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Antiproliferative Modulation and Pro-Apoptotic Effect of BR2 Tumor-Penetrating Peptide Formulation 2-Aminoethyl
Laertty Garcia de Sousa Cabral1,2, Cyntia Silva Oliveira3, Katielle Albuquerque Freire4
1Laboratory of Development and Innovation, Butantan Institute, Sao Paulo 69310-000, Brazil.
Abstract:
Breast cancer is the most common cancer in women, the so-called "Triple-Negative Breast Cancer" (TNBC) subtype remaining the most challenging to treat, with low tumor-free survival and poor clinical evolution. Therefore, there is a clear medical need for innovative and more efficient treatment options for TNBC. The aim of the present study was to evaluate the potential therapeutic interest of the association of the tumor-penetrating BR2 peptide with monophosphoester 2-aminoethyl dihydrogen phosphate (2-AEH2P), a monophosphoester involved in cell membrane turnover, in TNBC. For that purpose, viability, migration, proliferative capacity, and gene expression analysis of proteins involved in the control of proliferation and apoptosis were evaluated upon treatment of an array of TNBC cells with the BR2 peptide and 2-AEH2P, either separately or combined. Our data showed that, while possessing limited single-agent activity, the 2-AEH2P+BR2 association promoted significant cytotoxicity in TNBC cells but not in normal cells, with reduced proliferative potential and inhibition of cell migration. Mechanically, the 2-AEH2P+BR2 combination promoted an increase in cells expressing p53 caspase 3 and caspase 8, a reduction in cells expressing tumor progression and metastasis markers such as VEGF and PCNA, as well as a reduction in mitochondrial electrical potential. Our results indicate that the combination of the BR2 peptide with 2-AEH2P+BR2 may represent a promising therapeutic strategy in TNBC with potential use in clinical settings.
Insights
A novel combination therapy using the BR2 peptide and 2-aminoethyl dihydrogen phosphate (2-AEH2P) shows promise for treating triple-negative breast cancer (TNBC). This treatment effectively reduced TNBC cell growth and migration without harming normal cells.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Triple-Negative Breast Cancer (TNBC) presents significant treatment challenges due to poor survival rates.
- There is a critical need for novel therapeutic strategies to improve outcomes for TNBC patients.
Purpose of the Study:
- To investigate the therapeutic potential of combining the tumor-penetrating BR2 peptide with 2-aminoethyl dihydrogen phosphate (2-AEH2P) for TNBC treatment.
- To evaluate the effects of this combination on TNBC cell viability, migration, proliferation, and apoptosis.
Main Methods:
- TNBC cell lines were treated with BR2 peptide and 2-AEH2P, individually and in combination.
- Assays included cell viability, migration, proliferation, and gene expression analysis of key proteins.
- Analysis of apoptosis markers (p53, caspase 3, caspase 8) and tumor progression markers (VEGF, PCNA) was performed.
Main Results:
- The combination of 2-AEH2P and BR2 peptide demonstrated significant cytotoxicity against TNBC cells but not normal cells.
- The treatment reduced TNBC cell proliferation and migration.
- Mechanistically, the combination increased apoptosis markers and decreased tumor progression markers, alongside reducing mitochondrial potential.
Conclusions:
- The combination of BR2 peptide and 2-AEH2P represents a promising therapeutic strategy for triple-negative breast cancer.
- This novel approach warrants further investigation for potential clinical application in TNBC treatment.
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