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Facile Synthesis of Gadolinium Chelate-Conjugated Polymer Nanoparticles for Fluorescence/Magnetic Resonance Dual-Modal Imaging

机译:钆螯合螯合蛋白缀合聚合物纳米粒子的容易合成用于荧光/磁共振双模态成像

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摘要

Fluorescence (FL)/magnetic resonance (MR) dual-modal imaging nanoprobes are significant not only for cutting edge research in molecular imaging, but also for clinical diagnosis with high precision and accuracy. However, synthesis of FL/MR dual-modal imaging nanoprobes that simultaneously exhibit strong fluorescent brightness and high MR response, long-term colloidal stability with uniform sizes, good biocompatibility and a versatile surface functionality has proven challenging. In this study, the well-defined core-shell structured Gd3+ chelate-conjugated fluorescent polymer nano particles (Gd-FPNPs) that consist of rhodamine B (RB)encapsulated poly(methyl methacrylate) (PMMA) cores and Gd3+ chelate-conjugated branched polyethylenimine (PEI) shells, are facilely synthesized via a one-step graft copolymerization of RB-encapsulated MMA from PEI-DTPA-Gd induced by tert-butyl hydroperoxide (TBHP) at 80 degrees C for 2 h. The mild synthesis route not only preserves the chemical environment for Gd3+ coordination, but also improves optical properties and chemo-/photostability of RB. A high local concentration of outer surface-chelated Gd3+ dand their direct interactions with hydrogen protons endow Gd-FPNPs high longitudinal relaxivity (26.86 mM(-1) s(-1)). The uniform spherical structure of Gd-FPNPs facilitates their biotransfer, and their surface carboxyl and amine groups afford them both long-term colloidal stability and cell-membrane permeability. The excellent biocompatibility and FL/MR dual modal imaging capability of Gd-FPNPs are demonstrated using HeLa cells and mice as models. All the results confirm that Gd-FPNPs fulfill the design criteria for a high-performance imaging nanoprobe. In addition, this study enables such probes to be prepared also by those not skilled in nanomaterial synthesis, and thus promoting the development of novel functional imaging nanoprobes.
机译:荧光(FL)/磁共振(MR)双型成像纳米体纳米体不仅是用于切削分子成像的前沿研究,而且还用于高精度和精度的临床诊断。然而,同时表现出强荧光亮度和高先生响应,长期胶体稳定性,具有均匀尺寸,良好的生物相容性和多功能表面功能的合成,具有均匀性挑战。在该研究中,由罗丹明B(RB)包封的聚(甲基丙烯酸甲酯)(PMMA)芯和Gd3 + Chelate-Concumated支链聚乙烯亚乙基聚乙烯亚胺(GD-FPNP)组成的明确定义的核 - 壳结构化GD3 +螯合蛋白缀合的荧光聚合物纳米颗粒(GD-FPNPS)。 (PEI)壳,通过从叔丁基氧化氧化氢(TBHP)诱导的叔丁基氢氧化物(TBHP)在80℃下进行2小时来合成RB包封的MMA的一步接枝共聚合。温和的合成途径不仅保留了GD3 +配位的化学环境,而且还改善了RB的光学性质和化学/光稳定性。高局部浓度的外表面螯合的GD3 +阳花与氢质子的直接相互作用赋予GD-FPNPS高纵向松弛率(26.86mm(-1)S(-1))。 GD-FPNPS的均匀球形结构促进了它们的生物翻译器,它们的表面羧基和胺基团提供了长期胶体稳定性和细胞膜渗透性。使用Hela细胞和小鼠作为模型来证明GD-FPNPS的优异的生物相容性和FL / MR双模态成像能力。所有结果确认GD-FPNPS满足高性能成像Nanoprobe的设计标准。此外,该研究能够通过纳米材料合成的那些人制备这些探针,从而促进新型功能性成像纳米体的发育。

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  • 来源
    《Analytical chemistry》 |2018年第3期|共9页
  • 作者单位

    Sun Yat Sen Univ Sch Engn Key Lab Sensing Technol &

    Biomed Instruments Guan Guangzhou Guangdong Peoples R China;

    Sun Yat Sen Univ Sch Engn Key Lab Sensing Technol &

    Biomed Instruments Guan Guangzhou Guangdong Peoples R China;

    Guangdong Gen Hosp Guangzhou Guangdong Peoples R China;

    Guangdong Gen Hosp Guangzhou Guangdong Peoples R China;

    City Univ Hong Kong Dept Biomed Sci Hong Kong Hong Kong Peoples R China;

    Sun Yat Sen Univ Sch Engn Key Lab Sensing Technol &

    Biomed Instruments Guan Guangzhou Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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