Genotoxicity and Anticancer Effects of the Aminothiophene Derivatives SB-44, SB- 83, and SB-200 in Cancer Cells

Author:

da Silva Eduardo Davi Lima12,dos Santos Flaviana Alves12,de Oliveira Júlia Teixeira3,dos Santos Fabio Vieira3,Junior Francisco Jaime Bezerra Mendonça4,do Carmo Alves de Lima Maria4,da Rocha Pitta Maira Galdino12,de Jesus de Melo Rego Moacyr Barreto12,Pereira Michelly Cristiny12

Affiliation:

1. Núcleo de Pesquisa em Inovação Terapêutica, Universidade Federal de Pernambuco (UFPE), Recife, PE, Brazil

2. Departamento de Fisiologia e Farmacologia, Universidade Federal de Pernambuco (UFPE), Recife, PE, Brazil

3. Laboratório de Biologia Celular e Mutagênese (LaBCeM), Campus Centro Oeste, Universidade Federal de São João del Rey, Divinópolis, MG, Brazil

4. Laboratory Synthesis and Vectoring Molecules, Departament of Biological Sciences, State University of Paraíba (UFPB), João Pessoa, PB, Brazil

Abstract

Introduction: Thiophene derivatives have been widely studied as promising options for the treatment of solid tumors. Previous studies have shown that thiophene derivatives have antileishmanial activity and cytotoxic activity against breast, colon, and ovarian cancer cells. Methods: In our study, we evaluated the anticancer activities of three aminothiophene derivatives: SB-44, SB-83, and SB-200, in prostate and cervical adenocarcinoma cells. Several in vitro methods were performed, including cytotoxicity, clonogenic migration, mutagenic, and cleaved Poly (ADP-ribose) polymerase (PARP) assays and annexin V staining. Results: Significant cytotoxicity was observed in cell lines with IC50 values less than 35 μM (15.38-34.04 μM). All aminothiophene derivatives significantly reduced clone formation but had no effect on cell motility. SB-83 and SB-44 induced a significant increase in the percentage of cells in the sub-G1 phase, while SB-200 derivatives significantly decreased the percentage of S/G2/M as well as induced apoptosis, with an increase of cleaved PARP. SBs compounds also showed significant mutagenic potential. Beyond that, in silico analyses revealed that all three thiophene derivatives fulfilled the criteria for oral druggability, which underscores the potential of using them in anticancer therapies. Conclusion: Our findings show that the thiophene nucleus may be used to treat solid tumors, including prostate cancer and cervical adenocarcinoma.

Publisher

Bentham Science Publishers Ltd.

Subject

Cancer Research,Pharmacology,Molecular Medicine

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