Widely used in millions of atherosclerosis treatments, conventional metal stents, although pervasive, only provide mechanical support to narrowed arteries. However, many patients experience in-stent restenosis after implantation. Here we developed smart magnetoelastic stents that preserve mechanical functionality while enabling self-powered hemodynamic monitoring for continuous and timely diagnosis of in-stent restenosis. Using a clinical catheter, the smart stent is deployed in the swine carotid artery for in vivo hemodynamic sensing, enabling effective detection of induced stenosis through artificial intelligence-assisted signal interpretation. In vivo and in vitro studies demonstrate the biosafety of the smart stent through immune profiling, human cytokine analysis and single-cell RNA sequencing. These results underscore the smart stent's potential for seamless integration into biological systems as a reliable diagnostic tool. This platform technology could potentially revolutionize current stent technology and contribute to improved strategies for managing atherosclerosis.
Self-powered in-stent restenosis diagnosis via magnetoelastic stents.
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作者:Chen Guorui, Kim Wi Jin, Yang Youcheng, Li Yan-Ruide, Tian Jing, Zhang Junkai, Zhao Xun, Scott Kamryn, Defelice Lily G, Liu Zeyang, Xu Jing, Chung Tzuchun, Carol Jarod, Zhou Yihao, Wang Anthony C, Ajijola Olujimi A, Weiss Paul S, Wang Wei, Li Song, Colby Geoffrey P, Chen Jun
| 期刊: | Nature Cardiovascular Research | 影响因子: | 10.800 |
| 时间: | 2026 | 起止号: | 2026 Feb;5(2):155-167 |
| doi: | 10.1038/s44161-025-00773-4 | ||
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