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首页> 外文期刊>Biomacromolecules >Biodistribution of Filamentous Plant Virus Nanoparticles: Pepino Mosaic Virus versus Potato Virus X
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Biodistribution of Filamentous Plant Virus Nanoparticles: Pepino Mosaic Virus versus Potato Virus X

机译:丝状植物病毒纳米粒子的生物分布:辣椒马赛克病毒与马铃薯病毒x

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摘要

Nanoparticles with high aspect ratios have favorable attributes for drug delivery and bioimaging applications based on their enhanced tissue penetration and tumor homing properties. Here, we investigated a novel filamentous viral nanoparticle (VNP) based on the Pepino mosaic virus (PepMV), a relative of the established platform Potato virus X (PVX). We studied the chemical reactivity of PepMV, produced fluorescent versions of PepMV and PVX, and then evaluated their biodistribution in mouse tumor models. We found that PepMV can be conjugated to various small chemical modifiers including fluorescent probes via the amine groups of surface-exposed lysine residues, yielding VNPs carrying payloads of up to 1600 modifiers per particle. Although PepMV and PVX share similarities in particle size and shape, PepMV achieved enhanced tumor homing and less nonspecific tissue distribution compared to PVX in mouse models of triple negative breast cancer and ovarian cancer. In conclusion, PepMV provides a novel tool for nanomedical research but more research is needed to fully exploit the potential of plant VNPs for health applications.
机译:具有高纵横比的纳米颗粒具有基于其增强的组织渗透和肿瘤归巢性能的药物递送和生物分析应用的良好属性。在这里,我们研究了基于肽叶片病毒(PEPMV)的新型丝状病毒纳米粒子(VNP),所建立的平台马铃薯病毒X(PVX)的相对。我们研究了Pepmv的化学反应性,产生的蛋白酚和PVX的荧光版本,然后在小鼠肿瘤模型中评估其生物分布。我们发现Pepmv可以与各种小化学改性剂缀合,包括通过表面暴露的赖氨酸残基的胺基团缀合,包括每颗粒的载有高达1600种改性剂的VNP。虽然PepmV和PVX在粒度和形状中的相似性,但PepmV在三重阴性乳腺癌和卵巢癌的小鼠模型中实现了增强的肿瘤归巢和较少的非特异性组织分布。总之,Pepmv为纳米医科研究提供了一种新颖的工具,但需要更多的研究来充分利用植物VNP的潜力进行健康应用。

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