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Ultrasound-Triggered BSA/SPION Hybrid Nanoclusters for Liver-Specific Magnetic Resonance Imaging

机译:超声触发的BSA / SPION混合纳米簇用于肝脏特异性磁共振成像

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摘要

Nanoclusters of superparamagnetic iron oxide nanoparticles (SPION) are developed for liver-specific magnetic resonance imaging (MRI) by a unique synthesis route. The process is efficient, environmentally benign, and straight forward within five minutes. The clustering effect is triggered in the presence of bovine serum albumin (BSA) aqueous phase under ultrasonication condition. The hydrophobic SPION are densely self-assembled into BSA/SPION hybrid nanoclusters with a uniform size of ~86 ran. The as-prepared BSA/SPION hybrid nanoclusters are found to be biocompatible and stable. They exhibit high transverse relaxivity and longitudinal relaxivity in water (r2 and r1 values are 600.8 and 4.3 s~(-1) per mM of Fe~(3+), respectively). In vivo T2-weighted MRI shows excellent enhancement in liver with an imaging time-window up to 48 h. In vivo biodistribution study indicates a gradual excretion of the nanoclusters via hepatobiliary (HB) processing. No toxicity is observed in the in vivo and ex vivo experiments. The BSA/SPION hybrid nanoclusters present great potential in MRI as the liver-specific contrast agents (CAs).
机译:超顺磁性氧化铁纳米粒子(SPION)的纳米簇是通过独特的合成途径开发的,用于肝脏特异性磁共振成像(MRI)。该过程高效,对环境无害,并且可以在五分钟内直接完成。在超声条件下,牛血清白蛋白(BSA)水相的存在会触发聚集作用。疏水性SPION紧密自组装成BSA / SPION杂化纳米簇,均匀大小约为86纳米。发现所制备的BSA / SPION杂化纳米簇具有生物相容性和稳定性。它们在水中表现出较高的横向弛豫性和纵向弛豫性(r2和r1值分别为每mM Fe〜(3+)为600.8和4.3 s〜(-1))。体内T2加权MRI显示肝脏显着增强,成像时间窗长达48小时。体内生物分布研究表明,通过肝胆(HB)加工逐渐清除了纳米团簇。在体内和离体实验中未观察到毒性。 BSA / SPION混合纳米簇作为肝脏特异性造影剂(CA)在MRI中具有巨大潜力。

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