锰
惰性
磁共振成像
螯合作用
材料科学
制作
聚合物
核磁共振
对比度(视觉)
纳米技术
化学
光学
有机化学
冶金
物理
复合材料
病理
放射科
替代医学
医学
作者
Shengxiang Fu,Muhammad Rizwan Younis,Zhongyuan Cai,Li Liu,Haojie Gu,Guohua Ni,Su Lui,Hua Ai,Bin Song,Min Wu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-10-14
卷期号:24 (45): 14252-14262
被引量:3
标识
DOI:10.1021/acs.nanolett.4c03804
摘要
Traditional macromolecules or nanoscale Mn2+ chelate-based magnetic resonance imaging (MRI) contrast agents (CAs) suffer from complicated and laborious synthesis processes, relatively low kinetic stability and T1 relaxivity, limiting their clinical applications. Herein, we fabricated a series of kinetically inert Mn2+ chelate-backboned polymers, P(MnL-PEG), through a facile and one-pot polymerization process. Particularly, P(MnL-PEG)-3 demonstrates a significantly higher T1 relaxivity of 23.9 Mn mM–1 s–1 at 1.5 T than that of previously reported small molecules and macromolecules or nanoscale Mn2+ chelate-based CAs. Due to its high T1 relaxivity, extended blood circulation, hepatocyte-specific uptake, and kidneys metabolism, P(MnL-PEG)-3 presents significantly enhanced contrast in blood vessel, liver, and kidneys imaging compared to clinical Gd3+-based CAs (Gd-EOB-DTPA and Gd-DOTA) at a dosage of 0.05 mmol Mn/Gd kg–1 BW, and can accurately diagnose orthotopic H22 liver tumors in vivo in animal models. We anticipate that this work will promote the development of clinically relevant MRI CAs.
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