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Mapping the Glyco-Gold Nanoparticles of Different Shapes Toxicity Biodistribution and Sequestration in Adult Zebrafish

机译:绘制成年斑马鱼不同形状的毒性生物分布和螯合的糖金纳米颗粒图

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摘要

Glyconanotechnology offers a broad range of applications across basic and translation research. Despite the tremendous progress in glyco-nanomaterials, there is still a huge gap between the basic research and therapeutic applications of these molecules. It has been reported that complexity and the synthetic challenges in glycans synthesis, the cost of the high order in vivo models and large amount of sample consumptions limited the effort to translate the glyco-nanomaterials into clinical applications. In this regards, several promising simple animal models for preliminary, quick analysis of the nanomaterials activities has been proposed. Herein, we have studied a systematic evaluation of the toxicity, biodistribution of fluorescently tagged PEG and mannose-capped gold nanoparticles (AuNPs) of three different shapes (sphere, rod, and star) in the adult zebrafish model, which could accelerate and provide preliminary results for further experiments in the higher order animal system. ICP-MS analysis and confocal images of various zebrafish organs revealed that rod-AuNPs exhibited the fast uptake. While, star-AuNPs displayed prolong sequestration, demonstrating its potential therapeutic efficacy in drug delivery.
机译:糖纳米技术在基础研究和翻译研究中提供了广泛的应用。尽管糖纳米材料取得了巨大进步,但这些分子的基础研究与治疗应用之间仍然存在巨大差距。据报道,聚糖合成的复杂性和合成挑战,体内高阶模型的成本以及大量样品消耗限制了将糖纳米材料转化为临床应用的努力。在这方面,已经提出了用于纳米材料活性的初步,快速分析的几种有希望的简单动物模型。本文中,我们研究了成年斑马鱼模型中三种不同形状(球形,杆形和星形)的荧光标记的PEG和甘露糖帽的金纳米颗粒(AuNPs)的毒性,生物分布的系统评价,这可以加速并提供初步的在更高阶动物系统中进行进一步实验的结果。各种斑马鱼器官的ICP-MS分析和共聚焦图像表明,杆状AuNPs吸收快。同时,星型AuNPs的螯合时间延长,证明了其在药物递送中的潜在治疗功效。

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