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低强度超声增强磁性胶体聚集体的纤毛模拟运动用于溶栓药物渗透

Cilia-Mimic Locomotion of Magnetic Colloidal Collectives Enhanced by Low-Intensity Ultrasound for Thrombolytic Drug Penetration.

作者信息

Wu Jingjing, Zou Weijuan, Lu Qijie, Zheng Tingjia, Li Yanping, Ying Tao, Li Yuehua, Zheng Yuanyi, Wang Longchen

机构信息

Department of Ultrasound in Medicine, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, No. 600, Yishan Road, Shanghai, 200233, P. R. China.

Shanghai Key Laboratory of Neuro-Ultrasound for Diagnosis and Treatment, Shanghai, 200233, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Feb;12(7):e2410351. doi: 10.1002/advs.202410351. Epub 2024 Dec 27.

Abstract

Rapid thrombolysis is very important to reduce complications caused by vascular blockage. A promising approach for improving thrombolysis efficiency is utilizing the permanent magnetically actuated locomotion of nanorobots. However, the thrombolytic drug transportation efficiency is challenged by in-plane rotating locomotion and the insufficient drug penetration limits further improvement of thrombolysis. Inspired by ciliary movement for cargo transportation in human body, in this study, cilia-mimic locomotion of magnetic colloidal collectives is realized under torque-force vortex magnetic field (TFV-MF) by a designed rotating permanent magnet assembly. This cilia-mimic locomotion mode can generate more disturbances to the fluids to improve thrombolytic drug transportation and the increased height and area of colloidal collectives boosted the imaging capability. In addition, low-intensity ultrasound is applied to enhance colloids infiltration by producing the fiber breakage and inducing erythrocyte deformation. In vitro thrombolytic experiments demonstrate that the thrombolysis efficiency increased by 16.2 times compared with that of pure tissue plasminogen activator (tPA) treatments. Furthermore, in vivo rat models of femoral vein thrombosis confirmed that this approach can achieve blood flow recanalization more quickly. The proposed cilia-mimic locomotion of magnetic colloidal collectives combined with low-intensity ultrasound irradiation mode provides a new insight of therapeutic interventions for vascular thrombus by enhancing drug penetration.

摘要

快速溶栓对于减少血管阻塞引起的并发症非常重要。一种有前景的提高溶栓效率的方法是利用纳米机器人的永磁驱动运动。然而,溶栓药物的运输效率受到平面内旋转运动的挑战,并且药物渗透不足限制了溶栓效果的进一步提高。受人体中用于货物运输的纤毛运动启发,在本研究中,通过设计的旋转永磁体组件在扭矩力涡旋磁场(TFV-MF)下实现了磁性胶体聚集体的模仿纤毛运动。这种模仿纤毛的运动模式可以对流体产生更多干扰,以改善溶栓药物的运输,并且胶体聚集体高度和面积的增加提高了成像能力。此外,应用低强度超声通过产生纤维断裂和诱导红细胞变形来增强胶体渗透。体外溶栓实验表明,与单纯组织纤溶酶原激活剂(tPA)治疗相比,溶栓效率提高了16.2倍。此外,体内大鼠股静脉血栓形成模型证实,这种方法可以更快地实现血流再通。所提出的磁性胶体聚集体的模仿纤毛运动与低强度超声照射模式相结合,通过增强药物渗透为血管血栓的治疗干预提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6685/11831500/4753bcb02a9c/ADVS-12-2410351-g007.jpg

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