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Published on: February 6, 2015
The Multidirectional Effect of Azelastine Hydrochloride on Cervical Cancer Cells
Ewa Trybus1, Teodora Król1, Wojciech Trybus1
1Department of Medical Biology, The Jan Kochanowski University, Uniwersytecka 7, 25-406 Kielce, Poland.
Abstract:
A major cause of cancer cell resistance to chemotherapeutics is the blocking of apoptosis and induction of autophagy in the context of cell adaptation and survival. Therefore, new compounds are being sought, also among drugs that are commonly used in other therapies. Due to the involvement of histamine in the regulation of processes occurring during the development of many types of cancer, antihistamines are now receiving special attention. Our study concerned the identification of new mechanisms of action of azelastine hydrochloride, used in antiallergic treatment. The study was performed on HeLa cells treated with different concentrations of azelastine (15-90 µM). Cell cycle, level of autophagy (LC3 protein activity) and apoptosis (annexin V assay), activity of caspase 3/7, anti-apoptotic protein of Bcl-2 family, ROS concentration, measurement of mitochondrial membrane potential (Δψm), and level of phosphorylated H2A.X in response to DSB were evaluated by cytometric method. Cellular changes were also demonstrated at the level of transmission electron microscopy and optical and fluorescence microscopy. Lysosomal enzyme activities-cathepsin D and L and cell viability (MTT assay) were assessed spectrophotometrically. Results: Azelastine in concentrations of 15-25 µM induced degradation processes, vacuolization, increase in cathepsin D and L activity, and LC3 protein activation. By increasing ROS, it also caused DNA damage and blocked cells in the S phase of the cell cycle. At the concentrations of 45-90 µM, azelastine clearly promoted apoptosis by activation of caspase 3/7 and inactivation of Bcl-2 protein. Fragmentation of cell nucleus was confirmed by DAPI staining. Changes were also found in the endoplasmic reticulum and mitochondria, whose damage was confirmed by staining with rhodamine 123 and in the MTT test. Azelastine decreased the mitotic index and induced mitotic catastrophe. Studies demonstrated the multidirectional effects of azelastine on HeLa cells, including anti-proliferative, cytotoxic, autophagic, and apoptotic properties, which were the predominant mechanism of death. The revealed novel properties of azelastine may be practically used in anti-cancer therapy in the future.
Insights
Azelastine hydrochloride, an antihistamine, demonstrates anti-cancer properties by inducing autophagy and apoptosis in HeLa cells. This drug exhibits multi-directional effects, including anti-proliferative and cytotoxic activities, suggesting potential in future cancer therapies.
Area of Science:
- Oncology
- Pharmacology
Background:
- Cancer cells develop resistance to chemotherapy by blocking apoptosis and inducing autophagy.
- Antihistamines, like azelastine hydrochloride, are being investigated for anti-cancer potential due to histamine's role in cancer development.
Purpose of the Study:
- To identify novel mechanisms of action for azelastine hydrochloride in HeLa cancer cells.
- To evaluate the anti-proliferative, cytotoxic, autophagic, and apoptotic effects of azelastine hydrochloride.
Main Methods:
- HeLa cells were treated with varying concentrations of azelastine hydrochloride.
- Evaluated cell cycle, autophagy (LC3 protein), apoptosis (annexin V assay), caspase 3/7 activity, Bcl-2 protein levels, ROS concentration, mitochondrial membrane potential, and DNA damage (H2A.X).
- Utilized transmission electron microscopy, fluorescence microscopy, and MTT assay for cell viability and lysosomal enzyme activity (cathepsin D and L).
Main Results:
- Low azelastine concentrations (15-25 µM) induced autophagy, vacuolization, increased cathepsin D/L activity, and LC3 activation, leading to DNA damage and S-phase cell cycle arrest.
- High azelastine concentrations (45-90 µM) promoted apoptosis via caspase 3/7 activation and Bcl-2 inactivation, causing nuclear fragmentation and damage to endoplasmic reticulum and mitochondria.
- Azelastine reduced mitotic index, induced mitotic catastrophe, and demonstrated dose-dependent anti-proliferative and cytotoxic effects.
Conclusions:
- Azelastine hydrochloride exhibits multidirectional anti-cancer effects on HeLa cells, including induction of autophagy and apoptosis.
- The study reveals novel properties of azelastine hydrochloride, highlighting its potential application in future anti-cancer therapeutic strategies.
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