Radioprotective effect of olanzapine as an anti-psychotic drug against genotoxicity and apoptosis induced by ionizing radiation on human lymphocytes

2019 ◽  
Vol 46 (6) ◽  
pp. 5909-5917
Author(s):  
Mohammad Asghari ◽  
Zahra Shaghaghi ◽  
Soghra Farzipour ◽  
Arash Ghasemi ◽  
Seyed Jalal Hosseinimehr
2018 ◽  
Vol 11 (2) ◽  
pp. 109-115 ◽  
Author(s):  
Zohreh Zal ◽  
Arash Ghasemi ◽  
Shima Azizi ◽  
Hossein Asgarian-Omran ◽  
Azadeh Montazeri ◽  
...  

2018 ◽  
Vol 15 (11) ◽  
pp. 1147-1154 ◽  
Author(s):  
Fatemeh Alizadeh ◽  
Mohammad Asghari ◽  
Seyedeh Atekeh Torabizadeh ◽  
Najmeh Rahmanian ◽  
Arash Ghasemi ◽  
...  

Author(s):  
Roya Kazemi ◽  
Seyed Jalal Hosseinimehr

Objective: Pioglitazone (PG) is used to control high blood sugar in patients with type 2 diabetes mellitus. PG acts as a peroxisome proliferator-activated receptor γ agonist. In addition to the insulin-sensitizing effect, PG possesses anti-inflammatory effect. In this study, the protective effect of PG was evaluated against DNA damage induced by ionizing radiation in human healthy lymphocytes. Methods: The microtubes containing human whole blood were treated with PG at various concentrations (1-50 μM) for three hours. Then, the blood samples were irradiated with X-ray. Lymphocytes were cultured for determining the frequency of micronuclei as a genotoxicity biomarker in binucleated lymphocytes. Results: The mean percentage of micronuclei was significantly increased in human lymphocytes when were exposed to IR, while it was decreased in lymphocytes pre-treated with PG. The maximum reduction in the frequency of micronuclei in irradiated lymphocytes was observed at 5 μM of PG treatment (48% decrease). Conclusion: The anti-inflammatory property is suggested the mechanism action of PG for protection human lymphocytes against genotoxicity induced by ionizing radiation.


2021 ◽  
Vol 39 (1) ◽  
pp. 48-60
Author(s):  
Tamizh Selvan Gnana Sekaran ◽  
Vishakh R. Kedilaya ◽  
Suchetha N. Kumari ◽  
Praveenkumar Shetty ◽  
Pavan Gollapalli

2019 ◽  
Vol 13 (3) ◽  
pp. 295-301
Author(s):  
M. S. Petrosyan ◽  
L. S. Nersesova ◽  
N. A. Adamyan ◽  
M. G. Gazaryants ◽  
Zh. I. Akopyan

2015 ◽  
Vol 33 (3) ◽  
pp. 256 ◽  
Author(s):  
Seyed Jalal Hosseinimehr ◽  
Reyhaneh Nobakht ◽  
Arash Ghasemi ◽  
Tayyeb Allahverdi Pourfallah

1994 ◽  
Vol 72 (11-12) ◽  
pp. 475-482 ◽  
Author(s):  
S. P. Cregan ◽  
D. R. Boreham ◽  
P. R. Walker ◽  
D. L. Brown ◽  
R. E. J. Mitchel

We have investigated the influence of the cellular adaptive response to ionizing radiation on radiation-induced apoptosis in human cells. The adaptive response is believed to be a protective mechanism that confers resistance to the detrimental effects of ionizing radiation and that can be induced by different agents, including hyperthermia and radiation. We have used fluorescence analysis of DNA unwinding (FADU) to assay the induction of apoptosis in human peripheral blood lymphocytes by ionizing radiation. Using the FADU assay, we have observed the initial radiation-induced DNA damage, its subsequent disappearance due to enzymatic repair, and its time- and dose-dependent reappearance. We believe this reappearance of DNA damage to be indicative of the DNA fragmentation event associated with apoptosis. This interpretation has been supported at the individual cell level using an in situ terminal deoxynucleotidyl transferase (TDT) assay (Apoptag, Oncor Inc.), which detects the 3′-hydroxyl ends of fragmented DNA, and by fluorescence analysis of nuclear morphology in Hoechst 33258 stained cells. Pretreatment of cells with low-dose γ-radiation (0.1 Gy) or mild hyperthermia (40 °C for 30 min) altered the extent of radiation-induced (3 Gy) apoptosis. Both pretreatments sensitized lymphocytes to become apoptotic after the 3-Gy radiation exposure. This sensitization may represent an adaptive response mechanism that reduces the risk that genetically damaged cells will proliferate. The ability to modify the probability of radiation-induced apoptosis may lower the cancer risk from a radiation exposure.Key words: apoptosis, adaptive response, ionizing radiation, hyperthermia.


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