Avaliação de toxicidade e potencial indutor de morte celular do 4-fluorbenzaldeidotiossemicarbazona contra células de adenocarcinoma de próstata PC-3

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2013-08-30

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Universidade Federal de Goiás

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The death mechanisms induced by a new synthetic compound (4-FTC) in adenocarcinoma prostate cells (PC-3) and its toxicity were investigated in this study. PC-3 cells cytotoxity was evaluated by MTT reduction assay. The mechanisms involved in PC-3 death and cell cycle were investigated by flow cytometry and colorimetric assays. The compound toxicity was analized by cytotoxicity of mononuclear cells (MTT reduction assay) and 3T3 cells (neutral red uptake assay), myelotoxicity, haemolytic activity and acute oral toxicity. 4-FTC has concentration dependent cytotoxic activity in PC-3 cells, and 184,6 μM IC50. Investigation of death mechanisms indicated death by apoptosis, because of the significant increase in phosphatidylserine externalization (109,83%), loss of mytochondrial membrane potential (41,96%), significant increase of DNA fragmentation (284,02%) and capases 3/7 and 9 activity increase, 13,12% and 12,8%, respectively. Furthermore, the treatment of PC-3 cells wih 4-FTC did not induce the reactive oxygen species production, as well as, the induction of acid autophagic vesicles generation and did not change the cell cycle significantly. Althought 4-FTC was able to modulate the expression of some proteins that regulate cell cycle, incresead the expression of p53, p21 and p27. Thus, the results suggests that 4-FTC induced PC-3 death by apoptosis dependent by mitochondrial pathway activation. In toxicity evaluation, 4-FTC presented 52,86 μM and 19,63 μM IC50 to mononuclear and 3T3 cells, respectively; 27,35 μM IC50 to hematopoietic precursors; low acute oral toxicity, classified in GHS category 5, and not significant haemolytic activity.

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RODRIGUES, Bruna dos Santos. Avaliação de toxicidade e potencial indutor de morte celular do 4-fluorbenzaldeidotiossemicarbazona contra células de adenocarcinoma de próstata PC-3. 2013. 82 f. Dissertação (Mestrado em Ciências Farmacêuticas) - Universidade Federal de Goiás, Goiânia, 2013.