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首页> 外文期刊>International Journal of Molecular Sciences >Comparative in Vivo Assessment of Some Adverse Bioeffects of Equidimensional Gold and Silver Nanoparticles and the Attenuation of Nanosilver’s Effects with a Complex of Innocuous Bioprotectors
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Comparative in Vivo Assessment of Some Adverse Bioeffects of Equidimensional Gold and Silver Nanoparticles and the Attenuation of Nanosilver’s Effects with a Complex of Innocuous Bioprotectors

机译:比较体内等效金银纳米颗粒的一些不良生物效应的体内评估以及复合无害生物保护剂对纳米银的影响的减弱

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Stable suspensions of nanogold (NG) and nanosilver (NS) with mean particle diameter 50 and 49 nm, respectively, were prepared by laser ablation of metals in water. To assess rat’s pulmonary phagocytosis response to a single intratracheal instillation of these suspensions, we used optical, transmission electron, and semi-contact atomic force microscopy. NG and NS were also repeatedly injected intraperitoneally into rats at a dose of 10 mg/kg (0.5 mg per mL of deionized water) three times a week, up to 20 injections. A group of rats was thus injected with NS after oral administration of a “bioprotective complex” (BPC) comprised of pectin, multivitamins, some amino acids, calcium, selenium, and omega-3 PUFA. After the termination of the injections, many functional and biochemical indices and histopathological features of the spleen, kidneys and liver were evaluated for signs of toxicity, and accumulation of NG or NS in these organs was measured. From the same rats, we obtained cell suspensions of different tissues for performing the RAPD test. It was demonstrated that, although both nanometals were adversely bioactive in all respects considered in this study, NS was more noxious as compared with NG, and that the BPC tested by us attenuated both the toxicity and genotoxicity of NS.
机译:通过激光烧蚀水中的金属,分别制备了平均粒径分别为50和49 nm的纳米金(NG)和纳米银(NS)的稳定悬浮液。为了评估对这些悬液进行气管内滴注对大鼠的肺吞噬反应,我们使用了光学,透射电子和半接触式原子力显微镜。 NG和NS还每周以10毫克/千克(每毫升去离子水0.5毫克)的剂量反复腹膜内注射到大鼠中,每周三次,最多20次。因此,一组大鼠在口服施用由果胶,多种维生素,某些氨基酸,钙,硒和omega-3 PUFA组成的“生物保护复合物”(BPC)后被注射NS。注射终止后,评估脾,肾和肝的许多功能和生化指标以及组织病理学特征的毒性迹象,并测量这些器官中NG或NS的积累。从同一只大鼠中,我们获得了用于进行RAPD测试的不同组织的细胞悬液。结果表明,尽管本研究中考虑的两种纳米金属均具有不利的生物活性,但与NG相比,NS的毒性更大,而且我们测试的BPC减弱了NS的毒性和遗传毒性。

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