磁共振成像
螯合作用
磁共振血管造影
磁共振造影剂
纳米颗粒
钆
对比度(视觉)
核磁共振
材料科学
血管造影
PEG比率
化学
放射科
生物医学工程
纳米技术
医学
计算机科学
无机化学
人工智能
冶金
经济
物理
财务
作者
Zhuang Liu,Menglong Zhao,Han Wang,Zi Fu,Hongbo Gao,Weijun Peng,Dalong Ni,Wei Tang,Yajia Gu
标识
DOI:10.1186/s12951-022-01363-3
摘要
Contrast-enhanced MR angiography (MRA) is a critical technique for vascular imaging. Nevertheless, the efficacy of MRA is often limited by the low rate of relaxation, short blood-circulation time, and metal ion-released potential long-term toxicity of clinical available Gd-based contrast agents. In this work, we report a facile and efficient strategy to achieve Gd-chelated organic nanoparticles with high relaxivity for T1-weighted MRA imaging. The Gd-chelated PEG-TCPP nanoparticles (GPT NPs) have been engineered composite structured consisting of Gd-chelated TCPP and PEG. The spherical structure of TCPP offers more chemical sites for Gd3+ coordination to improve the relaxivity and avoid leakage of the Gd3+ ions. The synthesized GPT NPs exhibit a high relaxation rate of 35.76 mM- 1 s- 1 at 3.0 T, which is higher than the rates for most reported MR contrast agents. Therefore, GPT NPs can be used for MRA with much stronger vascular signals, longer circulation time, and high-resolution arterial vascular visualization than those using clinical MR contrast agents at the same dose. This work may make the T1 MRI contrast agents for high-resolution angiography possible and offer a new candidate for preclinical and clinical applications of MR vascular imaging and vascular disease diagnosis.
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