[Home ] [Archive]    
:: Main :: About :: Current Issue :: Archive :: Search :: Submit :: Contact ::
Main Menu
Home::
Journal Information::
Articles archive::
For Authors::
For Reviewers::
Registration::
Contact us::
Site Facilities::
::
Search in website

Advanced Search
..
Receive site information
Enter your Email in the following box to receive the site news and information.
..
Open Access
AWT IMAGE
..
MeSH Browser

AWT IMAGE

..
Scopus quartile
..
Google Scholar

Citation Indices from GS

AllSince 2020
Citations37123066
h-index2725
i10-index128103

..
ORCID
..
EBSCO
..
:: Search published articles ::
Showing 1 results for Ahmadi-Zeidabadi

Fahimeh Kazemi, Marzie Esmaeeli, Peyman Mohammadzadehjahani, Mahnaz Amiri, Parisa Vosough, Meysam Ahmadi-Zeidabadi,
Volume 9, Issue 4 ( Autumn 2022)
Abstract

Background: Titanium dioxide (TiO2) nanoparticles (NPs) are among the most important and usable photocatalysts. Recently, the biological properties of these NPs, particularly, its anticancer activity, have been considered. Glioblastoma and neuroblastoma are two fatal brain tumors with a high mortality rate in humans, the hope for treatment of which is weak by the common methods.
Methods: In this study, the cytotoxicity effects of TiO2 alone and in combination with ultraviolet A (UVA) irradiation on two different cell lines, neuroblastoma (SH-SY5Y) and glioblastoma U87, were investigated. After administration of 10, 50, 100, and 500 μg/mL TiO2, 0.043 and 1.4 mW/cm2 UVA irradiation, cell viability was investigated after 4, 24, and 48 hours by 3-(4,5-dimethylthiazol-2-yl)-2,5- diphenyltetrazolium bromide (MTT) assay.
Results: MTT assay and light microscope demonstrated that the effect of TiO2 NPs varied based on the dose of the substance, the impact time, the cell type, and the amount of radiation. In this study, for NPs alone, both toxicity and non-toxicity of the substance were observed. For NPs in the presence of UV, based on the comparison with its status alone and the difference in the viability assay of the two groups, both the photocatalytic and the coating effect of the NPs were observed.
Conclusion: According to the results, different concentrations of TiO2 can be used for different purposes. Low concentrations of TiO2 can be used to increase the efficiency of photodynamic therapy and high concentrations of TiO2 can be used to protect the normal cell. This strategy improves the photodynamic therapy and reduces the harmful effects.


Page 1 from 1     

Environmental Health Engineering And Management Journal Environmental Health Engineering And Management Journal
Persian site map - English site map - Created in 0.06 seconds with 37 queries by YEKTAWEB 4714