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Polyol-Made Luminescent and Superparamagnetic β-NaY0.8Eu0.2F4@γ-Fe2O3 Core-Satellites Nanoparticles for Dual Magnetic Resonance and Optical Imaging

机译:多元醇发光和超顺磁性β-NaY0.8Eu0.2F4@γ-Fe2O3核-卫星纳米粒子用于双磁共振和光学成像。

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摘要

Red luminescent and superparamagnetic β-NaY Eu F @γ-Fe O nanoparticles, made of a 70 nm-sized β-NaY Eu F single crystal core decorated by a 10 nm-thick polycrystalline and discontinuous γ-Fe O shell, have been synthesized by the polyol process. Functionalized with citrate ligands they show a good colloidal stability in water making them valuable for dual magnetic resonance and optical imaging or image-guided therapy. They exhibit a relatively high transverse relaxivity r = 42.3 mM ·s in water at 37 °C, for an applied static magnetic field of 1.41 T, close to the field of 1.5 T applied in clinics, as they exhibit a red emission by two-photon excited fluorescence microscopy. Finally, when brought into contact with healthy human foreskin fibroblast cells (BJH), for doses as high as 50 µg·mL and incubation time as long as 72 h, they do not show evidence of any accurate cytotoxicity, highlighting their biomedical applicative potential.
机译:合成了红色发光和超顺磁性的β-NaYEu F @γ-FeO纳米粒子,该纳米粒子由70 nm尺寸的β-NaYEu F单晶核构成,并由10 nm厚的多晶和不连续的γ-FeO壳装饰通过多元醇工艺。用柠檬酸盐配体官能化后,它们在水中显示出良好的胶体稳定性,使其对于双重磁共振和光学成像或图像引导疗法很有价值。在施加1.41 T静磁场的情况下,在37°C的水中,它们表现出相对较高的横向弛豫r = 42.3 mM·s,接近于临床应用的1.5 T磁场,这是因为它们通过两次发射而呈现红色发射。光子激发荧光显微镜。最后,当与健康的人包皮成纤维细胞(BJH)接触时,剂量高达50 µg·mL,孵育时间长达72 h,它们没有显示出任何准确的细胞毒性证据,突出了其生物医学应用潜力。

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