RESUMO
Triple-negative breast cancer is the most aggressive subtype of breast cancer, with worse clinical evolution and tumor-free survival, leading to the need to develop new effective therapies for its control. The present study evaluated the action of tumor-penetrating peptide BR2 associated with 2-aminoethyl dihydrogen phosphate (2-AEH2P) on triple-negative breast tumor cells. Cell viability was evaluated by the MTT colorimetric method, mitochondrial electrical potential, and proteins involved in cell proliferation and death control were evaluated by flow cytometry and structural and morphological analysis by confocal microscopy. The results obtained showed that the peptide BR2 and the association 2-AEH2P + BR2 promoted significant cytotoxicity in tumor lines, compared to 2-AEH2P alone. In addition, the association 2-AEH2P + BR2 promoted tumor cells arrest in the G0/G1 phases. Interestingly, both treatments modulated the expression of markers CD44, CD34, CD24, cyclin D1, and Bcl-2, increased p21, Bax, and released cytochrome c. The association proved to be more effective, providing modulation of proteins involved in cell death and senescence, more pronounced cytotoxicity for tumor cells compared to normal cells, and the reduction of markers related to aggressiveness profile, progression, and tumor metastasis.
Assuntos
Neoplasias de Mama Triplo Negativas , Apoptose , Linhagem Celular Tumoral , Proliferação de Células , Humanos , Fosfatos , Neoplasias de Mama Triplo Negativas/patologiaRESUMO
The main obstacle in the treatment of cancer patients has been resistance to multiple drugs, leading to the need to develop molecules with a higher specificity target. The liposomal formulation DODAC/2-AEH2P has antitumor potential, inducing apoptosis in several tumor types. Human chronic myeloid leukemia K-562 and K-562 Lucena (MDR+) cells were treated with the DODAC carrier and the liposomal formulation 2-AEH2P. Viability, cell cycle phases, apoptosis, marker expression and mitochondrial potential were analyzed. Significant reduction in viability was observed for all treatments. Changes in the distribution of the cell cycle phases and expression of markers involved in the apoptosis pathways were observed. Reduction of the mitochondrial electrical potential mediated by Bcl-2, being regulated by the reduction of the MTCH2 protein linked to the progression of myeloid leukemia and an increase in the pro-apoptotic proteins Bad and Bax, dependent on p53. This study demonstrated a significant therapeutic potential through apoptotic effects in leukemic cells, regardless of the molecular resistance profile (MDR+).