Abstract 1636
Background
Even though new molecular targeted agents are now being developed, they are still premature in application of clinical use for triple negative breast cancers (TNBCs). Therefore, it is highly demanded to explore the effective antitumor agents against TNBCs. Novel non-camptothecin topoisomerase I inhibitors are discovered and evaluated in this study.
Methods
Human MDA-MB-231 (BCRC-60425), BT-549 (ATCC® HTB-122™) and MCF-7 (BCRC-60436) were used in this study. Top1 assay was determined by gel mobility assay to validate the Top1-mediated DNA cleavages at different concentrations of non-camptothecin compounds. Cell viability analysis (MTT assay), comet assay and flow cytometry analysis were used to evaluate their growth inhibitory activity, DNA damage, and induction of cell arrest. Mechanistic pathways were studied and validated through western blot analysis, flow cytometry and confocal microscopy analysis. Binding interactions between top1 and non-camptothecin compound were analyzed by computational analysis (Discovery Studio).
Results
The IC50 values (growth inhibitory activity) of these non-camptothecin compounds are in the micromolar to nanomolar range (1.8 μM to 190 nM) against MDA-MB-231, BT-549 and MCF-7 cell lines. These compounds significantly inhibited the process in which supercoiled DNA strand transforms into its relaxed state and showed antitumor spectra similar to camptothecin rather than doxorubicin. Comet tails were observed to increase significantly with various doses of compounds in a dose-dependent manner. In addition, their mode of actions were shown to involve G2/M arrest of the cell cycle along with a dose-dependent increase in protein levels of cleaved caspase-3 and cleavage of cPARP. Except apoptosis pathway, non-camptothecin compounds also induce necrosis, and autophagy. Favorable ADMET characteristics of non-camptothecin compounds were observed using ADMET Descriptors.
Conclusions
Our results have provided evidence for therapeutic intervention in the treatment of TNBC using new top1 inhibitors, non-camptothecin compounds.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Wen-Shan Li.
Funding
Ministry of Science and Technology, Taiwan and Academia Sinica, Taiwan.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
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
2460 - MicroRNA-181c promotes tamoxifen resistance in breast cancer cells via upregulation Akt/mTOR axis
Presenter: Alexander Scherbakov
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