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Updated: Jul 28, 2025

An Orthotopic Bladder Cancer Model for Gene Delivery Studies
Published on: December 1, 2013
LaSOM 335, active against bladder cancer cells, interferes with Let-60 (hRas) and reduces CD73 expression/activity
Luciano Porto Kagami1, Itamar Luís Gonçalves1,2, Álisson Coldebella da Silva3
1Laboratório de Síntese Orgânica Medicinal - LaSOM®, Programa de Pós-Graduação em Ciências Farmacêuticas, Faculdade de Farmácia, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
Abstract:
Bladder cancer is the fourth most common malignancy in men. It can present along the entire continuum of severity, from mild to well-differentiated disease to extremely malignant tumors with low survival rates. Human RAS genes are the most frequently mutated oncogenes in human cancers, and the critical role of aberrant Ras protein function in carcinogenesis is well established. Therefore, considerable efforts have been devoted to the development of anti-Ras inhibitors for cancer treatment. This study presents the biphenyl dihydropyrimidinone LaSOM 335 with high activity against T24 bladder cancer cells (IC50 = 10.73 ± 0.53 μM) and selectivity of cytotoxicity for this cancer cell line compared to two non-cancer cell lines investigated. Furthermore, we also show that this compound reduced vulvar development in the mutant let-60 gene of Caenorhabditis elegans. Let-60 is a homolog of the mammalian Ras gene. In addition, we observed that LaSOM 335 inhibits the enzymatic activity of CD73 and decreases CD73 expression. Possibly, this expression decrease is due to downstream EGFR signaling via the Ras-Raf-ERK pathway, that directly regulates CD73 expression via ERK1/2. Evidence suggests that non-immunomodulating functions of CD73 play an equally important role for cancer cell survival, progression, and migration. Regarding we also notice that LaSOM 335 was safe in the in vivo model of C. elegans. The set of these findings makes this biphenyl dihydropyrimidinone a promising candidate for further investigations in the bladder cancer field.
Insights
A novel compound, LaSOM 335, shows potent activity against bladder cancer cells by inhibiting Ras signaling and CD73 expression. This biphenyl dihydropyrimidinone is safe and a promising candidate for bladder cancer treatment development.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Bladder cancer is a significant malignancy, often driven by mutations in RAS oncogenes.
- Targeting aberrant Ras protein function is a key strategy in cancer therapy development.
- CD73 plays a crucial role in cancer cell survival, progression, and migration.
Purpose of the Study:
- To investigate the anti-cancer potential of the novel biphenyl dihydropyrimidinone, LaSOM 335.
- To evaluate the compound's activity against bladder cancer cells and its mechanism of action.
- To assess the safety and efficacy of LaSOM 335 in preclinical models.
Main Methods:
- In vitro cytotoxicity assays using T24 bladder cancer cells and non-cancer cell lines.
- In vivo studies in Caenorhabditis elegans with a mutant let-60 gene (Ras homolog).
- Enzymatic activity and expression analysis of CD73, and investigation of the Ras-Raf-ERK pathway.
Main Results:
- LaSOM 335 demonstrated high activity against T24 bladder cancer cells (IC50 = 10.73 ± 0.53 μM) with selectivity.
- The compound inhibited let-60 gene activity in C. elegans and showed safety in vivo.
- LaSOM 335 inhibited CD73 enzymatic activity and decreased its expression, potentially via the EGFR/Ras-Raf-ERK pathway.
Conclusions:
- LaSOM 335 exhibits significant anti-bladder cancer activity.
- The compound targets both Ras signaling and CD73, highlighting a dual mechanism of action.
- LaSOM 335 is a promising candidate for further development as a bladder cancer therapeutic.
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