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Immobilization of Iron Oxide Magnetic Nanoparticles for Enhancement of Vessel Wall Magnetic Resonance Imaging-An Ex Vivo Feasibility Study

机译:固定化氧化铁磁性纳米颗粒以增强血管壁磁共振成像的体外可行性研究

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Emerging data supports a role for negative wall remodeling in the failure of vascular interventions such as vein grafts, yet clinicians/researchers currently lack the ability to temporally/efficiently investigate adventitial surface topography/total vascular wall anatomy in vivo. We established a strategy of immobilizing commercially available iron oxide magnetic nanoparticles (Fe-NPs) onto the surface of human vein conduits to facilitate high-throughput total vascular wall demarcation with magnetic resonance (MR). Binding of activated Fe-NPs to amine groups on the surface of the veins induced a thin layer of negative contrast that differentiated the adventitia from surrounding saline signal in all MR images, enabling delineation of total wall anatomy; this was not possible in simultaneously imaged unlabeled control veins. Under the conditions of this ex vivo experiment, stable covalent binding of Fe-NPs can be achieved (dose-dependent) on human vein surface for MR detection, suggesting a potential strategy for enhancing the ability of MRI to investigate total wall adaptation and remodeling in vein graft failure.
机译:新兴数据支持负壁重塑在诸如血管移植物之类的血管干预失败中的作用,但是临床医生/研究人员目前缺乏在体内临时/有效研究外膜表面形貌/总血管壁解剖结构的能力。我们建立了一种将可商购的氧化铁磁性纳米颗粒(Fe-NPs)固定在人静脉导管表面上的策略,以通过磁共振(MR)促进高通量总血管壁分界。活化的Fe-NPs与静脉表面的胺基结合会产生薄薄的负对比度,从而在所有MR图像中将外膜与周围的盐水信号区分开来,从而勾勒出整个壁的解剖结构。这在同时成像的未标记对照静脉中是不可能的。在此离体实验的条件下,可以在人静脉表面上实现Fe-NP的稳定共价结合(取决于剂量)以进行MR检测,这表明了增强MRI研究总壁适应性和重塑能力的潜在策略。静脉移植失败。

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