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Published on: June 9, 2023
Carbazole derivatives: a promising scenario for breast cancer treatment
Anna Caruso, Domenico Iacopetta, Francesco Puoci
1Department of Pharmacy, Health and Nutritional Sciences University of Calabria, Arcavacata di Rende (CS), 87036, ITALY. s.sinicropi@unical.it.
Abstract:
Chemotherapeutics used in cancer treatment may elicit pleiotropic effects interfering, for instance, directly on DNA metabolism or on endoplasmic organelles functions. Recently there has been a trend towards the use of molecular-targeted therapies as alternative treatments of cancer, arising from the need to overcome the onset of undesired side effects or drug-resistance. Thus, a major challenge is the design and synthesis of new agents able to interact with specific cellular components, often over-expressed or altered in cancerous cells, such as telomerase and topoisomerase or protein kinases, with reduced toxicity at effective doses. The main molecular targets for the development of new anticancer drugs include: cell surface receptors, signal transduction pathways, enzymes, gene transcription, ubiquitin-proteasome/heat shock proteins, and anti-angiogenic agents. Several natural or synthetic polycyclic molecules with carbazolic nucleus, which show attractive drug-like properties, were identified with the aim to increase their biological activities and their specificity, obtaining cytotoxic agents effective in a panel of cancer cell lines. The cytotoxic profile of these compounds has been assessed using several in vitro assays as, for instance, MTT, colony formation, and flow cytometry assays and some of these compounds showed an interesting profile at sub-micromolar concentrations. The usefulness of some carbazole derivatives has been demonstrated, as well, in preclinical studies.
Insights
Researchers are developing novel carbazole derivatives as targeted cancer therapies. These compounds show potent cytotoxic effects against cancer cells in vitro, offering a promising alternative to traditional chemotherapy with potentially fewer side effects.
Area of Science:
- Medicinal Chemistry
- Pharmacology
- Oncology
Background:
- Traditional chemotherapy can cause significant side effects and drug resistance.
- Molecular-targeted therapies aim to overcome these limitations by targeting cancer-specific components.
- Developing new anticancer agents with improved efficacy and reduced toxicity is a critical challenge.
Purpose of the Study:
- To design and synthesize novel polycyclic molecules with a carbazolic nucleus.
- To enhance the biological activity and specificity of these compounds as anticancer agents.
- To evaluate the cytotoxic potential of these carbazole derivatives against various cancer cell lines.
Main Methods:
- Synthesis of natural or synthetic polycyclic molecules featuring a carbazolic nucleus.
- In vitro assessment of cytotoxic profiles using assays like MTT, colony formation, and flow cytometry.
- Evaluation of drug-like properties, biological activity, and specificity.
Main Results:
- Several carbazole derivatives demonstrated significant cytotoxic activity.
- These compounds exhibited effectiveness at sub-micromolar concentrations.
- Promising results were observed in preclinical studies, indicating therapeutic potential.
Conclusions:
- Carbazole derivatives represent a promising class of compounds for developing new anticancer drugs.
- These agents show potential for targeted cancer therapy with enhanced efficacy and specificity.
- Further investigation and preclinical studies support the therapeutic utility of carbazole derivatives in oncology.
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