Clustered ultra-small iron oxide nanoparticles as potential T1/T2 dual-modal magnetic resonance imaging contrast agents and application to tumor model

磁共振成像 材料科学 核磁共振 超顺磁性 氧化铁 纳米颗粒 磁共振造影剂 共轭体系 氧化铁纳米粒子 对比度(视觉) 聚合物 核化学 纳米技术 磁化 化学 光学 磁场 医学 物理 放射科 冶金 量子力学
作者
Ying Liu,Son Long Ho,Tirusew Tegafaw,Dejun Zhao,Mohammad Yaseen Ahmad,Abdullah Khamis Ali Al Saidi,Hyunsil Cha,Sang-Yeol Lee,Hansol D. Lee,Seung‐Ho Kim,Mun Han,Kwon Seok Chae,Yongmin Chang,Gang Ho Lee
出处
期刊:Nanotechnology [IOP Publishing]
标识
DOI:10.1088/1361-6528/ad8203
摘要

Abstract Many studies have been conducted on the use of ultra-small iron oxide nanoparticles (USIONs) (d < 3 nm) as potential positive magnetic resonance imaging (MRI)-contrast agents (CAs); however, there is dearth of research on clustered USIONs. In this study, nearly monodispersed clustered USIONs were synthesized using a simple two-step one-pot polyol method. First, USIONs (d = 2.7 nm) were synthesized, and clustered USIONs (d = 27.9 nm) were subsequently synthesized through multiple cross-linking of USIONs with poly(acrylic acid-co-maleic acid) (PAAMA) polymers with many –COOH groups. The clustered PAAMA-USIONs exhibited very weak ferromagnetism owing to the magnetic interaction between superparamagnetic USIONs; this was evidenced by their appreciable r 1 = 3.9 s ‒1 mM ‒1 and high r 2 /r 1 ratio of 14.6. Their ability to function as a dual-modal T 1 /T 2 MRI-CA in T 1 -weighted MRI was demonstrated when they simultaneously exhibited positive and negative contrasts in T 1 -weighted MRI of tumor model mice after intravenous injection. They displayed positive contrasts at the kidneys, bladder, heart, and aorta and negative contrasts at the liver and tumor.&#xD;
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