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Published on: April 22, 2019
1,3-Bis(3,5-dichlorophenyl) urea compound 'COH-SR4' inhibits proliferation and activates apoptosis in melanoma
Sharad S Singhal1, James Figarola, Jyotsana Singhal
1Department of Diabetes and Metabolic Diseases Research, Beckman Research Institute, City of Hope, Comprehensive Cancer Center, Duarte, CA 91010, United States. ssinghal@coh.org
Abstract:
The current clinical interventions in malignant melanomas are met with poor response to therapy due to dynamic regulation of multiple melanoma signaling pathways consequent to administration of single target agents. In this context of limited response to single target agents, novel candidate molecules capable of effectively inducing tumor inhibition along with targeting multiple critical nodes of melanoma signaling assume translational significance. In this regard, we investigated the anti-cancer effects of a novel dichlorophenyl urea compound called COH-SR4 in melanoma. The SR4 treatment decreased the survival and inhibited the clonogenic potential of melanomas along with inducing apoptosis in vitro cultures. SR4 treatments lead to inhibition of GST activity along with causing G2/M phase cell cycle arrest. Oral administration of 4 mg/kg SR4 leads to effective inhibition of tumor burdens in both syngeneic and nude mouse models of melanoma. The SR4 treatment was well tolerated and no overt toxicity was observed. The histopathological examination of resected tumor sections revealed decreased blood vessels, decrease in the levels of angiogenesis marker, CD31, and proliferation marker, Ki67, along with an increase in pAMPK levels. Western blot analyses of resected tumor lysates revealed increased PARP cleavage, Bim, pAMPK along with decreased pAkt, vimentin, fibronectin, CDK4 and cyclin B1. Thus, SR4 represents a novel candidate for the further development of mono and combinatorial therapies to effectively target aggressive and therapeutically refractory melanomas.
Insights
A novel compound, COH-SR4, effectively inhibits melanoma growth and survival by targeting multiple signaling pathways. This promising agent shows anti-cancer effects with good tolerability in preclinical models.
Area of Science:
- Oncology
- Pharmacology
- Cancer Biology
Background:
- Malignant melanomas exhibit poor response to current therapies due to complex signaling pathway regulation.
- Single-target agents are often ineffective against melanoma, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the anti-cancer effects of a novel dichlorophenyl urea compound, COH-SR4, in melanoma models.
- To evaluate COH-SR4's potential as a therapeutic agent for aggressive and refractory melanomas.
Main Methods:
- In vitro studies assessed melanoma cell survival, clonogenic potential, apoptosis, GST activity, and cell cycle progression.
- In vivo studies evaluated tumor inhibition, tolerability, and toxicity in syngeneic and nude mouse models.
- Histopathological and Western blot analyses examined angiogenesis, proliferation, and key signaling pathway markers.
Main Results:
- COH-SR4 decreased melanoma cell survival, inhibited clonogenic potential, and induced apoptosis in vitro.
- Oral administration of COH-SR4 effectively inhibited tumor burdens in vivo with no observed toxicity.
- Tumor analysis revealed reduced angiogenesis (CD31), proliferation (Ki67), and modulation of key signaling proteins (e.g., increased pAMPK, PARP cleavage; decreased pAkt).
Conclusions:
- COH-SR4 demonstrates significant anti-melanoma activity through multi-targeted signaling inhibition.
- COH-SR4 is a promising candidate for developing novel mono or combinatorial therapies against aggressive melanomas.
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