Two Sides to the Same Coin-Cytotoxicity vs. Potential Metastatic Activity of AgNPs Relative to Triple-Negative Human Breast Cancer MDA-MB-436 Cells
MDA-MB-436; actin cytoskeleton; breast cancer; cytotoxicity; inflammation; metastasis; oxidative stress; silver nanoparticles.- Molecules
- 4.6
- 2020 May 20;25(10):2375.
- Human
- 抗体芯片
- 免疫/内分泌
- 免疫/内分泌
- 其它细胞
- 乳腺癌
- Bad,TRAIL R1/DR4,PON2,Bax,TRAIL R2/DR5,p21/CIP1/CDNK1A,Bcl-2,FADD,p27/Kip1,Bcl-x,Fas/TNFSF6,Phospho-p53 (S15),Pro-Caspase-3,HIF-1 alpha,Phospho-p53 (S46),Cleaved Caspase-3,HO-1/HMOX1/HSP32,Phospho-p53 (S392),Catalase,HO-2/HMOX2,Phospho-Rad17 (S635),cIAP-1,HSP27,Pro-Caspase-3,cIAP-2,HSP60,SMAC/Diablo,Claspin,HSP70,Survivin,Clusterin,HTRA2/Omi,TNF RI/TNFRSF1A,Cytochrome c,Livin,XIAP
相关货号
LXAH036-1LXAH036-2
Abstract
Silver nanoparticles (AgNPs) are used in many fields of industry and medicine. Despite the well-established antimicrobial activity, AgNPs are foreseen to be used as anticancer drugs due to the unusual feature-inability to induce drug resistance in cancer cells. The aim of the study was to assess biological activity of AgNPs against MDA-MB-436 cells. The cells were derived from triple-negative breast cancer, a type of breast cancer with poor prognosis and is particularly difficult to cure. AgNPs were toxic to MDA-MB-436 cells and the probable mechanism of toxicity was the induction of oxidative stress. These promising effects, giving the opportunity to use AgNPs as an anti-cancer agent should, however, be treated with caution in the light of further results. Namely, the treatment of MDA-MB-436 cells with AgNPs was associated with the increased secretion of several cytokines and chemokines, which were important in breast cancer metastasis. Finally, changes in the actin cytoskeleton of MDA-MB-436 cells under the influence of AgNPs treatment were also observed.Keywords:MDA-MB-436; actin cytoskeleton; breast cancer; cytotoxicity; inflammation; metastasis; oxidative stress; silver nanoparticles.
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