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To Target or Not to Target: Active vs. Passive Tumor Homing of Filamentous Nanoparticles Based on Potato virus X

机译:靶向还是不靶向:基于马铃薯X病毒的丝状纳米颗粒的主动或被动肿瘤归巢

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摘要

Nanoparticles are promising platforms for the diagnosis and treatment of cancer. Diverse classes and shapes of materials have been investigated to establish design principles that achieve the effective partitioning of medical cargos between tumors and healthy tissues. Molecular targeting strategies combined with specific nanoparticle shapes confer tissue-specificity on the carriers, allowing the cell-specific delivery of cargos. We recently developed a filamentous platform technology in which the plant virus Potato virus X (PVX) was used as a scaffold. These particles are flexible 515 × 13 nm filaments that encourage passive tumor homing. Here we sought to advance the PVX platform by including a molecular targeting strategy based on cyclic RGD peptides, which specifically bind to integrins upregulated on tumor cells, neovasculature, and metastatic sites. Although the RGD-targeted filaments outperformed the PEGylated stealth filaments in vitro, enhanced tumor cell targeting did not translate into improved tumor homing in vivo in mouse tumor models. The RGD-PVX and PEG-PVX filaments showed contrasting biodistribution profiles. Both formulations were cleared by the liver and spleen, but only the stealth filaments accumulated in tumors, whereas the RGD-targeted filaments were sequestered in the lungs. These results provide insight into the design principles for virus-based nanoparticles that promote the delivery of medical cargos to the appropriate cell types.
机译:纳米颗粒是用于癌症诊断和治疗的有前途的平台。已经对材料的不同种类和形状进行了研究,以建立设计原则,以实现医疗货物在肿瘤和健康组织之间的有效分配。分子靶向策略与特定的纳米颗粒形状相结合可赋予载体组织特异性,从而实现细胞的细胞特异性递送。我们最近开发了一种丝状平台技术,其中以植物病毒马铃薯病毒X(PVX)为支架。这些颗粒是515×13 nm的柔性细丝,可促进被动肿瘤归巢。在这里,我们试图通过包括基于环状RGD肽的分子靶向策略来推进PVX平台,该RGD肽特异性结合在肿瘤细胞,新脉管系统和转移位点上调的整合素。尽管在体外RGD靶向的细丝优于PEG化的隐蔽细丝,但在小鼠肿瘤模型中,增强的肿瘤细胞靶向并未转化为改善的体内肿瘤归巢。 RGD-PVX和PEG-PVX细丝显示出相反的生物分布特征。两种制剂均可通过肝脏和脾脏清除,但只有隐形丝聚集在肿瘤中,而靶向RGD的丝被隔离在肺中。这些结果为基于病毒的纳米颗粒的设计原理提供了见识,这种纳米颗粒促进了将医疗货物运送到适当的细胞类型。

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