ArticleFrontiers in cell and developmental biology2025
Spatial multi-omics analysis of tumor-stroma boundary cell features for predicting breast cancer progression and therapy response.
Article in Frontiers in cell and developmental biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 18 papers.
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Who cites it
18 citing papers in PubMed.
- Decoding epithelial-mesenchymal transitions with multi-omics.Nature reviews. Genetics · 2026Review
- Integrative spatial multi-omics reveals the tumor ecosystem: From mechanistic insights to therapeutic strategies.iScience · 2026Review
- Review
- Interpretable spatial multi-omics data integration and dimensionality reduction with SpaMV.Nature communications · 2026Article
- Combination of APS, HMGN1, and anti-TNFR2 antibody remodels the tumor immune microenvironment to enhance antitumor immunity in colorectal cancer.Translational oncology · 2026Article
- A Multicellular Coordinated Network Driving Lymphovascular Space Invasion in Endometrioid Endometrial Carcinoma.Cell proliferation · 2026Article
- Mechanisms of Resistance and Synergy: The Role of Tumor Microenvironment in HER2-Low Breast Cancer Therapy.Pharmaceuticals (Basel, Switzerland) · 2026Review
- Intratumoral and peritumoral habitat imaging based on multiparametric MRI to predict HER2-negative breast cancer subtypes: a multicenter study.BMC medical imaging · 2026Article
- Metabolic characterization of tumor-immune interactions by multiplexed immunofluorescence reveals spatial mechanisms of immunotherapy response in non-small cell lung carcinoma (NSCLC).Nature communications · 2026Article
- Cancer-associated fibroblasts: enablers of tumor drug resistance.Journal of translational medicine · 2026Review
- Targeting Tumor-Associated Macrophages to Reshape the Immuno-Mechanical Landscape: Molecular Mechanisms and Therapeutic Strategies.International journal of biological sciences · 2026Review
- Distinct transcriptomic features of tumor and stromal cells in direct contact in luminal and triple-negative breast cancers.Exploration of targeted anti-tumor therapy · 2026Article
- Integrative Multiomics Analysis Reveals Tumor-Associated Macrophage Heterogeneity and a Prognostic Signature in Gastric Cancer.Human mutation · 2026Article
- The invasive front in hepatocellular carcinoma: toward a tumor-CAF-macrophage metabolic interface.Frontiers in immunology · 2026Article
- Precision Oncology: Current Landscape, Emerging Trends, Challenges, and Future Perspectives.Cells · 2025Review
- Tissue- and Cell-Type-Specific Genetic Regulation of CTBP1 in Breast Cancer: Integrative Analyses with Exploratory Single-Cell and Imaging Data.Breast cancer (Dove Medical Press) · 2025Article
- Chaperonins in Hepatocellular Carcinoma: Unveiling Their Role in Tumor Proliferation and Immune Modulation Through Multiomics Analysis.International journal of genomics · 2025Article
- Role of EMT in drug resistance of breast cancer: molecular mechanisms and therapeutic strategies.Frontiers in oncology · 2025Review
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7 authors.
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Abstract
Background: The tumor boundary of breast cancer represents a highly heterogeneous region. In this area, the interactions between malignant and non-malignant cells influence tumor progression, immune evasion, and drug resistance. However, the spatial transcriptional profile of the tumor boundary and its role in the prognosis and treatment response of breast cancer remain unclear. Method: Utilizing the Cottrazm algorithm, we reconstructed the intricate boundaries and identified differentially expressed genes (DEGs) associated with these regions. Cell-cell co-positioning analysis was conducted using SpaCET, which revealed key interactions between tumor-associated macrophage (TAMs) and cancer-associated fibroblasts (CAFs). Additionally, Lasso regression analysis was employed to develop a malignant body signature (MBS), which was subsequently validated using the TCGA dataset for prognosis prediction and treatment response assessment. Results: Our research indicates that the tumor boundary is characterized by a rich reconstruction of the extracellular matrix (ECM), immunomodulatory regulation, and the epithelial-to-mesenchymal transition (EMT), underscoring its significance in tumor progression. Spatial colocalization analysis reveals a significant interaction between CAFs and M2-like tumor-associated macrophage (TAM), which contributes to immune exclusion and drug resistance. The MBS score effectively stratifies patients into high-risk groups, with survival outcomes for patients exhibiting high MBS scores being significantly poorer. Furthermore, drug sensitivity analysis demonstrates that high-MB tumors had poor response to chemotherapy strategies, highlighting the role of the tumor boundary in modulating therapeutic efficacy. Conclusion: Collectively, we investigate the spatial transcription group and bulk data to elucidate the characteristics of tumor boundary molecules in breast cancer. The CAF-M2 phenotype emerges as a critical determinant of immunosuppression and drug resistance, suggesting that targeting this interaction may improve treatment responses. Furthermore, the MBS serves as a novel prognostic tool and offers potential strategies for guiding personalized treatment approaches in breast cancer.
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