嵌入纳米颗粒的基于多糖的有机框架:葡萄糖醛酸甘露聚糖衍生金复合物抗病毒活性的高级SPR研究

P. Boltovets, S. Kravchenko, Oleksiy Kovalenko, B. Snopok
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引用次数: 2

摘要

基于天然多糖和贵金属纳米颗粒的纳米复合材料是高效抗病毒药物的有希望的候选材料。然而,这些物体的复杂性、多样性和新颖性需要开发新的分析方法来研究这些超分子结构。在这项最近为基于spr的仪器开发的工作中,可变折射(DViFA,固定结构中的密度变化)的概念被用来阐明含有金纳米颗粒的多糖的抗病毒作用机制。通过直接生物学试验验证了SPR数据:研究了从灵芝中提取的天然多糖葡萄糖醛酸氧甘露聚糖(GXM)及其金纳米复合材料对曼陀罗感染烟草花叶病毒(TMV)的影响。这两种药物都能抑制病毒感染的发展。但是,如果在高浓度下,复合材料的特征活性略低于GXM,那么随着稀释度的增加,复合材料的有效性显着增加,最多可增加两倍。有理由认为,抗病毒作用的机制与不再能够感染细胞的病毒簇的形成有关。
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Polysaccharide-Based Organic Frameworks with Embedded Nanoparticles: Advanced SPR Study on the Antiviral Activity of Gold Composites Derived from Glucuronoxylomannan
The nanosized composites based on the natural polysaccharides and nanoparticles of noble metals are promising candidates for efficient antiviral drugs. However, the complexity of such objects, their diversity and novelty necessitate the development of new analytical methods for investigation of such supramolecular architectures. In this work, which was recently developed for SPR-based instrumentation, the concept of variative refraction (DViFA, density variations in fixed architectures) was used to elucidate the mechanism of the antiviral action of a polysaccharide with gold nanoparticles grown in it. The SPR data were confirmed by direct biological tests: the effect of the native polysaccharide glucuronoxylomannan (GXM) obtained from the fungus Ganoderma adspersum and gold nanocomposites thereon on the infection of Datura stramonium with tobacco mosaic virus (TMV) was investigated. Both drugs suppress the development of viral infections. However, if for high concentrations the characteristic activity of the composite is somewhat lower than for GXM, then with an increase in dilution, the effectiveness of the composite increases significantly, up to a twofold excess. It has been reasonably suggested that the mechanism of antiviral action is associated with the formation of clusters of viruses that are no longer capable of infecting cells.
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