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Design and Synthesis of Gold-Gadolinium-Core-Shell Nanoparticles as Contrast Agent: a Smart Way to Future Nanomaterials for Nanomedicine Applications

机译:金 - 钆 - 核心 - 壳纳米粒子的设计与合成造影剂:​​纳米医生应用未来纳米材料的智能方式

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Introduction: The development of biopolymers for the synthesis of Gd(III) nanoparticles, as therapeutics, could play a key role in nanomedicine. Biocompatible polymers are not only used for complex monovalent biomolecules, but also for the realization of multivalent active targeting materials as diagnostic and/or therapeutic hybrid nanoparticles. In this article, it was reported for the first time, a novel synthesis of Gd(III)–biopolymer–Au(III) complex, acting as a key ingredient of core-shell gold nanoparticles (Gd(@AuNPs). Material and methods: The physical and chemical evaluation was carried out by spectroscopic analytical techniques (Raman spectroscopy, UV-visible and TEM). The theoretical characterization by DFT (density functional theory) analysis was carried out under specific conditions to investigate the interaction between the Au and the Gd precursors, during the first nucleation step. Magnetic features with relaxivity measurements at 7T were also performed as well as cytotoxicity studies on hepatocyte cell lines for biocompatibility studies. The in vivo detailed dynamic biodistribution studies in mice to characterize the potential applications for biology as MRI contrast agents were then achieved. Results: Physical–chemical evaluation confirms the successful design and reaction supposed. Viabilities of TIB-75 (hepatocytes) cells were evaluated using Alamar blue cytotoxic tests with increasing concentrations of nanoparticles. In vivo biodistribution studies were then accomplished to assess the kinetic behavior of the nanoparticles in mice and characterize their stealthiness property after intravenous injection. Conclusion: We demonstrated that Gd@AuNPs have some advantages to display hepatocytes in the liver. Particularly, these nanoconjugates give a good cellular uptake of several quantities of Gd@NPs into cells, while preserving a T1 contrast inside cells that provide a robust in vivo detection using T1-weighted MR images. These results will strengthen the role of gadolinium as complex to gold in order to tune Gd(@AuNPs) as an innovative diagnostic agent in the field of nanomedicine.
机译:简介:作为治疗剂的Gd(III)纳米粒子合成的生物聚合物的发展可以在纳米医生中发挥关键作用。生物相容性聚合物不仅用于复合的一价生物分子,还用于实现多价活性靶向材料作为诊断和/或治疗杂化纳米颗粒。在本文中,首次报道了Gd(III)-Biopolymer-Au(III)复合物的新颖合成,作为核 - 壳金纳米颗粒的关键成分(Gd(@AUnps)。材料和方法:物理和化学评估通过光谱分析技术(拉曼光谱,UV可见和TEM)进行。DFT(密度函数理论)分析的理论表征在特定条件下进行,以研究AU和该方法之间的相互作用Gd前体,在第一种成核步骤中。还进行了7T的放松测量的磁性以及对生物相容性研究的肝细胞系细胞毒性研究。小鼠的体内详细的动态生物分布研究表征生物学的潜在应用程序作为MRI的潜在应用。然后实现造影剂。结果:物理化学评估证实了所谓的设计和反应。TIB-75的能力(Hepat通过随着纳米颗粒的增加,使用Alamar蓝细胞毒性试验评估OCYTES)细胞。然后完成体内生物分布研究以评估小鼠中纳米颗粒的动力学行为,并在静脉注射后表征它们的隐身性能。结论:我们证明GD @ AUNPS在肝脏中显示肝细胞的一些优势。特别地,这些纳米缀合物将若干量的GD @ NPS具有良好的细胞摄取到细胞中,同时在使用T1加权的MR图像中保留提供稳健的细胞内部的T1对比度。这些结果将加强钆的作用作为复杂的黄金,以调整GD(@AUNPS)作为纳米医生领域的创新诊断剂。

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