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首页> 外文期刊>RSC Advances >Green silver nanoparticles for drug transport, bioactivities and a bacterium (Bacillus subtilis)-mediated comparative nano-patterning feature
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Green silver nanoparticles for drug transport, bioactivities and a bacterium (Bacillus subtilis)-mediated comparative nano-patterning feature

机译:用于药物转运,生物活化和细菌(枯草芽孢杆菌)介导的比较纳米图案化特征的绿银纳米粒子

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The ‘green’ synthetic aspects of functionally potent and biologically relevant nanomaterials are a crucial research objective. Pursuing this concept, we have investigated a green synthetic scheme for the sunlight-mediated generation of luminescent silver nanoparticles, which become stabilized via a supramolecular hydrogel (SHGel) network, as already reported by our group. In vitro and in vivo toxicity studies confirm the biologically relevant nature of SHGel-capped Ag NPs. Nontoxic SHGel-capped Ag NPs were intelligently used for the transport of drugs, including antifilarial and antibiotic agents, into cells. Apart from this activity, SHGel-capped Ag NPs and our previously reported nontoxic DNA hydrogel-capped Ag NPs are potent against pathogens and parasites. Most interestingly, the nanostructural patterns of SHGel- and DNA hydrogel-capped Ag NPs have been transformed into cotyledon- and flower bud-shaped forms of nanosilver, respectively, during their chemotherapeutic action against a particular bacterium, Bacillus subtilis . Transmission electron microscopy was used for the visualization of several patterns of nanosilver and the incorporation of Ag NPs into macrophages.
机译:功能性有效和生物相关纳米材料的“绿色”的合成方面是一个至关重要的研究目标。追求这一概念,我们研究了用于阳光介导的发光银纳米颗粒的绿色综合方案,该制型银纳米粒子通过Suprametular Hydrogel(Shgel)网络稳定,如我们的组已经报道。体外和体内毒性研究证实了Shgel封端的Ag NPS的生物学相关性质。无毒的Shgel-Capped Ag NPS智能地用于将药物运输,包括防污剂和抗生素剂,进入细胞。除此之外,除了这种活性,Shgel-Capped Ag NPS和我们先前报道的无毒DNA水凝胶封端的AG NPS是有效的对抗病原体和寄生虫。最有意义地,在对特定细菌的化学治疗作用下,Shgel-and DNA水凝胶 - 封端的Ag nps的纳米结构图案分别转化为纳米玻璃的纳米玻璃和花芽形式的纳米菌属。透射电子显微镜用于可视化几种纳米玻璃模式和Ag NPS的掺入巨噬细胞。

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