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首页> 外文期刊>Biomacromolecules >Self-Assembled Thermoresponsive Polymeric Nanogels for F-19 MR Imaging
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Self-Assembled Thermoresponsive Polymeric Nanogels for F-19 MR Imaging

机译:用于F-19 MR成像的自组装热典型聚合物纳米凝胶

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摘要

Magnetic resonance imaging using fluorinated contrast agents (F-19 MRI) enables to achive highcontrast in images due to the negligible fluorine background in living tissues. In this pilot study, we developed new biocompatible, temperature-responsive, and easily synthesized polymeric nanogels containing a sufficient concentration of magnetically equivalent fluorine atoms for F-19 MRI purposes. The structure of the nanogels is based on amphiphilic copolymers containing two blocks, a hydrophilic poly-[N-(2-hydroxypropyl)-methacrylamide] (PHPMA) or poly(2-methyl-2-oxazoline) (PMeOx) block, and a thermoresponsive poly[N(2,2difluoroethyl)acrylamide] (PDFEA) block. The thermoresponsive properties of the PDFEA block allow us to control the process of nanogel self-assembly upon its heating in an aqueous solution. Particle size depends on the copolymer composition, and the most promising copolymers with longer thermoresponsive blocks form nanogels of suitable size for angiogenesis imaging or the labeling of cells (approximately 120 nm). The in vitro F-19 MRI experiments reveal good sensitivity of the copolymer contrast agents, while the nanogels were proven to be noncytotoxic for several cell lines.
机译:由于活组织中可忽略不计的氟背景,使用氟化造影剂(F-19 MRI)的磁共振成像使得能够在图像中实现高度控制。在该试点研究中,我们开发了新的生物相容性,温度响应性,易于合成的聚合物纳米粒子,其含有足够浓度的磁性当量氟原子浓度,用于F-19 MRI目的。纳米凝胶的结构基于含有两个嵌段的两亲性共聚物,亲水性聚 - [N-(2-羟丙基) - 甲基丙烯酰胺](PHPMA)或聚(2-甲基-2-恶唑啉)(PMEOX)嵌段,以及a热响应性聚[N(2,2-二氟乙基)丙烯酰胺](PDFEA)嵌段。 PDFEA块的热响应性能使我们能够在水溶液中加热时控制纳米凝胶自组装的过程。粒度取决于共聚物组合物,以及最有前途的共聚物,具有较长的热响应性嵌段,形成适当尺寸的纳米凝胶,用于血管生成成像或细胞的标记(约120nm)。体外F-19 MRI实验揭示了共聚物造影剂的良好敏感性,而纳米凝胶被证明是几种细胞系的非单胞毒性毒性。

著录项

  • 来源
    《Biomacromolecules 》 |2018年第8期| 共10页
  • 作者单位

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Clin &

    Expt Med Videnska 9 Prague 14021 4 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Charles Univ Prague Fac Sci Dept Inorgan Chem Hlavova 8 Prague 12800 2 Czech Republic;

    Charles Univ Prague Fac Sci Dept Inorgan Chem Hlavova 8 Prague 12800 2 Czech Republic;

    Inst Clin &

    Expt Med Videnska 9 Prague 14021 4 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

    Inst Macromol Chem AS CR Vvi Heyrovskeho Sq 2 Prague 16206 6 Czech Republic;

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  • 正文语种 eng
  • 中图分类 分子生物学 ;
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