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Biological evaluation on different human cancer cell lines of novel colchicine analogs
R De Vincenzo1, C Ferlini, M Distefano
1Department of Obstetrics and Gynecology, Catholic University, Rome, Italy.
Abstract:
Three new 7-0-substituted deacetamidothiocolchicine derivatives have been evaluated for their antitumor activity against various human tumor cell lines, some of which express the multidrug resistance (MDR) phenotype, for their impact on the cell cycle and their binding to tubulin. Colchicine and thiocolchicine were used as reference compounds. Thiocolchicine was the most active agent on MDR-negative cells in terms of growth inhibition, whereas for multidrug-resistant cells, thiocolchicone was the most active compound (IC50 = 14 nM). As indicated by statistical analysis, a perfect agreement for the potency order (IC50 values) of the compounds between all the MDR-negative cancer cells (k = 1.00), a poor agreement between MDR-positive and MDR-negative cancer lines, and a moderate agreement (k = 0.50) between the two resistant cancer cells MCF-7 ADRr and CEM VBL were observed. To gain further insight into the mechanism of the antitumor activity of colchicinoids, the most active compounds, colchicone and thiocolchicone, were selected to evaluate their effect on cell cycle, apoptosis, and tubulin interaction. The highest recruitment activity into the G21/M phase of the cell cycle was detected in thiocolchicone-treated breast cancer cells. Interestingly, after 72 h of culture, when the cell cycle block subsided, a consistent amount of DNA fragmentation, a hallmark of apoptosis, was evident. Morphological analysis of MCF-7 ADRr cells confirmed this hypothesis and revealed that thiocolchicone was able to induce apoptosis in this MDR-bearing model. We also demonstrated, using flow cytometry, that thiocolchicone interacts with alpha- and beta-tubulin, thereby affecting the expression of both subunits.
Insights
New thiocolchicine derivatives show potent antitumor activity, particularly against multidrug-resistant (MDR) cancer cells. Thiocolchicone effectively inhibits resistant cell growth and induces apoptosis by interacting with tubulin.
Area of Science:
- Medicinal Chemistry
- Cancer Biology
- Pharmacology
Background:
- Colchicinoids are known for their anticancer properties.
- Multidrug resistance (MDR) is a major challenge in cancer chemotherapy.
- Novel colchicine derivatives are being explored to overcome MDR.
Purpose of the Study:
- Evaluate the antitumor activity of new 7-O-substituted deacetamidothiocolchicine derivatives.
- Investigate their effects on cell cycle, apoptosis, and tubulin interaction.
- Compare their efficacy against MDR-positive and MDR-negative cancer cell lines.
Main Methods:
- Antitumor activity was assessed against various human tumor cell lines.
- Cell cycle analysis and apoptosis assays were performed.
- Tubulin binding was evaluated using flow cytometry.
Main Results:
- Thiocolchicone demonstrated the highest activity against multidrug-resistant cells (IC50 = 14 nM).
- Compounds showed varying potency agreements between MDR-positive and negative cell lines.
- Thiocolchicone induced G2/M cell cycle arrest and apoptosis in MCF-7 ADRr cells.
- Thiocolchicone was shown to interact with alpha- and beta-tubulin.
Conclusions:
- Thiocolchicone is a promising candidate for overcoming multidrug resistance in cancer.
- Its mechanism involves cell cycle arrest, apoptosis induction, and tubulin interaction.
- Further research into these colchicinoid derivatives is warranted for cancer therapy.