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Revealing the Potential Application of EC-Synthetic Retinoid Analogues in Anticancer Therapy
Mohamed R Abdelaal1,2, Sameh H Soror1,2, Mohamed R Elnagar3
1Biochemistry and Molecular Biology Department, Faculty of Pharmacy, Helwan University, Cairo 11795, Egypt.
Abstract:
(1) Background and Aim: All-trans retinoic acid (ATRA) induces differentiation and inhibits growth of many cancer cells. However, resistance develops rapidly prompting the urgent need for new synthetic and potent derivatives. EC19 and EC23 are two synthetic retinoids with potent stem cell neuro-differentiation activity. Here, these compounds were screened for their in vitro antiproliferative and cytotoxic activity using an array of different cancer cell lines. (2) Methods: MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay, AV/PI (annexin V-fluorescein isothiocyanate (FITC)/propidium iodide (PI)), cell cycle analysis, immunocytochemistry, gene expression analysis, Western blotting, measurement of glutamate and total antioxidant concentrations were recruited. (3) Results: HepG2, Caco-2, and MCF-7 were the most sensitive cell lines; HepG2 (ATRA; 36.2, EC19; 42.2 and EC23; 0.74 µM), Caco-2 (ATRA; 58.0, EC19; 10.8 and EC23; 14.7 µM) and MCF-7 (ATRA; 99.0, EC19; 9.4 and EC23; 5.56 µM). Caco-2 cells were selected for further biochemical investigations. Isobologram analysis revealed the combined synergistic effects with 5-fluorouracil with substantial reduction in IC50. All retinoids induced apoptosis but EC19 had higher potency, with significant cell cycle arrest at subG0-G1, -S and G2/M phases, than ATRA and EC23. Moreover, EC19 reduced cellular metastasis in a transwell invasion assay due to overexpression of E-cadherin, retinoic acid-induced 2 (RAI2) and Werner (WRN) genes. (4) Conclusion: The present study suggests that EC-synthetic retinoids, particularly EC19, can be effective, alone or in combinations, for potential anticancer activity to colorectal cancer. Further in vivo studies are recommended to pave the way for clinical applications.
Insights
New synthetic retinoids, EC19 and EC23, show potent anticancer activity by inhibiting cancer cell growth and inducing apoptosis. EC19 demonstrates significant efficacy against colorectal cancer cells, warranting further in vivo investigation.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- All-trans retinoic acid (ATRA) is known for its anticancer properties but resistance is a challenge.
- Novel synthetic retinoids, EC19 and EC23, possess potent stem cell neuro-differentiation activity.
- There is a need for new retinoid derivatives to overcome resistance and enhance anticancer efficacy.
Purpose of the Study:
- To screen EC19 and EC23 for in vitro antiproliferative and cytotoxic activity against various cancer cell lines.
- To investigate the mechanisms of action, including apoptosis induction, cell cycle arrest, and metastasis inhibition.
- To evaluate the synergistic effects of EC19 and EC23 in combination with 5-fluorouracil.
Main Methods:
- MTT assay for antiproliferative activity.
- Annexin V/Propidium Iodide staining for apoptosis.
- Cell cycle analysis, immunocytochemistry, gene expression, and Western blotting.
- Transwell invasion assay to assess metastasis.
- Isobologram analysis for drug synergy.
Main Results:
- HepG2, Caco-2, and MCF-7 cell lines showed sensitivity to ATRA, EC19, and EC23, with varying IC50 values.
- EC19 exhibited higher potency in inducing apoptosis and cell cycle arrest compared to ATRA and EC23.
- Combined treatment with EC19 and 5-fluorouracil showed synergistic effects, significantly reducing IC50 values.
- EC19 reduced metastasis in Caco-2 cells, associated with overexpression of E-cadherin, RAI2, and WRN genes.
Conclusions:
- Synthetic retinoids EC19 and EC23 demonstrate significant in vitro anticancer potential.
- EC19 is particularly effective against colorectal cancer cells, alone or in combination therapies.
- Further in vivo studies are recommended to explore the clinical applicability of these novel retinoids.
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