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Published on: December 22, 2020
Efficacy and safety of guttiferone E in melanoma-bearing mice
Arthur Barcelos Ribeiro1, Matheus Reis Santos de Melo2, Marcela de Melo Junqueira2
1University of Franca, Avenida Dr. Armando Salles Oliveira, 201, Parque Universitário, Franca, São Paulo, 14404-600, Brazil. arthur1_@hotmail.com.
Abstract:
Melanoma, an aggressive and potentially fatal skin cancer, is constrained by immunosuppression, resistance, and high toxicity in its treatment. Consequently, there is an urgent need for innovative antineoplastic agents. Therefore, this study investigated the antimelanoma potential of guttiferone E (GE). In an allogeneic murine B16 melanoma model, GE was administered subcutaneously and intraperitoneally. Antitumor evaluation included tumor volume/weight measurements and histopathological and immunohistochemical analysis. Furthermore, the toxicity of the treatments was evaluated through body/organ weights, biochemical parameters, and genotoxicity. Subcutaneous administration of 20 mg/kg of GE resulted in a significant reduction in both tumor volume and weight, effectively suppressing melanoma cell proliferation as evidenced by a decrease in mitotic figures. The tumor growth inhibition rate was equivalent to 54%. This treatment upregulated cleaved caspase-3, indicating apoptosis induction. On the other hand, intraperitoneal administration of GE showed no antimelanoma effect. Remarkably, GE treatments exhibited no toxicity, evidenced by non-significant differences in body weight gain, as well as organ weight, biochemical parameters of nephrotoxicity and hepatotoxicity, and genotoxic damage. This study revealed, for the first time, the efficacy of subcutaneous administration of GE in reducing melanoma, in the absence of toxicity. Furthermore, it was observed that the apoptotic signaling pathway is involved in the antimelanoma property of GE. These findings offer valuable insights for further exploring GE's therapeutic applications in melanoma treatment.
Insights
Guttiferone E (GE) shows significant potential as a novel melanoma treatment when administered subcutaneously, effectively reducing tumor growth without toxicity. This discovery opens new avenues for melanoma therapy.
Area of Science:
- Oncology
- Pharmacology
- Dermatology
Background:
- Melanoma treatment faces challenges including immunosuppression, drug resistance, and significant toxicity.
- Novel antineoplastic agents are urgently required to overcome current therapeutic limitations.
Purpose of the Study:
- To investigate the antimelanoma potential and toxicity of guttiferone E (GE).
Main Methods:
- An allogeneic murine B16 melanoma model was used to evaluate GE administered subcutaneously and intraperitoneally.
- Antitumor effects were assessed via tumor volume/weight, histopathology, and immunohistochemistry.
- Toxicity was evaluated using body/organ weights, biochemical parameters, and genotoxicity assays.
Main Results:
- Subcutaneous administration of 20 mg/kg GE significantly reduced melanoma tumor volume and weight by 54%.
- GE treatment suppressed melanoma cell proliferation and induced apoptosis, evidenced by decreased mitotic figures and upregulated cleaved caspase-3.
- Intraperitoneal GE administration showed no antimelanoma effect.
- GE treatments exhibited no observable toxicity, with no significant changes in body/organ weights or biochemical/genotoxic parameters.
Conclusions:
- Subcutaneous guttiferone E demonstrates significant efficacy in reducing melanoma tumor growth.
- GE's antimelanoma activity is mediated through the induction of apoptosis.
- GE presents a promising, non-toxic therapeutic candidate for melanoma treatment.

