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磁靶向过程中磁响应功能化纳米复合材料在靶点处的聚集动力学及链形成

Magnetoresponsive Functionalized Nanocomposite Aggregation Kinetics and Chain Formation at the Targeted Site during Magnetic Targeting.

作者信息

Bernad Sandor I, Socoliuc Vlad, Susan-Resiga Daniela, Crăciunescu Izabell, Turcu Rodica, Tombácz Etelka, Vékás Ladislau, Ioncica Maria C, Bernad Elena S

机构信息

Romanian Academy-Timisoara Branch, Centre for Fundamental and Advanced Technical Research, Mihai Viteazul Str. 24, 300223 Timisoara, Romania.

Research Center for Engineering of Systems with Complex Fluids, Politehnica University Timisoara, Mihai Viteazul Str. 1, 300222 Timisoara, Romania.

出版信息

Pharmaceutics. 2022 Sep 12;14(9):1923. doi: 10.3390/pharmaceutics14091923.

Abstract

Drug therapy for vascular disease has been promoted to inhibit angiogenesis in atherosclerotic plaques and prevent restenosis following surgical intervention. This paper investigates the arterial depositions and distribution of PEG-functionalized magnetic nanocomposite clusters (PEG_MNCs) following local delivery in a stented artery model in a uniform magnetic field produced by a regionally positioned external permanent magnet; also, the PEG_MNCs aggregation or chain formation in and around the implanted stent. The central concept is to employ one external permanent magnet system, which produces enough magnetic field to magnetize and guide the magnetic nanoclusters in the stented artery region. At room temperature (25 °C), optical microscopy of the suspension model's aggregation process was carried out in the external magnetic field. According to the optical microscopy pictures, the PEG_MNC particles form long linear aggregates due to dipolar magnetic interactions when there is an external magnetic field. During magnetic particle targeting, 20 mL of the model suspensions are injected (at a constant flow rate of 39.6 mL/min for the period of 30 s) by the syringe pump in the mean flow (flow velocity is Um = 0.25 m/s, corresponding to the Reynolds number of Re = 232) into the stented artery model. The PEG_MNC clusters are attracted by the magnetic forces (generated by the permanent external magnet) and captured around the stent struts and the bottom artery wall before and inside the implanted stent. The colloidal interaction among the MNC clusters was investigated by calculating the electrostatic repulsion, van der Waals and magnetic dipole-dipole energies. The current work offers essential details about PEG_MNCs aggregation and chain structure development in the presence of an external magnetic field and the process underlying this structure formation.

摘要

用于血管疾病的药物治疗已被推广,以抑制动脉粥样硬化斑块中的血管生成,并防止手术干预后的再狭窄。本文研究了在区域定位的外部永磁体产生的均匀磁场中,在支架动脉模型中局部递送后,聚乙二醇功能化磁性纳米复合簇(PEG_MNCs)在动脉中的沉积和分布;此外,还研究了植入支架内部和周围PEG_MNCs的聚集或链形成情况。核心概念是采用一个外部永磁体系统,该系统产生足够的磁场来磁化和引导支架动脉区域中的磁性纳米簇。在室温(25°C)下,在外部磁场中对悬浮模型的聚集过程进行光学显微镜观察。根据光学显微镜图片,当存在外部磁场时,PEG_MNC颗粒由于偶极磁相互作用而形成长线性聚集体。在磁性粒子靶向过程中,通过注射泵以平均流速(流速为Um = 0.25 m/s,对应雷诺数Re = 232)在30 s内以恒定流速39.6 mL/min将20 mL模型悬浮液注入支架动脉模型。PEG_MNC簇被外部永磁体产生的磁力吸引,并在植入支架之前和内部的支架支柱和动脉底部壁周围捕获。通过计算静电排斥、范德华力和磁偶极-偶极力来研究MNC簇之间的胶体相互作用。当前的工作提供了关于在外部磁场存在下PEG_MNCs聚集和链结构发展以及这种结构形成背后过程的基本细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a64c/9503060/5e66c192ece5/pharmaceutics-14-01923-g001.jpg

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