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Manipulation of magnetic nanoparticle retention and hemodynamic consequences in microcirculation: assessment by laser speckle imaging

机译:磁性纳米粒子的保留和微循环中的血液动力学后果的操纵:通过激光散斑成像评估

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摘要

Magnetic nanoparticles (MNPs) have been proposed for targeted or embolization therapeutics. How MNP retention occurs in circulation may critically determine local hemodynamics, tissue distribution of MNPs, and the therapeutic effects. We attempted to establish a microcirculation model to study the magnetic capture of MNPs in small vessels and to determine the factors affecting MNP retention. Two-dimensional hemodynamic changes in response to magnet-induced MNP retention in the microvessels of the cremaster muscle in vivo were observed in a real-time manner using a laser speckle imaging technique. Changes in tissue perfusion of the cremaster muscle appeared to be closely correlated with the location of the magnet placement underneath the muscle in response to intra-arterial administration of dextran-coated MNPs. Magnet-related retention was observed along the edge of the magnet, as corroborated by the results of histology analysis and microcomputed tomography. In these preparations, tissue iron content almost doubled, as revealed by inductively coupled plasma optical emission spectroscopy. In addition, MNP retention was associated with reduced downstream flow in a dose-dependent manner. Dissipation of MNPs (5 mg/kg) occurred shortly after removal of the magnet, which was associated with significant recovery of tissue flow. However, MNP dissipation did not easily occur after administration of a higher MNP dose (10 mg/kg) or prolonged exposure to the magnetic field. An ultrasound after removal of the magnet may induce the partial dispersion of MNPs and thus partially improve hemodynamics. In conclusion, our results revealed the important correlation of local MNP retention and hemodynamic changes in microcirculation, which can be crucial in the application of MNPs for effective targeted therapeutics.
机译:磁性纳米粒子(MNP)已被提议用于靶向治疗或栓塞治疗。 MNP在循环中如何发生可能会决定性地决定局部血流动力学,MNP的组织分布以及治疗效果。我们试图建立一种微循环模型,以研究小血管中MNP的磁捕获并确定影响MNP保留的因素。使用激光散斑成像技术,以实时方式观察到响应于体内磁提肌的微血管中磁性诱导的MNP保留的二维血液动力学变化。响应于动脉内施用右旋糖酐包覆的MNP,提睾肌组织灌注的变化似乎与肌肉下方磁体放置的位置密切相关。组织学分析和显微计算机断层扫描的结果证实了沿磁体边缘的与磁体相关的保留。在这些制剂中,组织铁含量几乎增加了一倍,如电感耦合等离子体发射光谱法所揭示的。另外,MNP保留与剂量依赖性减少的下游血流有关。去除磁铁后不久,MNP(5 mg / kg)消散,这与组织流的显着恢复有关。但是,在给予较高的MNP剂量(10 mg / kg)或长时间暴露于磁场后,MNP耗散不容易发生。去除磁体后的超声波可能会引起MNP的部分分散,从而部分改善血液动力学。总之,我们的研究结果揭示了局部MNP保留与微循环中血流动力学变化之间的重要关联,这对于MNP在有效靶向治疗中的应用可能至关重要。

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