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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Melanoma chemoprevention in skin reconstructs and mouse xenografts using isoselenocyanate-4
Natalie Nguyen1, Arati Sharma, Nhung Nguyen
1Department of Pharmacology, The Pennsylvania State University College of Medicine, Hershey, PA 17033, USA.
Abstract:
Melanoma incidence and mortality rates continue to increase despite the use of sunscreen as well as screening programs for early surgical excision of premalignant lesions. The steady increase in melanoma incidence suggests that additional preventive approaches are needed to augment these existing strategies. One unexplored area involves targeting genes whose deregulation promotes disease development to prevent melanoma. The Akt3 signaling pathway is one key signaling cascade that plays a central role by deregulating apoptosis to promote development of approximately 70% of melanomas. Isoselenocyanate-4 (ISC-4), derived from isothiocyanates by increasing the alkyl chain length and replacing sulfur with selenium, has been developed to target this important signaling pathway in melanomas; however, its chemopreventive potential is unknown. In this study, the chemopreventive efficacy of topical ISC-4 was evaluated in a laboratory-generated human skin melanoma model containing early melanocytic lesion or advanced stage melanoma cell lines and in animals containing invasive xenografted human melanoma. Repeated topical application of ISC-4 reduced tumor cell expansion in the skin model by 80% to 90% and decreased tumor development in animals by approximately 80%. Histologic examination of ISC-4-treated skin showed no obvious damage to skin cells or skin morphology, and treated animals did not exhibit markers indicative of major organ-related toxicity. Mechanistically, ISC-4 prevented melanoma by decreasing Akt3 signaling that lead to a 3-fold increase in apoptosis rates. Thus, topical ISC-4 can delay or slow down melanocytic lesion or melanoma development in preclinical models and could impact melanoma incidence rates if similar results are observed in humans.
Insights
Topical isoselenocyanate-4 (ISC-4) shows promise in preventing melanoma development by targeting the Akt3 signaling pathway. This compound significantly reduced tumor cell expansion and tumor development in preclinical models without causing skin damage or major organ toxicity.
Area of Science:
- Oncology
- Dermatology
- Chemoprevention
Background:
- Melanoma incidence and mortality are rising despite current preventive strategies like sunscreen and early surgical excision.
- Targeting deregulated genes involved in melanoma development is a potential preventive approach.
- The Akt3 signaling pathway is implicated in approximately 70% of melanomas by deregulating apoptosis.
Purpose of the Study:
- To evaluate the chemopreventive efficacy of topical isoselenocyanate-4 (ISC-4) in preclinical melanoma models.
- To investigate the impact of ISC-4 on melanoma development and Akt3 signaling.
- To assess the safety profile of topical ISC-4 application.
Main Methods:
- Evaluation of topical ISC-4 in a laboratory-generated human skin melanoma model with early lesions and advanced melanoma cell lines.
- Assessment of ISC-4 efficacy in animals with invasive xenografted human melanoma.
- Histologic examination of skin and analysis of major organ toxicity markers in treated animals.
- Mechanistic studies to determine ISC-4's effect on Akt3 signaling and apoptosis rates.
Main Results:
- Topical ISC-4 application reduced tumor cell expansion in skin models by 80%–90%.
- ISC-4 decreased tumor development in animals by approximately 80%.
- Histologic examination revealed no significant damage to skin cells or morphology, and no major organ toxicity was observed.
- ISC-4 decreased Akt3 signaling, leading to a 3-fold increase in apoptosis rates.
Conclusions:
- Topical ISC-4 demonstrates significant chemopreventive efficacy against melanoma development in preclinical models.
- ISC-4 effectively inhibits melanoma progression by downregulating Akt3 signaling and increasing apoptosis.
- Topical ISC-4 is a potential candidate for melanoma prevention, warranting further investigation in human trials.

