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Effects of resveratrol and 2-methoxyestradiol in human melanoma cell lines in monolayer and skin reconstruct models

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Author(s):
Renato Ramos Massaro
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Conjunto das Químicas (IQ e FCF) (CQ/DBDCQ)
Defense date:
Examining board members:
Silvya Stuchi Maria Engler; Daniela Sanchez Bassères; Carmen Verríssima Ferreira; Claudimara Ferini Pacicco Lotfi
Advisor: Silvya Stuchi Maria Engler
Abstract

Melanomas are the deadliest type of skin cancer, and in spite of the low incidence, 80% of the skin cancer associated death cases are due to metastatic melanoma. New pharmacological approaches and the search of new compounds for melanoma therapeutics, for monotherapy or combination therapy, are essential. This search occurs mainly in the targeted therapy field because of the melanoma acquisition of resistance to the current treatments. Resveratrol (RES) is a polyphenol with anti-oxidant activity, and its anti-tumor effect has been shown through the induction of cell death. However, the study of this compound has been discontinued in this work due to the impossibility of using high doses in vitro for the observation of cellular effects. Another compound, 2-methoxyestradiol (2ME) is a metabolite from estrogen, and its anti-cancer effects has already been shown in melanoma, but with no elucidation of the signaling pathways involved. Furthermore, the effects in cells with acquired resistance have never been shown. In this study we used a broader panel of human melanoma cell lines and demonstrated that 2ME induces cell death, inhibits proliferation of these cells, and this inhibition is associated with the induction of cell senescence. The inhibition of proliferation caused by 2ME was observed for the first time in BRAF V600E cells that are resistant to Vemurafenib (BRAF inhibitor) and double resistant to Vemurafenib and Trametinib (MEK inhibitor). The proliferation inhibition was related to the modulation of p21Cip1,Cyclin B1 and pRb, which are proteins involved in cell cycle regulation. Long exposure to 2ME in colony formation assay showed the inhibition of colony in all melanoma cell lines (regardless of resistance and mutational status), but not in primary fibroblasts, showing selective effect. In three-dimensional spheroid model, it was observed that the resistant (Sk-Mel- 28R) and double-resistant (Sk-Mel-28RT) cell lines were more invasive than the parental cell line (Sk-Mel-28). In this model, 2ME was able to inhibit cell invasion and cell viability. In the skin reconstruct model, in the absence of treatment, melanoma cell invasion can be observed in the dermis layer. However, after the treatment with 2ME these cell invasion foci are inhibited. Altogether, these effects demonstrate that 2ME is an effective anti-melanoma agent, regardless of resistance. (AU)