Necrotic, apoptotic and autophagic cell fates triggered by nanoparticles.
Reza MohammadinejadMohammad Amin MoosaviShima TavakolDeniz Özkan VardarAsieh HosseiniMarveh RahmatiLuciana DiniSalik HussainAli MandegaryDaniel J KlionskyPublished in: Autophagy (2018)
Nanomaterials have gained a rapid increase in use in a variety of applications that pertain to many aspects of human life. The majority of these innovations are centered on medical applications and a range of industrial and environmental uses ranging from electronics to environmental remediation. Despite the advantages of NPs, the knowledge of their toxicological behavior and their interactions with the cellular machinery that determines cell fate is extremely limited. This review is an attempt to summarize and increase our understanding of the mechanistic basis of nanomaterial interactions with the cellular machinery that governs cell fate and activity. We review the mechanisms of NP-induced necrosis, apoptosis and autophagy and potential implications of these pathways in nanomaterial-induced outcomes. Abbreviations: Ag, silver; CdTe, cadmium telluride; CNTs, carbon nanotubes; EC, endothelial cell; GFP, green fluorescent protein; GO, graphene oxide; GSH, glutathione; HUVECs, human umbilical vein endothelial cells; NP, nanoparticle; PEI, polyethylenimine; PVP, polyvinylpyrrolidone; QD, quantum dot; ROS, reactive oxygen species; SiO2, silicon dioxide; SPIONs, superparamagnetic iron oxide nanoparticles; SWCNT, single-walled carbon nanotubes; TiO2, titanium dioxide; USPION, ultra-small super paramagnetic iron oxide; ZnO, zinc oxide.
Keyphrases
- endothelial cells
- high glucose
- cell fate
- cell death
- quantum dots
- iron oxide
- iron oxide nanoparticles
- reactive oxygen species
- walled carbon nanotubes
- carbon nanotubes
- healthcare
- cell cycle arrest
- oxidative stress
- endoplasmic reticulum stress
- diabetic rats
- heavy metals
- human health
- oxide nanoparticles
- vascular endothelial growth factor
- sensitive detection
- single cell
- gold nanoparticles
- cell proliferation
- dna damage
- drug induced
- living cells
- mesenchymal stem cells
- signaling pathway
- life cycle
- fluorescent probe
- label free
- glycemic control
- amino acid
- weight loss
- anti inflammatory
- liquid chromatography
- climate change