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The effect of metal ions on endogenous melanin nanoparticles used as magnetic resonance imaging contrast agents

机译:金属离子对用作磁共振成像造影剂的内源黑素纳米粒子的影响

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摘要

Melanin nanoparticles are of great importance in biomedicine. They have excellent affinity for metallic cations, especially paramagnetic ions, which has sparked interest in their application in the development of magnetic resonance imaging (MRI) contrast agents. In this work, we prepared ultrasmall water-soluble melanin nanoparticles, and investigated the binding properties of melanin toward different metal cations (Gd3+, Mn2+, Fe3+ and Cu2+), and compared their physicochemical properties and the MRI contrast enhancement ability in various metal chelated forms (MNP-PEG-M) in vitro and in vivo. We show that the saturation binding numbers of Gd3+, Mn2+, Fe3+ and Cu2+ per MNP-PEG were 49, 59, 69 and 62, respectively. MNP-PEG-Gd, MNP-PEG-Mn, MNP-PEG-Fe and MNP-PEG-Cu exhibited the maximum r(1) relaxivities at the loading mass ratios of Gd3+ : MNP = 1 : 1, Mn2+ : MNP = 0.5 : 1, Fe3+ : MNP = 0.1 : 1 and Cu2+ : MNP = 0.1 : 1, corresponding to 49, 57, 54 and 51 chelated metals per MNP-PEG, respectively. The maximal per metal ion r(1) relaxivity values were 61.9, 48.7, 11.1 and 9.7 mM(-1) s(-1) for MNP-PEG-Gd, MNP-PEG-Mn, MNP-PEG-Fe and MNP-PEG-Cu at 1.5 T, respectively. MNP-PEG-Gd and MNP-PEG-Fe presented larger sizes (6.9 nm and 5.8 nm) than MNP-PEG-Mn and MNP-PEG-Cu (3.4 nm and 3.7 nm), all featuring excellent solubility, high stability and ultrasmall size. A significant in vivo MRI signal enhancement in tissues was observed for all MNP-PEG-M after intravenous injection in mice, and these nanoparticles were excreted through renal and hepatobiliary pathways. In agreement with their r(1) relaxivity values, MNP-PEG-Gd and MNP-PEG-Mn showed a significantly greater in vivo tissue maximum enhancement than MNP-PEG-Fe and MNP-PEG-Cu. This study could yield valuable insight into the development of a new class of MRI contrast agents.
机译:黑色素纳米粒子在生物医学中具有重要意义。它们对金属阳离子具有优异的亲和力,特别是顺磁离子,这引起了对其在磁共振成像(MRI)造影剂的发展中的应用感兴趣。在这项工作中,我们制备了超大火水溶性黑色素纳米粒子,并研究了黑色素朝向不同金属阳离子(Gd3 +,Mn2 +,Fe3 +和Cu2 +)的结合性质,并将其物理化学性质和MRI对比增强能力进行了各种金属螯合形式(MNP-PEG-M)体外和体内。我们表明Gd3 +,Mn2 +,Fe3 +和Cu2 + /每MnP-PEG的饱和结合数分别为49,59,69和62。 MNP-PEG-GD,MNP-PEG-MN,MNP-PEG-FE和MNP-PEG-CU在GD3 +:MNP = 1:1,MN2 +:MNP = 0.5的加载质量比下表现出最大R(1)松弛率:1,Fe3 +:MnP = 0.1:1和Cu2 +:MNP = 0.1:1,分别对应于每MNP-PEG的49,57,54和51个螯合金属。用于MNP-PEG-GD,MNP-PEG-MN,MNP-PEG-FE和MNP - MNP-PEG-GD,MNP-PEG-MN,MNP-FE和MNP - MNP-PEG-MN,MNP - PEG-Cu分别为1.5吨。 MNP-PEG-GD和MNP-PEG-FE呈较大的尺寸(6.9nm和5.8nm),而不是MnP-PEG-Mn和MnP-PEG-Cu(3.4nm和3.7nm),所有这些都具有优异的溶解度,高稳定性和超超容易尺寸。在小鼠静脉内注射后的所有MNP-PEG-M中观察到组织中的体内MRI信号增强显着,这些纳米颗粒通过肾和肝胆途径排出。在r(1)r(1)的r(1)的易于达到的情况下,MnP-PEG-Gd和MnP-PEG-Mn在体内组织最大增强中显着更大,而不是MnP-PEG-Fe和MnP-PEG-Cu。本研究可以对新一类MRI造影剂的发展产生有价值的见解。

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  • 来源
    《Biomaterials Science》 |2020年第1期|共12页
  • 作者单位

    Shanxi Med Univ Affiliated Da Yi Hosp Imaging Dept Taiyuan 030000 Peoples R China;

    Shanxi Med Univ Affiliated Da Yi Hosp Imaging Dept Taiyuan 030000 Peoples R China;

    Shanxi Med Univ Taiyuan 030001 Peoples R China;

    Shanxi Med Univ Taiyuan 030001 Peoples R China;

    Shanxi Med Univ Taiyuan 030001 Peoples R China;

    Univ Missouri Dept Radiol Columbia MO 65212 USA;

    Shanxi Med Univ Affiliated Da Yi Hosp Imaging Dept Taiyuan 030000 Peoples R China;

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  • 正文语种 eng
  • 中图分类 分子生物学;
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