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Updated: Mar 15, 2026

Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers
Published on: February 20, 2017
Breast cancer cells evade paclitaxel-induced cell death by developing resistance to dasatinib
Yun-Ji Jeong1, Jong Soon Kang2, Su In Lee1
1College of Pharmacy, Korea University, Sejong 30019, Republic of Korea.
Abstract:
Triple negative breast cancer (TNBC), which does not express the progesterone, estrogen, or HER2/neu receptor, is aggressive and difficult to treat. Paclitaxel, a tubulin stabilizing agent, is one of the most frequently prescribed anticancer agents for breast cancers, including TNBC. Residual disease that occurs due to resistance or partial resistance of cancer cells in a tumor against anticancer agents is the most important issue in oncology. In the present study, when MDA-MB-231 cells, a TNBC cell line, were treated with 30 µM paclitaxel, a slightly higher concentration than its GI50 value, for 6 days, a small number of cells with different morphologies survived. Among the surviving cells, small round cells were isolated, cloned, and named MDA-MB-231-JYJ cells. MDA-MB-231-JYJ cells were observed to be highly proliferative and tumorigenic. In addition, signal transduction molecules involved in proliferation, survival, malignancy, or stemness of cancer cells, such as c-Src, c-Met, Notch 1, c-Myc, Sox2, Oct3/4, Nanog, and E-cadherin were highly expressed or activated. While further study is required, MDA-MB-231-JYJ cells appear to have some of the characteristics of cancer precursor cells. Although MDA-MB-231-JYJ cells were isolated from the cells that survived in the continuous presence of paclitaxel, they were not resistant to paclitaxel but developed resistance to dasatinib, a Bcr-Abl and Src kinase family inhibitor. The activated state of Src and Notch 1, and the expression levels of c-Myc and cyclins in MDA-MB-231-JYJ cells were less affected than MDA-MB-231 cells by the treatment of dasatinib, which may explain the resistance of MDA-MB-231-JYJ cells to dasatinib. These results suggest that cancer cells that become resistant to dasatinib during the process of paclitaxel therapy in patients may appear, and caution is required in the design of clinical trials using these two agents.
Insights
Triple negative breast cancer cells surviving paclitaxel treatment developed resistance to dasatinib, not paclitaxel. These cells exhibit cancer precursor characteristics, highlighting caution needed for combined paclitaxel and dasatinib clinical trials.
Area of Science:
- Oncology
- Cancer Biology
- Pharmacology
Background:
- Triple negative breast cancer (TNBC) is aggressive and challenging to treat.
- Paclitaxel is a common chemotherapy for breast cancer, but residual disease due to resistance is a major issue.
- Understanding mechanisms of drug resistance is crucial for improving cancer therapy.
Purpose of the Study:
- To investigate the characteristics of triple negative breast cancer cells that survive paclitaxel treatment.
- To determine the drug resistance profile of paclitaxel-surviving cells.
- To explore the potential implications for combination therapies.
Main Methods:
- MDA-MB-231 TNBC cells were treated with paclitaxel.
- Surviving cells (MDA-MB-231-JYJ) were isolated and characterized.
- Proliferation, tumorigenicity, and expression of key signaling molecules were assessed.
- Drug resistance to paclitaxel and dasatinib was evaluated.
Main Results:
- Paclitaxel treatment yielded a subpopulation of highly proliferative and tumorigenic cells (MDA-MB-231-JYJ).
- These cells showed high expression/activation of molecules linked to proliferation, survival, and stemness (e.g., c-Src, Notch 1, c-Myc).
- MDA-MB-231-JYJ cells were resistant to dasatinib but not paclitaxel, with altered Src and Notch 1 signaling.
Conclusions:
- Paclitaxel-surviving TNBC cells can acquire dasatinib resistance, potentially through Src and Notch signaling pathways.
- These cells exhibit cancer precursor-like properties.
- Caution is advised in clinical trials combining paclitaxel and dasatinib due to potential resistance development.
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