Laboratory of Biology of Eukaryotic Cells, National Institute of Metrology, Quality and Technology - Inmetro, Duque de Caxias, RJ 25250-020, Brazil.
Laboratory of Biology of Eukaryotic Cells, National Institute of Metrology, Quality and Technology - Inmetro, Duque de Caxias, RJ 25250-020, Brazil.
Toxicol In Vitro. 2024 Aug;99:105869. doi: 10.1016/j.tiv.2024.105869. Epub 2024 Jun 5.
Silver nanoparticles (AgNPs) hold promise for cancer therapy. This study aimed to evaluate their impact on tumor and non-tumor cell number, viability, and morphology. Antitumor activity was tested on U-87MG (glioblastoma) and DU-145 (prostate cancer) cell lines. Treatment with AgNPs notably reached a reduction of U-87MG and DU-145 cell growth by 89.30% and 79.74%, respectively, resulting in slower growth rates. AgNPs induced DNA damage, evidenced by reduced nuclear area and DNA content via fluorescent image-based analyses. Conversely, HFF-1 non-tumor cells displayed no significant changes post-AgNPs exposure. Viability assays revealed substantial reductions in U-87MG and DU-145 cells (79% and 63% in MTT assays, 30% and 52.2% in high-content analyses), while HFF-1 cells exhibited lower sensitivity. Tumor cells had notably lower IC values than non-tumor cells, indicating selective susceptibility. Transmission electron microscopy (TEM) showed morphological changes post-AgNPs administration, including increased vacuoles, myelin figures, membrane ghosts, cellular extravasation, and membrane projections. The findings suggest the potential of AgNPs against glioblastoma and prostate cancer, necessitating further exploration across other cancer cell lines.
银纳米粒子(AgNPs)在癌症治疗方面具有广阔的应用前景。本研究旨在评估其对肿瘤细胞和非肿瘤细胞数量、活力和形态的影响。采用 U-87MG(胶质母细胞瘤)和 DU-145(前列腺癌)细胞系对其抗肿瘤活性进行了测试。AgNPs 的处理显著降低了 U-87MG 和 DU-145 细胞的生长,抑制率分别达到 89.30%和 79.74%,导致细胞生长速度减慢。AgNPs 通过荧光图像分析导致 DNA 损伤,表现为核面积和 DNA 含量减少。相反,AgNPs 暴露后 HFF-1 非肿瘤细胞没有明显变化。细胞活力检测显示 U-87MG 和 DU-145 细胞活力显著降低(MTT 法分别降低了 79%和 63%,高内涵分析分别降低了 30%和 52.2%),而 HFF-1 细胞的敏感性较低。肿瘤细胞的 IC 值明显低于非肿瘤细胞,表明其对 AgNPs 具有选择性敏感性。透射电子显微镜(TEM)显示 AgNPs 处理后细胞形态发生变化,包括空泡增多、髓磷脂样结构、膜幻影、细胞外渗和膜突起。这些发现表明 AgNPs 具有治疗胶质母细胞瘤和前列腺癌的潜力,需要进一步在其他癌细胞系中进行探索。