生物材料
动脉瘤
止血
生物医学工程
材料科学
导管
支架
医学
动物模型
外科
放射科
内科学
作者
Zefu Zhang,Hassan Albadawi,Richard J. Fowl,Joseph L. Mayer,Brian W. Chong,Rahmi Öklü
标识
DOI:10.1002/adma.202305868
摘要
Abstract Ruptured wide‐neck aneurysms (WNAs), especially in a setting of coagulopathy, are associated with significant morbidity and mortality. It is shown that by trapping a sub‐millimeter clinical catheter inside the aneurysm sac using a flow diverter stent (FDS), instant hemostasis can be achieved by filling the aneurysm sac using a novel biomaterial, rescuing catastrophic bleeding in large‐animal models. Multiple formulations of a biomaterial comprising gelatin, nanoclay (NC), and iohexol are developed, optimized, and extensively tested in vitro to select the lead candidate for further testing in vivo in murine, porcine, and canine models of WNAs, including in a subset with aneurysm rupture. The catheter‐injectable and X‐ray visible versions of the gel embolic agent (GEA) with the optimized mechanical properties outperform control groups, including a subset that receive a clinically used liquid embolic (Onyx, Medtronic), with and without aneurysm rupture. A combinatorial approach to ruptured WNAs with GEA and FDS may change the standard of medical practice and save lives.
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