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从受保护的金属有机前体合成用于磁共振成像的功能化磁性纳米颗粒的通用方案。

General protocol for the synthesis of functionalized magnetic nanoparticles for magnetic resonance imaging from protected metal-organic precursors.

作者信息

Hu He, Zhang Chongkun, An Lu, Yu Yanrong, Yang Hong, Sun Jin, Wu Huixia, Yang Shiping

机构信息

The Key Laboratory of the Resource Chemistry of Ministry of Education and the Shanghai Key Laboratory of the Rare Earth Functional Materials, Department of Chemistry, Shanghai Normal University, No. 100 Guilin Road, Shanghai, 200234 (P. R. China), Fax: (+86) 21-64322511.

出版信息

Chemistry. 2014 Jun 2;20(23):7160-7. doi: 10.1002/chem.201305072. Epub 2014 Apr 25.

Abstract

The development of magnetic nanoparticles (MNPs) with functional groups has been intensively pursued in recent years. Herein, a simple, versatile, and cost-effective strategy to synthesize water-soluble and amino-functionalized MNPs, based on the thermal decomposition of phthalimide-protected metal-organic precursors followed by deprotection, was developed. The resulting amino-functionalized Fe3O4, MnFe2O4, and Mn3O4 MNPs with particle sizes of about 14.3, 7.5, and 6.6 nm, respectively, had narrow size distributions and good dispersibility in water. These MNPs also exhibited high magnetism and relaxivities of r2 = 107.25 mM(-1)  s(-1) for Fe3O4, r2 = 245.75 mM(-1)  s(-1) for MnFe2O4, and r1 = 2.74 mM(-1)  s(-1) for Mn3O4. The amino-functionalized MNPs were further conjugated with a fluorescent dye (rhodamine B) and a targeting ligand (folic acid: FA) and used as multifunctional probes. Magnetic resonance imaging and flow-cytometric studies showed that these probes could specifically target cancer cells overexpressing FA receptors. This new protocol opens a new way for the synthesis and design of water-soluble and amino-functionalized MNPs by an easy and versatile route.

摘要

近年来,人们一直在大力研发具有官能团的磁性纳米颗粒(MNPs)。在此,我们开发了一种简单、通用且经济高效的策略,用于合成水溶性和氨基功能化的MNPs,该策略基于邻苯二甲酰亚胺保护的金属有机前体的热分解,随后进行脱保护。所得的氨基功能化的Fe3O4、MnFe2O4和Mn3O4 MNPs的粒径分别约为14.3、7.5和6.6 nm,粒径分布窄,在水中具有良好的分散性。这些MNPs还表现出高磁性,Fe3O4的横向弛豫率r2 = 107.25 mM(-1)  s(-1),MnFe2O4的r2 = 245.75 mM(-1)  s(-1),Mn3O4的纵向弛豫率r1 = 2.74 mM(-1)  s(-1)。氨基功能化的MNPs进一步与荧光染料(罗丹明B)和靶向配体(叶酸:FA)偶联,并用作多功能探针。磁共振成像和流式细胞术研究表明,这些探针可以特异性靶向过表达FA受体的癌细胞。该新方案通过一种简便通用的途径为水溶性和氨基功能化MNPs的合成与设计开辟了一条新道路。

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