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Octapod iron oxide nanoparticles as high-performance T2 contrast agents for magnetic resonance imaging

机译:八足形氧化铁纳米粒子作为高性能的 T 2 造影剂,用于磁共振成像

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Spherical superparamagnetic iron oxide nanoparticles have been developed as T 2-negative contrast agents for magnetic resonance imaging in clinical use because of their biocompatibility and ease of synthesis; however, they exhibit relatively low transverse relaxivity. Here we report a new strategy to achieve high transverse relaxivity by controlling the morphology of iron oxide nanoparticles. We successfully fabricate size-controllable octapod iron oxide nanoparticles by introducing chloride anions. The octapod iron oxide nanoparticles (edge length of 30?nm) exhibit an ultrahigh transverse relaxivity value (679.3±30?mM?1?s?1), indicating that these octapod iron oxide nanoparticles are much more effective T 2 contrast agents for in vivo imaging and small tumour detection in comparison with conventional iron oxide nanoparticles, which holds great promise for highly sensitive, early stage and accurate detection of cancer in the clinic.
机译:球形超顺磁性氧化铁纳米颗粒由于具有生物相容性和易于合成的特性,已被开发为T 2 负性造影剂,用于临床磁共振成像。然而,它们表现出相对较低的横向弛豫性。在这里,我们报告了一种通过控制氧化铁纳米粒子的形态来实现高横向弛豫性的新策略。我们通过引入氯离子成功地制造了尺寸可控的八足形氧化铁纳米颗粒。八足形氧化铁纳米颗粒(边缘长度为30?nm)表现出超高的横向弛豫值(679.3±30?mM ?1 ?s ?1 ),表明这些与常规的氧化铁纳米粒子相比,八足形的氧化铁纳米粒子在体内成像和小肿瘤检测方面更有效的T 2 造影剂,对于高度敏感,早期和准确地检测癌症具有广阔的前景在诊所里。

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