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Facile Hydrothermal Synthesis and Surface Functionalization of Polyethyleneimine-Coafed Iron Oxide Nanoparticles for Biomedical Applications

机译:用于生物医学应用的聚乙烯亚胺包覆氧化铁纳米粒子的便捷水热合成和表面功能化

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We report the facile hydrothermal synthesis and surface functionalization of branched polyethyleneimine (PEl)-coated iron oxide nanoparticles (Fe3O4—PEI NPs) for biomedical applications. In this study, Fe3O4—PEI NPs were synthesized via a one-pot hydrothermal method in the presence of PEI. The formed Fe3O4—PEI NPs with primary amine groups on the surface were able to be further functionalized with polyethylene glycol (PEG), acetic anhydride, and succinic anhydride, respectively. The formed pristine and functionalized Fe3O4—PEI NPs were characterized via different techniques. We showed that the sizes of the Fe3O4—PEI NPs were able to be controlled by varying the mass ratio of Fe(II) salt and PEL In addition, the formed Fe3O4—PEI NPs with different surface functionalities had good water dispersibility, colloidal stability, and relatively high R2 relaxivity (130— 160 l/(mM·s)). Cell viability assay data revealed that the surface PEGylation and acylation of Fe3O4—PEI NPs rendered them with good biocompatibility in the given concentration range, while the pristine aminated Fe3O4—PEI NPs started to display slight toxicity at the concentration of 50 μg/mL. Importantly, macrophage cellular uptake results demonstrated that both PEGylation and acetylation of Fe3O4—PEI NPs were able to significantly reduce the nonspecific macrophage uptake, likely rendering the particles with prolonged circulation time. With the proven hemocompatibility and rich amine conjugation chemistry, the Fe3O4— PEI NPs with different surface functionalities may be applied for various biomedical applications, especially for magnetic resonance imaging and therapy.
机译:我们报告了用于生物医学应用的分支聚乙烯亚胺(PE1)涂层的氧化铁纳米颗粒(Fe3O4-PEI NPs)的简便水热合成和表面功能化。在这项研究中,在PEI存在下,通过一锅水热法合成了Fe3O4-PEI NP。形成的表面具有伯胺基团的Fe3O4-PEI NP分别可以分别用聚乙二醇(PEG),乙酸酐和琥珀酸酐进一步官能化。形成的原始的和功能化的Fe3O4-PEI NPs通过不同的技术进行了表征。我们发现,通过改变Fe(II)盐和PEL的质量比,可以控制Fe3O4-PEI NP的大小。此外,形成的具有不同表面功能的Fe3O4-PEI NP具有良好的水分散性,胶体稳定性,和相对较高的R2弛豫度(130- 160 l /(mM·s))。细胞活力测定数据表明,Fe3O4-PEI NPs的表面PEG化和酰化使其在给定的浓度范围内具有良好的生物相容性,而原始胺化的Fe3O4-PEI NPs在50μg/ mL的浓度下开始表现出轻微的毒性。重要的是,巨噬细胞的细胞摄取结果表明,Fe3O4-PEI NPs的聚乙二醇化和乙酰化均能够显着降低非特异性巨噬细胞的摄取,可能会使颗粒的循环时间延长。凭借已证明的血液相容性和丰富的胺结合化学,具有不同表面功能的Fe3O4-PEI NP可以用于各种生物医学应用,尤其是磁共振成像和治疗。

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