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Toxicity of silver nanoparticles in mouse bone marrow-derived dendritic cells: Implications for phenotype

机译:银纳米颗粒在小鼠骨髓源性树突状细胞中的毒性:对表型的影响

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Silver nanoparticles (AgNP) are one of the most studied nanoparticles due to their anti-bacterial, -fungal, -viral, -parasitic, and -inflammatory properties. This raises the need to evaluate the toxicity and biological effects of AgNP in the immune system in order to develop new safer biomedical products. In this study, an AgNP formulation currently approved for veterinary applications was applied to mouse bone marrow-derived dendritic cells (BMDC), considered important antigen-presenting cells of the immune system, to evaluate cytotoxicity, genotoxicity, and any significant influence on expression of cellular markers associated with BMDC phenotype and maturation status. The results showed that after 12?h of AgNP exposure, a significant decrease in BMDC viability occurred at the highest concentration tested (1.0?μg AgNP/ml) and at lower doses, the cells maintained membrane integrity and metabolic activity. DNA damage was not significant with any AgNP level aside from the 1.0?μg AgNP/ml level. Regarding phenotype, no differences in expression of CD40 (co-stimulatory molecule highly present in mature BMDC) or in CD273 (a marker for inhibitory T-cell response) were observed. The current results showed that the toxicity of this AgNP formulation was dose-related. The findings also suggest BMDC could maintain structural conservation of co-stimulatory/co-inhibitory surface molecules after 12?h of exposure to this AgNP. This work represents the first step in identifying the toxic effects of this AgNP formulation on dendritic cells.
机译:银纳米颗粒(AgNP)由于具有抗菌,-真菌,-病毒,-寄生虫和-炎性特性而成为研究最多的纳米颗粒之一。这就需要评估AgNP在免疫系统中的毒性和生物学作用,以便开发出更安全的新型生物医学产品。在这项研究中,目前已批准用于兽医应用的AgNP制剂被应用于小鼠骨髓源性树突状细胞(BMDC)(被认为是免疫系统中重要的抗原呈递细胞),以评估细胞毒性,基因毒性以及对P53表达的任何重大影响与BMDC表型和成熟状态相关的细胞标志物。结果表明,暴露于AgNP 12小时后,在最高测试浓度(1.0µg AgNP / ml)和较低剂量下,BMDC活力显着降低,细胞保持了膜完整性和代谢活性。除1.0?g AgNP / ml水平外,任何AgNP水平对DNA的破坏均不显着。关于表型,未观察到CD40(在成熟BMDC中高度存在的共刺激分子)或CD273(抑制性T细胞应答的标志物)的表达差异。当前结果表明该AgNP制剂的毒性与剂量有关。研究结果还表明,BMDC可以在暴露于该AgNP 12 h后维持共刺激/共抑制表面分子的结构保守性。这项工作代表了确定该AgNP制剂对树突状细胞毒性作用的第一步。

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