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扩张响应微形貌编程可预防血管移植物狭窄。

Dilation-Responsive Microshape Programing Prevents Vascular Graft Stenosis.

机构信息

TMD LAB Co., Ltd., 6th floor, 31, Gwangnaru-ro 8-gil, Seongdong-gu, Seoul, 04799, Republic of Korea.

Department of Medical Engineering, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul, 03722, Republic of Korea.

出版信息

Small. 2021 May;17(18):e2007297. doi: 10.1002/smll.202007297. Epub 2021 Mar 17.

Abstract

Shape memory materials have been successfully applied to minimally invasive implantation of medical devices. However, organ-movement-specific shape programing at a microscale level has never been demonstrated despite significant unmet needs. As vein-to-artery grafting induces vein dilation and stenosis, a polymeric self-enclosable external support (SES) is designed to wrap the vascular out-wall. Its micropores are programmed to increase sizes and interconnections upon dilation. Vessel dilation promotes venous maturation, but overdilation induces stenosis by disturbed blood flow. Therefore, the unique elastic shape-fixity of SES provides a foundation to enable a stable microscale shape transition by maintaining the vein dilation. The shape transition of micropore architecture upon dilation induces beneficial inflammation, thereby regenerating vasa vasorum and directing smooth muscle cell migration toward adventitia with the consequent muscle reinforcement of veins. This game-changer approach prevents the stenosis of vein-to-artery grafting by rescuing ischemic disorders and promoting arterial properties of veins.

摘要

形状记忆材料已成功应用于微创医疗器械的植入。然而,尽管存在巨大的未满足需求,但从未在微观尺度上展示过针对器官运动的特定形状编程。由于静脉到动脉移植会导致静脉扩张和狭窄,因此设计了一种聚合物自封闭外部支撑物(SES)来包裹血管外壁。其微孔在扩张时会增大并相互连通。血管扩张促进静脉成熟,但过度扩张会通过扰乱血流引起狭窄。因此,SES 的独特弹性形状固定性为通过维持静脉扩张来实现稳定的微观尺度形状转变提供了基础。微孔结构在扩张时的形状转变会引起有益的炎症,从而再生血管周细胞,引导平滑肌细胞向血管外膜迁移,从而加强静脉的肌肉。这种改变游戏规则的方法通过挽救缺血性疾病和促进静脉的动脉特性来防止静脉到动脉移植的狭窄。

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