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Anticancer activity of biogenerated silver nanoparticles: an integrated proteomic investigation

Authors :
Salvatore Feo
Gianluca Di Cara
Claudia Faleri
Franco Baldi
Nadia Ninfa Albanese
Miriam Buttacavoli
Rosa Alduina
Giuseppe Gallo
Michele Gallo
Patrizia Cancemi
Giuseppe Pizzolanti
Miriam, B.
Nadia Ninfa Albanese
Gianluca Di Cara
Rosa, A.
Claudia, F.
Michele, G.
Giuseppe, P.
Giuseppe, G.
Salvatore, F.
Franco, B.
Patrizia, C.
Source :
Oncotarget
Publication Year :
2018
Publisher :
Albany, N.Y. : Impact Journals, 2018.

Abstract

Silver nanoparticles (AgNPs), embedded into a specific polysaccharide (EPS), were biogenerated by Klebsiella oxytoca DSM 29614 under aerobic (AgNPs-EPSaer) and anaerobic conditions (AgNPs-EPSanaer). Both AgNPs-EPS matrices were tested by MTT assay for cytotoxic activity against human breast (SKBR3 and 8701-BC) and colon (HT-29, HCT 116 and Caco-2) cancer cell lines, revealing AgNPs-EPSaer as the most active, in terms of IC50, with a more pronounced efficacy against breast cancer cell lines. Therefore, colony forming capability, morphological changes, generation of reactive oxygen species (ROS), induction of apoptosis and autophagy, inhibition of migratory and invasive capabilities and proteomic changes were investigated using SKBR3 breast cancer cells with the aim to elucidate AgNPs-EPSaer mode of action. In particular, AgNPs-EPSaer induced a significant decrease of cell motility and MMP-2 and MMP-9 activity and a significant increase of ROS generation, which, in turn, supported cell death mainly through autophagy and in a minor extend through apoptosis. Consistently, TEM micrographs and the determination of total silver in subcellular fractions indicated that the Ag+ accumulated preferentially in mitochondria and in smaller concentrations in nucleus, where interact with DNA. Interestingly, these evidences were confirmed by a differential proteomic analysis that highlighted important pathways involved in AgNPs-EPSaer toxicity, including endoplasmic reticulum stress, oxidative stress and mitochondrial impairment triggering cell death trough apoptosis and/or autophagy activation.

Details

Language :
English
Database :
OpenAIRE
Journal :
Oncotarget
Accession number :
edsair.doi.dedup.....0a496ef933dea0d7b555909add7d766f