Adolphe Merkle Institute, University of Fribourg, Chemin des Verdiers 4, 1700 Fribourg, Switzerland.
Department of Chemistry, University of Fribourg, Chemin du Musée 9, 1700 Fribourg, Switzerland.
Cells. 2020 Sep 15;9(9):2099. doi: 10.3390/cells9092099.
Silica nanoparticles (NPs) are widely used in various industrial and biomedical applications. Little is known about the cellular uptake of co-exposed silica particles, as can be expected in our daily life. In addition, an inflamed microenvironment might affect a NP's uptake and a cell's physiological response. Herein, prestimulated mouse J774A.1 macrophages with bacterial lipopolysaccharide were post-exposed to micron- and nanosized silica particles, either alone or together, i.e., simultaneously or sequentially, for different time points. The results indicated a morphological change and increased expression of tumor necrosis factor alpha in lipopolysaccharide prestimulated cells, suggesting a M1-polarization phenotype. Confocal laser scanning microscopy revealed the intracellular accumulation and uptake of both particle types for all exposure conditions. A flow cytometry analysis showed an increased particle uptake in lipopolysaccharide prestimulated macrophages. However, no differences were observed in particle uptakes between single- and co-exposure conditions. We did not observe any colocalization between the two silica (SiO) particles. However, there was a positive colocalization between lysosomes and nanosized silica but only a few colocalized events with micro-sized silica particles. This suggests differential intracellular localizations of silica particles in macrophages and a possible activation of distinct endocytic pathways. The results demonstrate that the cellular uptake of NPs is modulated in inflamed macrophages but not in the presence of micron-sized particles.
硅纳米颗粒(NPs)广泛应用于各种工业和生物医学应用。对于在日常生活中可能会同时暴露于硅颗粒的细胞摄取情况,我们知之甚少。此外,发炎的微环境可能会影响 NP 的摄取和细胞的生理反应。在此,预先用细菌脂多糖刺激的小鼠 J774A.1 巨噬细胞随后单独或同时(即同时或顺序)暴露于微米和纳米级硅颗粒,暴露不同的时间点。结果表明,脂多糖预处理细胞的形态发生变化,肿瘤坏死因子-α表达增加,表明 M1 极化表型。共聚焦激光扫描显微镜显示,对于所有暴露条件,两种颗粒类型均在细胞内积累和摄取。流式细胞术分析显示,脂多糖预处理的巨噬细胞中颗粒摄取增加。然而,在单一和共同暴露条件下,颗粒摄取没有差异。我们没有观察到两种硅(SiO)颗粒之间的任何共定位。然而,在纳米级硅中观察到溶酶体和纳米级硅之间的阳性共定位,但与微米级硅颗粒只有少数共定位事件。这表明巨噬细胞中硅颗粒的细胞内定位不同,可能激活了不同的内吞途径。结果表明,在发炎的巨噬细胞中,NP 的细胞摄取受到调节,但在存在微米级颗粒时不受调节。