Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line
Background: Non-small cell lung cancer (NSCLC) is responsible for up to 85% of deaths associated with lung cancer. Chemotherapy is still an important treatment method on the treatment of inoperable cases. In this study, the anticancer properties of a series of Schiff bases were tested on the A549 c...
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Tehran University of Medical Sciences
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doaj-38807eca84254885b3e5151be8a6d77b2021-10-02T19:17:12ZengTehran University of Medical SciencesIranian Journal of Public Health2251-60852251-60932021-02-0150310.18502/ijph.v50i3.5596Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell LineHasan Ali Zafer SAK0Faruk SÜZERGÖZ1Veli Tarık KASUMOV2Ali Osman GÜROL3Department of Chest Disease, Medical Faculty, Harran University, Sanliurfa, TurkeyDepartment of Biology, Science Art Faculty, Harran University, Sanliurfa, TurkeyDepartment of Chemistry, Science Art Faculty, Harran University, Sanliurfa, Turkey1. Department of Immunology, Aziz Sancar Institute of Experimental Medicine, Istanbul University, Istanbul, Turkey 2. Department of Medical Pharmacology, Istanbul Medicine Faculty, Istanbul University, Istanbul, Turkey Background: Non-small cell lung cancer (NSCLC) is responsible for up to 85% of deaths associated with lung cancer. Chemotherapy is still an important treatment method on the treatment of inoperable cases. In this study, the anticancer properties of a series of Schiff bases were tested on the A549 cell line representing NSCLC. Methods: Fluorinated Schiff bases (compounds 1-6) were synthesized based on 2-amino phenylhydrazines and benzaldehydes containing fluorine were used. The cytotoxic effects of the compounds on the A549 cell line were determined by colorimetric MTT assay and the antiproliferative effects of the compounds on the A549 cell line by the CFSE method. To demonstrate the development of apoptosis, cleaved caspase-3 expression in cells was tested using the immunofluorescence method. Morphological changes indicating apoptosis in cells were determined by histopathological staining methods (H & E, giemza, PAP). Results: The strongest cytotoxic effect on A549 lung cancer cells was obtained with compound 6 (IC50: 0.64 μM) containing 5 fluorine atoms. The strongest antiproliferative effect on A549 cells was achieved with compound 5 (PI: 4.95) carrying 2 fluorine atoms. Apoptosis induction was effective in cell death. In addition to cleaved caspase-3 expression, chromatin condensation, marginalization, and apoptotic bodies were observed in the cells. Conclusion: Some of the compounds tested showed high cytotoxic and antiproliferative effects, indicating that these compounds could be potential chemotherapeutic agent candidates for lung cancer. The result of immunofluorescence and immunohistochemical analysis showing that the cytotoxic effects have been induced by apoptosis is an important advantage. https://ijph.tums.ac.ir/index.php/ijph/article/view/15655Schiff basesIC50A549Lung cancerApoptosis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hasan Ali Zafer SAK Faruk SÜZERGÖZ Veli Tarık KASUMOV Ali Osman GÜROL |
spellingShingle |
Hasan Ali Zafer SAK Faruk SÜZERGÖZ Veli Tarık KASUMOV Ali Osman GÜROL Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line Iranian Journal of Public Health Schiff bases IC50 A549 Lung cancer Apoptosis |
author_facet |
Hasan Ali Zafer SAK Faruk SÜZERGÖZ Veli Tarık KASUMOV Ali Osman GÜROL |
author_sort |
Hasan Ali Zafer SAK |
title |
Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line |
title_short |
Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line |
title_full |
Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line |
title_fullStr |
Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line |
title_full_unstemmed |
Anticancer Properties of Fluorinated Aminophenylhydrazines on A549 Lung Carcinoma Cell Line |
title_sort |
anticancer properties of fluorinated aminophenylhydrazines on a549 lung carcinoma cell line |
publisher |
Tehran University of Medical Sciences |
series |
Iranian Journal of Public Health |
issn |
2251-6085 2251-6093 |
publishDate |
2021-02-01 |
description |
Background: Non-small cell lung cancer (NSCLC) is responsible for up to 85% of deaths associated with lung cancer. Chemotherapy is still an important treatment method on the treatment of inoperable cases. In this study, the anticancer properties of a series of Schiff bases were tested on the A549 cell line representing NSCLC.
Methods: Fluorinated Schiff bases (compounds 1-6) were synthesized based on 2-amino phenylhydrazines and benzaldehydes containing fluorine were used. The cytotoxic effects of the compounds on the A549 cell line were determined by colorimetric MTT assay and the antiproliferative effects of the compounds on the A549 cell line by the CFSE method. To demonstrate the development of apoptosis, cleaved caspase-3 expression in cells was tested using the immunofluorescence method. Morphological changes indicating apoptosis in cells were determined by histopathological staining methods (H & E, giemza, PAP).
Results: The strongest cytotoxic effect on A549 lung cancer cells was obtained with compound 6 (IC50: 0.64 μM) containing 5 fluorine atoms. The strongest antiproliferative effect on A549 cells was achieved with compound 5 (PI: 4.95) carrying 2 fluorine atoms. Apoptosis induction was effective in cell death. In addition to cleaved caspase-3 expression, chromatin condensation, marginalization, and apoptotic bodies were observed in the cells.
Conclusion: Some of the compounds tested showed high cytotoxic and antiproliferative effects, indicating that these compounds could be potential chemotherapeutic agent candidates for lung cancer. The result of immunofluorescence and immunohistochemical analysis showing that the cytotoxic effects have been induced by apoptosis is an important advantage.
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topic |
Schiff bases IC50 A549 Lung cancer Apoptosis |
url |
https://ijph.tums.ac.ir/index.php/ijph/article/view/15655 |
work_keys_str_mv |
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