首页> 外文期刊>Chemistry & biodiversity >Synthesis and Relaxometric Characterization of New Poly[N,N-bis(3- aminopropyl)glycine] (PAPGly) Dendrons Gd-Based Contrast Agents and Their in Vivo Study by Using the Dynamic Contrast-Enhanced MRI Technique at Low Field (1 T)
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Synthesis and Relaxometric Characterization of New Poly[N,N-bis(3- aminopropyl)glycine] (PAPGly) Dendrons Gd-Based Contrast Agents and Their in Vivo Study by Using the Dynamic Contrast-Enhanced MRI Technique at Low Field (1 T)

机译:新聚[N,N-BIS(3-氨基丙基)甘氨酸](Papgly)树突基于基于造影剂及其在低场的动态对比增强MRI技术(1)

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摘要

The synthesis of poly[N,N-bis(3-aminopropyl)glycine] (PAPGly) dendrons Gd-based contrast agents (GdCAs) via an orthogonal protection of the different functional groups and an activation/coupling strategy wherein a specific number of synthetic steps add a generation to the existing dendron has been described. The aim of this protocol is to build up two different generations of dendrons (G-0 or dendron's core, and G-1) with peripheral NH_2 groups to conjugate a 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid (DO3A) derivative and afterwards to chelate with Gd~(3+) paramagnetic ions. These complexes, which have a well-defined molecular weight, are of relevance to MRI as an attempt to gain higher ~1H relaxivity by slowing down the rotation of molecule compared to monomeric Gd(III) complexes used as contrast agents and to increase the number of paramagnetic centers present in one molecular structure. From the study of their water ~1H longitudinal relaxation rate at different magnetic fields (NMRD, Nuclear Magnetic Relaxation Dispersion) and by evaluating the variable temperature ~(17)ONMR data we determined the parameters characterizing the water exchange rate and the rotational correlation time of each complex, both affecting ~1H relaxivity. Furthermore, these two novel PAPGly GdCAs were objects of i) an in vivo study to determine their biodistributions in healthy C57 mice at several time points, and ii) the Dynamic Contrast-Enhanced MRI (DCE-MRI) approach to assess their contrast efficiency measured in the tumor region of C57BL/6 mice transplanted subcutaneously with B16-F10 melanoma cells. The aim of the comparison of these two dendrons GdCAs, having different molecular weights (MW), is to understand how MW and relaxivity may influence the contrast enhancement capabilities in vivo at low magnetic field (1 T). Significant contrast enhancement was observed in several organs (vessel, spleen and liver), already at 5 min post-injection, for the investigated CAs. Moreov
机译:通过不同官能团的正交保护和活化/偶联策略的正交保护合成聚[N - 双丙基(3-氨基丙基)甘氨酸(Pabgly)Dendrons Gd基于造林(GDCA),其中特定数量的合成策略步骤已描述为现有的Dendron添加生成。该方案的目的是用外围NH_2组构建两代不同一代的树突(G-0或DENDRON核心,G-1),以缀合1,4,7,10-四饱生十二烷-1,4,7-三乙酸(DO3A)衍生物和之后用GD〜(3+)顺磁离子螯合。具有明确定义的分子量的这些复合物与MRI相关,以通过减慢分子与用作造影剂的单体GD(III)络合物的旋转来增强〜1H的放松率,并增加数量在一个分子结构中存在的顺磁中心。通过研究不同磁场(NMRD,核磁弛豫色散)的水〜1H纵向松弛率,并通过评估可变温度〜(17)ONMR数据,我们确定了表征水交换速率和旋转相关时间的参数每个复合物,两者都会影响〜1h放松率。此外,这两种新的豚虾GDCA是I)的对象,在体内研究中,以在几个时间点的健康C57小鼠中确定其生物分布,而ii)动态对比增强的MRI(DCE-MRI)方法来评估其测量的对比效率在C57BL / 6小鼠的肿瘤区域中皮下与B16-F10黑色素瘤细胞移植。具有不同分子量(MW)的这两个树突GDCA的比较是了解MW和松弛率如何影响低磁场(1 T)的体内对比度增强能力。对于研究的CAS,在几个器官(血管,脾脏和肝脏)中观察到显着的对比度增强,已经在5分钟内进行了5分钟。更多

著录项

  • 来源
    《Chemistry & biodiversity》 |2019年第11期|共16页
  • 作者单位

    General Organic and Biomedical Chemistry Unit NMR and Molecular Imaging Laboratory University of Mons 19 avenue Maistriau B-7000 Mons Belgium;

    Institute of Biostructures and Bioimaging (IBB) Italian National Research Council (CNR) I-10124 Torino Italy;

    Center for Microscopy and Molecular Imaging 8 rue Adrienne Bolland B-6041 Charleroi Belgium;

    General Organic and Biomedical Chemistry Unit NMR and Molecular Imaging Laboratory University of Mons 19 avenue Maistriau B-7000 Mons Belgium;

    General Organic and Biomedical Chemistry Unit NMR and Molecular Imaging Laboratory University of Mons 19 avenue Maistriau B-7000 Mons Belgium;

    Department of Molecular Biotechnology and Health Sciences University of Torino I-10124 Torino Italy;

    General Organic and Biomedical Chemistry Unit NMR and Molecular Imaging Laboratory University of Mons 19 avenue Maistriau B-7000 Mons Belgium;

    General Organic and Biomedical Chemistry Unit NMR and Molecular Imaging Laboratory University of Mons 19 avenue Maistriau B-7000 Mons Belgium;

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

    MRI; gadolinium complexes; dendrimers;

    机译:MRI;gadolinium综合体;树枝状大分子;

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