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Published on: February 15, 2016
Quinobenzothiazine-AZT Hybrids Linked via 1,2,3-Triazole: Rational Design, Synthesis, and Biological Evaluation as
Klaudia Giercuszkiewicz-Haśnik1,2,3, Magdalena Skonieczna1,2, Beata Morak-Młodawska4
1Department of Systems Biology and Engineering, Silesian University of Technology, Akademicka Street 16, 44-100 Gliwice, Poland.
Abstract:
Colorectal cancer is the third most commonly diagnosed cancer worldwide and the second leading cause of cancer-related deaths, while its resistance to treatment continues to represent a major therapeutic challenge. In the present study, a series of phenothiazine derivatives, including hybrids containing a 1,2,3-triazole linker and the zidovudine (AZT) fragment, were synthesized and evaluated for their anticancer activity against colorectal cancer cell lines HCT116 and HT-29 as well as non-cancerous BEAS-2B cells. Cytotoxic activity was determined using the Alamar Blue assay, while the mechanisms of action were investigated by flow cytometric analysis of apoptosis, cell cycle progression, and reactive oxygen species (ROS) generation. Additionally, changes in the expression of genes associated with apoptosis, oxidative stress, and DNA damage response were analyzed by RT-qPCR. The obtained results demonstrated that AZT-containing derivatives exhibited stronger anticancer activity than non-conjugated phenothiazine analogs. Compounds A9-A12 induced pronounced apoptosis and significant disturbances in cell cycle progression, particularly in HCT116 cells. Among the analyzed derivatives, compound A9 displayed the most favorable overall biological profile, combining strong proapoptotic and cytotoxic activity with relatively high selectivity toward cancer cells and moderate effects on non-cancerous cells. The results indicate that molecular hybridization of phenothiazine derivatives with the AZT scaffold represents a promising strategy for the development of novel anticancer agents targeting colorectal cancer.
Insights
New phenothiazine derivatives combined with zidovudine (AZT) show potent anticancer effects against colorectal cancer cells. Compound A9 demonstrated strong efficacy and selectivity, offering a promising strategy for novel cancer therapies.
Area of Science:
- Medicinal Chemistry
- Oncology
- Molecular Biology
Background:
- Colorectal cancer is a leading cause of cancer deaths globally.
- Treatment resistance remains a significant therapeutic hurdle in colorectal cancer management.
Purpose of the Study:
- To synthesize and evaluate novel phenothiazine derivatives, including AZT-linked hybrids, for anticancer activity against colorectal cancer.
- To investigate the mechanisms of action, including apoptosis, cell cycle, and ROS generation.
Main Methods:
- Synthesis of phenothiazine-triazole-AZT hybrids.
- Cytotoxicity assessment using Alamar Blue assay.
- Flow cytometry for apoptosis, cell cycle, and ROS analysis.
- Gene expression analysis via RT-qPCR.
Main Results:
- AZT-containing derivatives showed enhanced anticancer activity compared to non-conjugated analogs.
- Compounds A9-A12 induced significant apoptosis and cell cycle disruption, especially in HCT116 cells.
- Compound A9 exhibited potent cytotoxicity, pro-apoptotic effects, and selectivity towards cancer cells.
Conclusions:
- Molecular hybridization of phenothiazine with AZT is a promising strategy for developing new colorectal cancer therapeutics.
- Compound A9 represents a lead candidate with a favorable biological profile for further investigation.
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