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dc.contributor.authorGurkaynak, Tuba Altincekic
dc.contributor.authorOzhan, Gül
dc.contributor.authorAbudayyak, Mahmoud
dc.date.accessioned2021-03-04T10:41:14Z
dc.date.available2021-03-04T10:41:14Z
dc.date.issued2017
dc.identifier.citationAbudayyak M., Gurkaynak T. A. , Ozhan G., "In Vitro Toxicological Assessment of Cobalt Ferrite Nanoparticles in Several Mammalian Cell Types", BIOLOGICAL TRACE ELEMENT RESEARCH, cilt.175, sa.2, ss.458-465, 2017
dc.identifier.issn0163-4984
dc.identifier.otherav_6e73a7fb-84ab-4d7c-b3e0-6873c13d3c40
dc.identifier.othervv_1032021
dc.identifier.urihttp://hdl.handle.net/20.500.12627/76256
dc.identifier.urihttps://doi.org/10.1007/s12011-016-0803-3
dc.description.abstractNanoparticles have been widely used in various fields due to the superior physicochemical properties and functions. As a result, human exposure to nanoparticles increases dramatically. Previous researches have shown that nanoparticles could travel through the respiratory, digestive system, or skin into the blood and then to the secondary organs such as the brain, heart, and liver. Besides, the nanoparticle toxicity is controversial and dependent on the sensitivity of the cell type, route of exposure, and condition, as well as their characteristics. Similarly, cobalt ferrite nanoparticles (CoFe2O4-NPs) have been used in different industrial fields, and have also various application possibilities in medical and biomedical fields. CoFe2O4-NPs induce toxic responses in various organisms such as human, mice, and algae. However, there is a serious deficit of information concerning their effects on human health and the environment. We aimed to investigate the toxic effects of CoFe2O4-NPs on liver (HepG2), colon (Caco-2), lung (A549), and neuron (SH-SY5Y) cells, which reflect different exposure routes in vitro, by using various toxicological endpoints. The cytotoxicity, genotoxicity, oxidative damage, and apoptosis induction of CoFe2O4-NPs (39 +/- 17 nm) were evaluated. After 24 h, the nanoparticles decreased cell viability at ae100 mu g/mL, while increasing viability at > 100 mu g/mL. CoFe2O4-NPs induced DNA and oxidative damage with increased malondialdehyde (MDA) and 8-hydroxy deoxyguanosine (8-OHdG) levels and decreased glutathione (GSH) levels with no change in protein carbonyl (PC) levels. CoFe2O4-NPs had apoptotic effect in HepG2 and Caco-2 cells in a concentration-dependent manner and necrotic effects on SH-SY5Y and A549 cells. Consequently, the adverse effects of CoFe2O4-NPs should raise concern about their safety in consumer products.
dc.language.isoeng
dc.subjectDahili Tıp Bilimleri
dc.subjectİç Hastalıkları
dc.subjectEndokrinoloji ve Metabolizma Hastalıkları
dc.subjectYaşam Bilimleri
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectSitogenetik
dc.subjectTemel Bilimler
dc.subjectTıp
dc.subjectSağlık Bilimleri
dc.subjectKlinik Tıp (MED)
dc.subjectKlinik Tıp
dc.subjectENDOKRİNOLOJİ VE METABOLİZMA
dc.subjectYaşam Bilimleri (LIFE)
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectBİYOKİMYA VE MOLEKÜLER BİYOLOJİ
dc.titleIn Vitro Toxicological Assessment of Cobalt Ferrite Nanoparticles in Several Mammalian Cell Types
dc.typeMakale
dc.relation.journalBIOLOGICAL TRACE ELEMENT RESEARCH
dc.contributor.departmentİstanbul Üniversitesi , ,
dc.identifier.volume175
dc.identifier.issue2
dc.identifier.startpage458
dc.identifier.endpage465
dc.contributor.firstauthorID240426


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