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Updated: Feb 3, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Identification of FOXM1 as a specific marker for triple‑negative breast cancer
Yanli Tan1, Qixue Wang2, Yingbin Xie3
1Department of Pathology, School of Basic Medical Sciences, Peking University Health Science Center, Beijing 100191, P.R. China.
Abstract:
The present study aimed to identify the therapeutic role of the forkhead box M1 (FOXM1)‑associated pathway in triple‑negative breast cancer (TNBC). Using a Cancer Landscapes‑based analysis, a gene regulatory network model was constructed. The present results demonstrated that FOXM1 occupies a key position in gene networks and is a critical regulatory gene in breast cancer. Using breast carcinoma gene expression data from The Cancer Genome Atlas, it was identified that FOXM1 expression was increased in the basal‑like breast cancer subtype compared with other breast cancer subtypes. RNA‑sequencing analysis of MDA‑MB‑231 cells treated with 4 and 10 µl/ml Thiostrepton identified 662 and 5,888 significantly differentially expressed genes, respectively. The Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses demonstrated that FOXM1 was highly associated with multiple biological processes and was markedly associated with metabolic pathways in TNBC. The use of Search Tool for the Retrieval of Interacting Genes/Proteins provided a critical assessment and integration of protein‑protein interactions, and demonstrated the multiple important functions of FOXM1 in TNBC. Real‑time cell analysis, reverse transcription‑quantitative polymerase chain reaction and immunofluorescence staining were used to assess the anti‑tumor activity of Thiostrepton in TNBC cells in vitro. The present results identified that suppression of FOXM1 using Thiostrepton inhibited MDA‑MB‑231 cell proliferation and the expression of cell cycle‑associated genes, including cyclin A2, cyclin B2, checkpoint kinase 1, centrosomal protein 55 and polo like kinase 1. Immunofluorescence staining analysis demonstrated that vimentin, filamentous actin and zinc finger E‑box‑binding homeobox 1 were all decreased following treatment with Thiostrepton. Furthermore, a BALB/C nude mouse subcutaneous xenograft model was used to verify the function of FOXM1 in vivo. The present results demonstrated that FOXM1 inhibition significantly suppressed MDA‑MB‑231 cell tumorigenesis in vivo. Overall, the present results suggested that FOXM1 is a key gene that serves important roles in multiple biological processes in TNBC and that it may serve as a novel therapeutic target in TNBC.
Insights
Forkhead box M1 (FOXM1) is a key regulator in triple-negative breast cancer (TNBC). Inhibiting FOXM1 with Thiostrepton suppressed tumor growth in vitro and in vivo, suggesting FOXM1 as a potential therapeutic target for TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies.
- Forkhead box M1 (FOXM1) is implicated in various cancers.
- Identifying novel therapeutic targets for TNBC is crucial.
Purpose of the Study:
- To investigate the therapeutic potential of the FOXM1 pathway in TNBC.
- To elucidate the role of FOXM1 in TNBC progression and identify therapeutic strategies.
Main Methods:
- Bioinformatic analysis of The Cancer Genome Atlas (TCGA) data.
- RNA-sequencing and gene regulatory network construction.
- In vitro (cell lines) and in vivo (xenograft models) experiments using Thiostrepton.
Main Results:
- FOXM1 is upregulated in basal-like TNBC and acts as a critical regulatory gene.
- FOXM1 is associated with metabolic pathways in TNBC.
- Thiostrepton, a FOXM1 inhibitor, suppressed proliferation, cell cycle gene expression, and tumorigenesis in TNBC models.
Conclusions:
- FOXM1 plays a significant role in multiple biological processes in TNBC.
- Targeting FOXM1 with Thiostrepton demonstrates anti-tumor activity.
- FOXM1 represents a promising novel therapeutic target for TNBC.
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