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Efficient Encapsulation of Fe3O4 Nanoparticles into Genetically Engineered Hepatitis B Core Virus-Like Particles Through a Specific Interaction for Potential Bioapplications

机译:通过潜在的生物应用的特定相互作用,将Fe3O4纳米颗粒有效地包封到基因工程乙型肝炎核心病毒样颗粒中。

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摘要

Self-assembly of viral coating proteins encapsulating functional nanoparticles provides a new class of biomaterials with robust chemical and physical properties for potential applications in functional imaging, and therapeutic or diagnostic agent delivery. Herein, a straightforward method is demonstrated for efficient encapsidation of magnetic nanoparticles into the engineered virus-like particle (VLP) through the affinity of histidine tags for the nickel-nitrilotriacetic acid (NTA) chelate. Monodispersed, uniformly sized, magnetic core-containing VLPs are obtained at high efficiency (>85%) and used as the cellular T-2 contrast agents for MR imaging applications thanks to their biocompatibility, higher cellular uptake, as well as higher r(2) values.
机译:病毒包膜蛋白的自组装封装了功能性纳米颗粒,为一类具有强大的化学和物理特性的新型生物材料提供了潜在的功能成像以及治疗或诊断试剂交付领域。在本文中,通过一种组氨酸标签对亚硝酸三乙酸镍(NTA)螯合物的亲和力,证明了将磁性纳米颗粒有效地衣壳化到工程化病毒样颗粒(VLP)中的直接方法。单分散,尺寸均匀,含磁芯的VLP以高效率(> 85%)获得,由于其生物相容性,更高的细胞摄取以及更高的r [2]用作MR成像应用的细胞T-2造影剂)值。

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