimental assays to assess biocompatibility, making it difficult to draw definitive conclusions about candidate designs. This review outlines the current landscape of bioresorbable metallic stents, critically examines the strengths and limitations of preclinical models described in the literature and in international guidelines, and provides recommendations to guide future research in this rapidly evolving field.
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