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Antitumor Activity of Alloy and Core-Shell-Type Bimetallic AgAu Nanoparticles

机译:合金和核壳型双金属AgAu纳米粒子的抗肿瘤活性

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摘要

Nanoparticles (NPs) of noble metals, namely gold and silver, remain promising anticancer agents capable of enhancing current surgery- and chemotherapeutic-based approaches in cancer treatment. Bimetallic AgAu composition can be used as a more effective agent due to the synergetic effect. Among the physicochemical parameters affecting gold and silver nanoparticle biological activity, a primary concern relates to their size, shape, composition, charge, etc. However, the impact of metal components/composition as well as metal topological distribution within NPs is incompletely characterized and remains to be further elucidated and clarified. In the present work, we tested a series of colloidal solutions of AgAu NPs of alloy and core-shell type for an antitumor activity depending on metal molar ratios (Ag:Au = 1:1; 1:3; 3:1) and topological distribution of gold and silver within NPs (AucoreAgshell; AgcoreAushell). The efficacy at which an administration of the gold and silver NPs inhibits mouse Lewis lung carcinoma (LLC) growth in vivo was compared. The data suggest that in vivo antitumor activity of the studied NPs strongly depends on gold and silver interaction arising from their ordered topological distribution. NPs with Ag core covered by Au shell were the most effective among the NPs tested towards LLC tumor growth and metastasizing inhibition. Our data show that among the NPs tested in this study, AgcoreAushell NPs may serve as a suitable anticancerous prototype.
机译:贵金属(即金和银)的纳米颗粒(NPs)仍是有前途的抗癌剂,能够增强当前基于手术和化学疗法的癌症治疗方法。由于具有协同作用,双金属AgAu组合物可以用作更有效的试剂。在影响金和银纳米颗粒生物活性的物理化学参数中,主要关注的是它们的大小,形状,组成,电荷等。但是,金属成分/组成以及金属纳米粒子内金属拓扑分布的影响尚未完全表征,并且仍然存在有待进一步阐明和澄清。在本工作中,我们测试了一系列合金和核壳型AgAu NPs胶体溶液的抗肿瘤活性,具体取决于金属摩尔比(Ag:Au = 1:1; 1:3; 3:1)和拓扑NP中金和银的分布(AucoreAgshell; AgcoreAushell)。比较了在体内施用金和银NPs抑制小鼠Lewis肺癌(LLC)生长的功效。数据表明,所研究的NP的体内抗肿瘤活性强烈取决于其有序拓扑分布所产生的金和银相互作用。在被测试的针对LLC肿瘤生长和转移抑制的NP中,具有被Au壳覆盖的Ag核的NP是最有效的。我们的数据表明,在这项研究中测试的NP中,AgcoreAushell NP可以作为合适的抗癌原型。

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