Abstract 2460
Background
The main purpose of the work was to study the key exosomal factors involved in the development of hormonal resistance of breast cancer cells. The work is based on our previous data, which demonstrated the effect of exosome-mediated transferring of hormonal resistance in in vitro cultured MCF-7 breast cancer cells.
Methods
Estrogen-dependent breast cancer cells MCF-7 and the tamoxifen-resistant subline MCF-7 /T were used as an experimental model. The analysis of exosomal microRNAs was performed by HiSeq2500 and at least 5 million reads per samples were obtained. MicroRNA was extracted from by PureLink RNA Micro Kit; library preparation was carried out with NEBNext® Small RNA Library Prep Set for Illumina®. Transfection of the RNA oligonucleotides was performed using Metafectene PRO (Biontex) to result in the final RNA concentration of 50 nM.
Results
A comparative analysis of exosomal miRNAs of MCF-7 and resistant MCF-7/T cells was carried out. In total, 2588 miRNAs have been identified in the exosomes. Among them, mir-181 family, which is one of the negative regulators of estrogen-dependent growth, was identified as the group of miRs, hyperexpressed in the resistant exosomes. Following this, we analysed the role of mir-181c, one of the main members of miR-181 family, in the regulation of cell growth and hormonal response. Mir-181c transfection was found to induce the estrogen-independent growth and partial tamoxifen resistance of MCF-7 cells. The study of the signaling proteins showed that mir-181c transfection, in contrast to scrambled RNA transfection, caused the increase of the amount of Raptor, phosphorylated forms of mTOR and Akt that correlated with increased AP-1 transcriptional activity.
Conclusions
We have demonstrated the involvement of miR-181c in the development of hormonal resistance of breast cancer cells that allows us to consider mir-181 as the perspective target of the treatment of hormone- independent cancers. The research was supported by the Russian Science Foundation (19-15-00245, miRNA analysis) and RFBR (#18-29-09017, tamoxifen resistance).
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
The authors.
Funding
Russian Science Foundation, project 19-15-00245.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
5037 - CXCR4, CCR2 and CCR5 expression in subsets of tumor cells with stem and/or EMT features
Presenter: Olga Savelieva
Session: Poster Display session 1
Resources:
Abstract
5729 - Expression of mutant p53 affects cancer cell sensitivity to topotecan
Presenter: Rimma Mingaleeva
Session: Poster Display session 1
Resources:
Abstract
5725 - Breast cancer organoids a new tool for the prediction of drugs penetration and patient’outcome
Presenter: Giuseppina Roscigno
Session: Poster Display session 1
Resources:
Abstract
5680 - Aptamer-mediated exosomes detection for early breast cancer identification.
Presenter: Cristina Quintavalle
Session: Poster Display session 1
Resources:
Abstract
3751 - Spatio-temporal separation of tumor infiltrating CD8+ T-cells and HER2/neu+ tumor cells in tumor-immune milieu of infiltrating ductal carcinoma of the breast
Presenter: Sandhya Sreedharan
Session: Poster Display session 1
Resources:
Abstract
4664 - Large genomic rearrangements in BRCA1 and BRCA2 genes in the Portuguese population.
Presenter: Joao Pinto
Session: Poster Display session 1
Resources:
Abstract
4611 - Non-BRCA1/2 hereditary breast and ovarian cancer: findings from a multidisciplinary program
Presenter: Ana Monteiro
Session: Poster Display session 1
Resources:
Abstract
5340 - Quantitative imaging and characterization of collagen patterns in high grade serous ovarian carcinoma (HGSOC)
Presenter: Ruby Huang
Session: Poster Display session 1
Resources:
Abstract
4209 - Semiquantitative assessment of vimentin expression in prostate cancer (PC)
Presenter: Marina Puchinskaya
Session: Poster Display session 1
Resources:
Abstract
3309 - Heat Shock Protein 90 chaperones and Protein Kinase D3 regulates androgen-independent prostate cancer development
Presenter: Attila Varga
Session: Poster Display session 1
Resources:
Abstract