Division of Vascular and Interventional Radiology, Laboratory for Patient Inspired Engineering, Mayo Clinic, 13400 East Shea Blvd., Scottsdale, AZ, 85259, USA.
Chair Emeritus, Division of Vascular and Endovascular Surgery, Emeritus Professor of Surgery, Mayo Clinic, 5777 East Mayo Blvd., Phoenix, AZ, 85054, USA.
Adv Mater. 2022 Mar;34(10):e2108266. doi: 10.1002/adma.202108266. Epub 2022 Jan 21.
Saccular aneurysms (SAs) are focal outpouchings from the lateral wall of an artery. Depending on their morphology and location, minimally invasive treatment options include coil embolization, flow diverter stents, stent-assisted coiling, and liquid embolics. Many drawbacks are associated with these treatment options including recanalization, delayed healing, rebleeding, malpositioning of the embolic or stent, stent stenosis, and even rupture of the SA. To overcome these drawbacks, a nanoclay-based shear-thinning hydrogel (STH) is developed for the endovascular treatment of SAs. Extensive in vitro testing is performed to optimize STH performance, visualization, injectability, and endothelialization in cell culture. Femoral artery saccular aneurysm models in rats and in pigs are created to test stability, efficacy, immune response, endothelialization, and biocompatibility of STH in both ruptured and unruptured SA. Fluoroscopy and computed tomography imaging consistently confirmed SA occlusion without recanalization, migration, or nontarget embolization; STH is also shown to outperform coil embolization of porcine aneurysms. In pigs with catastrophic bleeding due to SA rupture, STH is able to achieve instant hemostasis rescuing the pigs in long-term survival experiments. STH is a promising semisolid iodinated embolic agent that can change the standard of medical practice and potentially save lives.
囊状动脉瘤(SAs)是动脉侧壁的局部向外膨出。根据其形态和位置,微创治疗选择包括线圈栓塞、血流导向支架、支架辅助线圈栓塞和液体栓塞剂。这些治疗选择存在许多缺点,包括再通、延迟愈合、再出血、栓塞或支架位置不当、支架狭窄,甚至 SA 破裂。为了克服这些缺点,开发了一种基于纳米粘土的剪切稀化水凝胶(STH)用于治疗 SAs 的血管内治疗。进行了广泛的体外测试,以优化 STH 在细胞培养中的性能、可视化、可注射性和内皮化。在大鼠和猪的股动脉囊状动脉瘤模型中,测试了 STH 在破裂和未破裂 SA 中的稳定性、疗效、免疫反应、内皮化和生物相容性。荧光透视和计算机断层成像一致证实了 SA 闭塞而无再通、迁移或非靶栓塞;STH 也显示出优于猪动脉瘤线圈栓塞的效果。在因 SA 破裂导致灾难性出血的猪中,STH 能够立即止血,在长期生存实验中拯救了这些猪。STH 是一种有前途的半固态碘化栓塞剂,它可以改变医学实践的标准,并有可能挽救生命。