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Updated: Jan 15, 2026

Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
FAK-Induced Time Dependent Cell Response Profiling: Prediction, Identification, and Analysis of Anti-Tumor Immune
Lu Jin1,2, Mengyun Chen1,3, Jingyi Lou1,3
1Second Clinical Medical School, Jinhua Academy, Zhejiang Chinese Medical University, Hangzhou, 310053, People's Republic of China.
Background:
Focal Adhesion Kinase (FAK) is a key tyrosine kinase often overexpressed in tumors, making it a promising target for cancer therapy. This study aims to screen and investigate the activity and mechanisms of Traditional Chinese Medicines (TCMs) targeting FAK within breast cancer.
Materials And Methods:
Using xCELLigence system, we identified TCMs affecting FAK signaling and validated its anti-tumor effects. The 4T1-Luc breast cancer models and MMTV-PyMT mice were used to evaluate Moutan Cortex Radicis (MCR) on tumor growth and lung metastasis, with flow cytometry assessing immune cell changes. We utilized CRISPR-Cas9 to investigate the anti-tumor mechanisms of MCR by specifically targeting the FAK signaling pathway. To elucidate the underlying molecular mechanisms, RNA sequencing was performed, and the results were subsequently validated through quantitative reverse transcription PCR (qRT-PCR) and Western blot analysis.
Results:
We have successfully developed the EGF-induced Time-dependent Cell Response Profilings (FAK-TCRPs) and discovered that MCR effectively attenuated EGF-mediated responses in a dose-dependent manner. Additionally, MCR significantly inhibited tumor growth and lung metastasis by partly targeting FAK. MCR increased CD8+ T cell infiltration and the proportion of CD44HiCD62LHi central memory and CD44HiCD62LLow effector memory T cells, while reducing regulatory T cells (Tregs) and CTLA-4 expression. MCR converted M2 tumor-associated macrophages (TAMs) to M1 within the tumor microenvironment (TME). In FAK-deficient mice, MCR did not affect on CD8+ cells, TAMs, or CTLA-4 expression. MCR modulated chemokine signaling and ECM-receptor interactions, decreasing CCL1, CCL5, TGF, IL-4, IL-10, TNF-α, and IL-6, while increasing CCL7, CXCL10, and IL-24. It significantly inhibited FAK mRNA in tumors. Cellular experiments demonstrated that MCR suppressed P-FAK and P-Erk activation and reduced MMP-2, MMP-9, Laminin, and Fibronectin levels.
Conclusion:
Collectively, MCR is identified as a FAK-targeting agent through FAK-TCRPs. MCR inhibits TAMs, CTLA-4, and chemokine transcription via the FAK/MMPs pathway, showing antitumor effects in breast cancer.
Insights
Moutan Cortex Radicis (MCR) effectively targets Focal Adhesion Kinase (FAK) in breast cancer, inhibiting tumor growth and metastasis. MCR modulates immune cells and signaling pathways, offering a novel therapeutic strategy.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Focal Adhesion Kinase (FAK) is a key tyrosine kinase implicated in tumor progression and a promising target for cancer therapy.
- Traditional Chinese Medicines (TCMs) offer a potential source of novel anti-cancer agents.
- Breast cancer remains a significant global health challenge, necessitating the development of new therapeutic strategies.
Purpose of the Study:
- To screen TCMs for activity against FAK in breast cancer.
- To investigate the anti-tumor effects and mechanisms of Moutan Cortex Radicis (MCR) targeting FAK.
- To elucidate the molecular pathways modulated by MCR in the tumor microenvironment.
Main Methods:
- Utilized xCELLigence system for high-throughput screening of TCMs affecting FAK signaling.
- Employed 4T1-Luc breast cancer models and MMTV-PyMT mice for in vivo efficacy studies.
- Applied CRISPR-Cas9, RNA sequencing, qRT-PCR, and Western blot to dissect anti-tumor mechanisms.
- Flow cytometry was used to analyze immune cell populations and tumor-associated macrophages (TAMs).
Main Results:
- Moutan Cortex Radicis (MCR) demonstrated dose-dependent inhibition of EGF-mediated responses and significantly suppressed tumor growth and lung metastasis.
- MCR enhanced CD8+ T cell infiltration and memory T cell populations while reducing regulatory T cells (Tregs) and CTLA-4 expression.
- MCR promoted M2 to M1 TAM polarization and modulated chemokine signaling, decreasing pro-tumorigenic factors and increasing anti-tumorigenic factors.
- MCR significantly inhibited FAK mRNA, p-FAK, p-Erk activation, and matrix metalloproteinases (MMPs) in cellular experiments.
Conclusions:
- Moutan Cortex Radicis (MCR) is identified as a FAK-targeting agent with significant anti-tumor effects in breast cancer.
- MCR exerts its effects by inhibiting TAMs, CTLA-4, and chemokine transcription via the FAK/MMPs pathway.
- These findings highlight MCR as a potential therapeutic candidate for breast cancer treatment, warranting further investigation.
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