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Casein-Coated Fe5C2 Nanoparticles with Superior r2 Relaxivity for Liver-Specific Magnetic Resonance Imaging

机译:具有出色r2弛豫性的酪蛋白涂层Fe5C2纳米粒子用于肝脏特异性磁共振成像

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摘要

Iron oxide nanoparticles have been extensively used as T2 contrast agents for liver-specific magnetic resonance imaging (MRI). The applications, however, have been limited by their mediocre magnetism and r2 relaxivity. Recent studies show that Fe5C2 nanoparticles can be prepared by high temperature thermal decomposition. The resulting nanoparticles possess strong and air stable magnetism, suggesting their potential as a novel type of T2 contrast agent. To this end, we improve the synthetic and surface modification methods of Fe5C2 nanoparticles, and investigated the impact of size and coating on their performances for liver MRI. Specifically, we prepared 5, 14, and 22 nm Fe5C2 nanoparticles and engineered their surface by: 1) ligand addition with phospholipids, 2) ligand exchange with zwitterion-dopamine-sulfonate (ZDS), and 3) protein adsorption with casein. It was found that the size and surface coating have varied levels of impact on the particles' hydrodynamic size, viability, uptake by macrophages, and r2 relaxivity. Interestingly, while phospholipid- and ZDS-coated Fe5C2 nanoparticles showed comparable r2, the casein coating led to an r2 enhancement by more than 2 fold. In particular, casein coated 22 nm Fe5C2 nanoparticle show a striking r2 of 973 mM-1s-1, which is one of the highest among all of the T2 contrast agents reported to date. Small animal studies confirmed the advantage of Fe5C2 nanoparticles over iron oxide nanoparticles in inducing hypointensities on T2-weighted MR images, and the particles caused little toxicity to the host. The improvements are important for transforming Fe5C2 nanoparticles into a new class of MRI contrast agents. The observations also shed light on protein-based surface modification as a means to modulate contrast ability of magnetic nanoparticles.
机译:氧化铁纳米颗粒已被广泛用作肝特异性磁共振成像(MRI)的T2造影剂。然而,这些应用由于其中等的磁性和r2弛豫性而受到限制。最近的研究表明,Fe5C2纳米粒子可以通过高温热分解制备。所得的纳米粒子具有强且空气稳定的磁性,表明它们具有作为新型T2造影剂的潜力。为此,我们改进了Fe5C2纳米粒子的合成和表面修饰方法,并研究了尺寸和涂层对其肝脏MRI性能的影响。具体而言,我们制备了5、14和22 nm Fe5C2纳米颗粒,并通过以下方法对其表面进行了设计:1)用磷脂添加配体,2)用两性离子-多巴胺-磺酸盐(ZDS)进行配体交换,以及3)用酪蛋白吸附蛋白质。已经发现,尺寸和表面涂层对颗粒的流体动力学尺寸,生存力,巨噬细胞的摄取和r2弛豫度具有不同程度的影响。有趣的是,尽管磷脂和ZDS包覆的Fe5C2纳米颗粒显示出可比的r2,酪蛋白涂层却使r2增强了2倍以上。特别是,酪蛋白包被的22 nm Fe5C2纳米颗粒的r 2 惊人,为973 mM -1 s -1 ,是最高的之一迄今为止报道的所有T 2 造影剂中小型动物研究证实,Fe 5 C 2 纳米粒子在氧化T 2 MR图像上诱导低强度方面优于氧化铁纳米粒子,并且颗粒对宿主几乎没有毒性。这些改进对于将Fe 5 C 2 纳米粒子转化为新型的MRI造影剂具有重要意义。这些发现还阐明了基于蛋白质的表面修饰作为调节磁性纳米粒子对比度的一种手段。

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