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Furanoic Lipid F-6, A Novel Anti-Cancer Compound that Kills Cancer Cells by Suppressing Proliferation and Inducing
Jassim M Al-Hassan1, Yuan Fang Liu2, Meraj A Khan2
1Department of Biological Sciences, Faculty of Science, Kuwait University, Safat 13060, Kuwait.
Abstract:
Identifying novel anti-cancer drugs is important for devising better cancer treatment options. In a series of studies designed to identify novel therapeutic compounds, we recently showed that a C-20 fatty acid (12,15-epoxy-13,14-dimethyleicosa-12,14-dienoic acid, a furanoic acid or F-6) present in the lipid fraction of the secretions of the Arabian Gulf catfish skin (Arius bilineatus Val.; AGCS) robustly induces neutrophil extracellular trap formation. Here, we demonstrate that a lipid mix (Ft-3) extracted from AGCS and F-6, a component of Ft-3, dose dependently kill two cancer cell lines (leukemic K-562 and breast MDA MB-231). Pure F-6 is approximately 3.5 to 16 times more effective than Ft-3 in killing these cancer cells, respectively. Multiplex assays and network analyses show that F-6 promotes the activation of MAPKs such as Erk, JNK, and p38, and specifically suppresses JNK-mediated c-Jun activation necessary for AP-1-mediated cell survival pathways. In both cell lines, F-6 suppresses PI3K-Akt-mTOR pathway specific proteins, indicating that cell proliferation and Akt-mediated protection of mitochondrial stability are compromised by this treatment. Western blot analyses of cleaved caspase 3 (cCasp3) and poly ADP ribose polymerase (PARP) confirmed that F-6 dose-dependently induced apoptosis in both of these cell lines. In 14-day cell recovery experiments, cells treated with increasing doses of F-6 and Ft-3 fail to recover after subsequent drug washout. In summary, this study demonstrates that C-20 furanoic acid F-6, suppresses cancer cell proliferation and promotes apoptotic cell death in leukemic and breast cancer cells, and prevents cell recovery. Therefore, F-6 is a potential anti-cancer drug candidate.
Insights
A novel C-20 fatty acid, F-6, derived from catfish skin secretions, effectively kills leukemia and breast cancer cells. This compound induces apoptosis and prevents cancer cell recovery, showing potential as an anti-cancer drug candidate.
Area of Science:
- Marine natural products
- Drug discovery
- Cancer biology
Background:
- Novel anti-cancer drugs are crucial for improving cancer treatment outcomes.
- Previous studies identified a C-20 fatty acid (F-6) from Arabian Gulf catfish skin secretions (AGCS) that induces neutrophil extracellular trap formation.
Purpose of the Study:
- To investigate the anti-cancer properties of a lipid mix (Ft-3) from AGCS and its component, F-6.
- To determine the mechanisms by which F-6 affects cancer cell viability, proliferation, and apoptosis.
Main Methods:
- Cancer cell lines (K-562 and MDA MB-231) were treated with Ft-3 and F-6.
- Multiplex assays and network analyses were used to study signaling pathways (MAPKs, PI3K-Akt-mTOR).
- Western blot analysis assessed apoptosis markers (cleaved caspase 3, PARP).
- Cell recovery experiments were conducted over 14 days.
Main Results:
- F-6 and Ft-3 dose-dependently killed leukemic and breast cancer cells, with F-6 being more potent.
- F-6 activated MAPKs (Erk, JNK, p38) and suppressed JNK-mediated c-Jun/AP-1 signaling.
- F-6 inhibited the PI3K-Akt-mTOR pathway, compromising cell proliferation and mitochondrial stability.
- F-6 induced apoptosis and prevented cancer cell recovery.
Conclusions:
- The C-20 furanoic acid F-6 suppresses cancer cell proliferation and induces apoptosis in leukemic and breast cancer cells.
- F-6 demonstrates potential as an anti-cancer drug candidate due to its efficacy and ability to prevent cell recovery.
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