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The synthetic retinoid ST1926 as a novel therapeutic agent in rhabdomyosarcoma
Hussein Basma1, Sandra E Ghayad2, Ghina Rammal2
1Children's Cancer Institute, American University of Beirut, Beirut, Lebanon.
Abstract:
Rhabdomyosarcoma (RMS) is the most frequent soft tissue sarcoma in children. Despite multiple attempts at intensifying chemotherapeutic approaches to treatment, only moderate improvements in survival have been made for patients with advanced disease. Retinoic acid is a differentiation agent that has shown some antitumor efficacy in RMS cells in vitro; however, the effects are of low magnitude. E-3-(4'-hydroxyl-3'-adamantylbiphenyl-4-yl) acrylic acid (ST1926) is a novel orally available synthetic atypical retinoid, shown to have more potent activity than retinoic acid in several types of cancer cells. We used in vitro and in vivo models of RMS to explore the efficacy of ST1926 as a possible therapeutic agent in this sarcoma. We found that ST1926 reduced RMS cell viability in all tested alveolar (ARMS) and embryonal (ERMS) RMS cell lines, at readily achievable micromolar concentrations in mice. ST1926 induced an early DNA damage response (DDR), which led to increase in apoptosis, in addition to S-phase cell cycle arrest and a reduction in protein levels of the cell cycle kinase CDK1. Effects were irrespective of TP53 mutational status. Interestingly, in ARMS cells, ST1926 treatment decreased PAX3-FOXO1 fusion oncoprotein levels, and this suppression occurred at a post-transcriptional level. In vivo, ST1926 was effective in inhibiting growth of ARMS and ERMS xenografts, and induced a prominent DDR. We conclude that ST1926 has preclinical efficacy against RMS, and should be further developed in this disease in clinical trials.
Insights
The novel synthetic retinoid ST1926 shows significant preclinical efficacy against childhood rhabdomyosarcoma (RMS). It effectively reduces tumor cell viability and growth by inducing DNA damage and apoptosis, warranting clinical trials.
Area of Science:
- Pediatric Oncology
- Cancer Therapeutics
- Retinoid Research
Background:
- Rhabdomyosarcoma (RMS) is the most common pediatric soft tissue sarcoma.
- Current intensified chemotherapy offers limited survival improvements for advanced RMS.
- Retinoic acid demonstrates low-magnitude antitumor effects in RMS cells.
Purpose of the Study:
- To evaluate the efficacy of ST1926, a novel synthetic atypical retinoid, as a potential therapeutic agent for rhabdomyosarcoma.
- To investigate the mechanisms of action of ST1926 in both in vitro and in vivo RMS models.
Main Methods:
- Utilized in vitro and in vivo models of alveolar (ARMS) and embryonal (ERMS) rhabdomyosarcoma.
- Assessed ST1926's impact on RMS cell viability, DNA damage response (DDR), apoptosis, and cell cycle progression.
- Analyzed effects on CDK1 and PAX3-FOXO1 oncoprotein levels, and evaluated in vivo xenograft growth inhibition.
Main Results:
- ST1926 significantly reduced RMS cell viability across all tested cell lines at achievable micromolar concentrations.
- ST1926 induced an early DNA damage response (DDR), apoptosis, and S-phase cell cycle arrest, irrespective of TP53 mutational status.
- In vivo, ST1926 effectively inhibited ARMS and ERMS xenograft growth and induced a prominent DDR.
Conclusions:
- ST1926 demonstrates potent preclinical efficacy against rhabdomyosarcoma.
- The compound's ability to induce DDR, apoptosis, and inhibit tumor growth supports its further development.
- ST1926 warrants clinical investigation as a novel therapeutic strategy for pediatric rhabdomyosarcoma.
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