医学
支架
心脏瓣膜
机制(生物学)
导管
心脏病学
气球
外科
内科学
心脏瓣膜
输送系统
心脏瓣膜置换术
介入心脏病学
主动脉瓣
微创手术
假体设计
球囊导管
阀门执行机构
作者
Giselle Ventura,Masaki Kajimoto,Mossab Saeed,J. Scott Malloy,Ian McGinty,Lyubomyr Bohuta,Kevin A. Charette,Kyle S. Bilodeau,Gianna Dafflisio,Shannen B. Kizilski,Peter E. Hammer,John P. Carney,David W. Sutherland,Baturalp Arslan,Daniel F. King,David J. Carter,S Emani,Michael A. Portman,Corin Williams
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-02-18
卷期号:12 (8): eadw4669-eadw4669
被引量:1
标识
DOI:10.1126/sciadv.adw4669
摘要
Congenital heart valve defects often require surgical intervention for survival. Now, there are no valve prosthetics on the market that are designed for babies and toddlers who grow rapidly. Recent advancements in expandable valves hold promise for these young patients but currently require invasive balloon catheter procedures for device expansion. Here, we describe the design and preclinical feasibility of a pediatric heart valve stent that spontaneously adapts to growth via a springlike mechanism imparted by the superelastic properties of nitinol. Studies in piglets demonstrated appropriate constraint of the device to small diameters (8 to 9 millimeters) upon implantation, acute valve function, and the ability of the stent to proportionately expand with growth up to 13 millimeters after 6 weeks without subsequent interventions after implantation. We expect that the growth-adaptive stent concept could be broadly leveraged to eliminate surgeries and invasive procedures as young patients grow.
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