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Updated: Jan 21, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Chromosomal radiosensitivity of triple negative breast cancer patients
Flavia Zita Francies1, Olivia Herd1, Alan Cairns2
1Department of Radiation Sciences, Radiobiology, University of the Witwatersrand, Johannesburg, South Africa.
Abstract:
Purpose: Based on clinical and molecular data, breast cancer is a heterogeneous disease. Breast cancers that have no expression of estrogen receptor (ER), progesterone receptor (PR) and human epidermal growth factor receptor 2 (HER2) are defined as triple negative breast cancers (TNBCs); luminal cancers have different expressions of ER, PR and/or HER2. TNBCs are frequently linked with advanced disease, poor prognosis and occurrence in young African women, and about 15% of the cases are associated with germline BRCA1/2 mutations. Since radiotherapy is utilized as a principle treatment in the management of TNBC, we aimed to investigate the chromosomal instability and radiosensitivity of lymphocytes in TNBC patients compared to luminal breast cancer patients and healthy controls using the micronucleus (MN) assay. The effect of mutations in breast cancer susceptibility genes on chromosomal radiosensitivity was also evaluated.Methods: Chromosomal radiosensitivity was evaluated in the G0 (83 patients and 90 controls) and S/G2 (34 patients and 17 controls) phase of the cell cycle by exposing blood samples from all patients and controls to 2 and 4 Gy ionizing radiation (IR).Results: In the G0 MN assay, the combined cohort of all breast cancer, TNBC and luminal patients' exhibit significantly elevated spontaneous MN values compared to controls indicating chromosomal instability. Chromosomal radiosensitivity is also significantly elevated in the combined cohort of all breast cancer patients compared to controls. The TNBC patients, however, do not exhibit enhanced chromosomal radiosensitivity. Similarly, in the S/G2 phase, 76% of TNBC patients do not show enhanced chromosomal radiosensitivity compared to the controls. In both the G0 and S/G2 phase, luminal breast cancer patients demonstrate a shift toward chromosomal radiosensitivity compared to TNBC patients and controls.Conclusions: The observations of the MN assay suggest increased chromosomal instability and chromosomal radiosensitivity in South African breast cancer patients. However, in TNBC patients, the irradiated MN values are not elevated. Our results suggest that the healthy lymphocytes in TNBC patients could handle higher doses of IR.
Insights
Triple negative breast cancer (TNBC) patients show normal radiosensitivity in their lymphocytes, unlike luminal breast cancer patients who exhibit increased chromosomal radiosensitivity. This suggests TNBC lymphocytes may tolerate higher radiation doses.
Area of Science:
- Oncology
- Genetics
- Radiation Biology
Background:
- Breast cancer is a heterogeneous disease with distinct subtypes, including triple-negative breast cancer (TNBC) and luminal cancers.
- TNBC is associated with aggressive disease, poor prognosis, and a higher incidence in young African women, with a subset linked to germline BRCA1/2 mutations.
- Radiotherapy is a primary treatment for TNBC, necessitating an understanding of its impact on chromosomal stability and radiosensitivity.
Purpose of the Study:
- To investigate chromosomal instability and radiosensitivity in lymphocytes of TNBC patients compared to luminal breast cancer patients and healthy controls.
- To assess the influence of breast cancer susceptibility gene mutations on chromosomal radiosensitivity.
- To utilize the micronucleus (MN) assay for evaluating these cellular responses.
Main Methods:
- Blood samples from breast cancer patients (TNBC and luminal) and healthy controls were analyzed.
- The micronucleus (MN) assay was employed to evaluate chromosomal instability and radiosensitivity.
- Samples were exposed to 2 and 4 Gy of ionizing radiation (IR) in both G0 and S/G2 phases of the cell cycle.
Main Results:
- All breast cancer patients, including TNBC and luminal subtypes, exhibited elevated spontaneous MN values, indicating chromosomal instability compared to controls.
- Overall, breast cancer patients showed significantly elevated chromosomal radiosensitivity.
- However, TNBC patients did not display enhanced chromosomal radiosensitivity in either the G0 or S/G2 phase; luminal patients showed a shift towards radiosensitivity compared to TNBC patients and controls.
Conclusions:
- South African breast cancer patients demonstrate increased chromosomal instability and radiosensitivity.
- TNBC patients' lymphocytes did not show elevated irradiated MN values, suggesting they can handle higher radiation doses.
- Luminal breast cancer patients exhibited greater radiosensitivity than TNBC patients.
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