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Published on: October 27, 2020
Inhibition of TFF3 synergizes with c-MET inhibitors to decrease the CSC-like phenotype and metastatic burden in
Chuyu He1, Xuejuan Wang1, Yi-Shiou Chiou1,2
1Institute of Biopharmaceutical and Health Engineering and Tsinghua Berkeley Shenzhen Institute, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, PR China.
Abstract:
The interaction between HER2 and ERα signaling pathways contributes to resistance to anti-estrogen and HER2-targeted therapies, presenting substantial treatment challenges in ER-positive (ER+) HER2-positive (HER2+) mammary carcinoma (MC). Trefoil Factor-3 (TFF3) has been reported to mediate resistance to both anti-estrogen and anti-HER2 targeted therapies in ER+ and ER+HER2+ MC, respectively. Herein, the function and mechanism of TFF3 in ER+HER2+ MC were delineated; and novel combinatorial therapeutic strategies were identified. Elevated expression of TFF3 promoted the oncogenicity of ER+HER2+ MC cells, including enhanced cell proliferation, survival, anchorage-independent growth, 3D growth, cancer stem cell-like (CSC-like) phenotype, migration, invasion, and xenograft growth. Targeting TFF3 with an interfering RNA plasmid or a small-molecule inhibitor (AMPC) inhibited these oncogenic characteristics, highlighting the therapeutic potential of targeting TFF3 in ER+HER2+ MC. Furthermore, a high-throughput combinatorial anti-cancer compound library screening revealed that AMPC preferentially synergized with receptor tyrosine kinase c-MET inhibitors (c-METis) to reduce cell survival and the CSC-like phenotype. The combination of AMPC and c-METis also synergistically suppressed the in vivo growth of ER+HER2+ MC cell-derived xenografts and abrogated lung metastasis. Mechanistically, TFF3 was observed to activate c-MET signaling through a positive-feedback loop to enhance the CSC-like phenotype of ER+HER2+ MC. Therefore, proof of concept is provided herein that antagonizing of TFF3 is a promising therapeutic strategy in combination with c-MET inhibition for the treatment of ER+HER2+ MC.
Insights
Trefoil Factor-3 (TFF3) drives oncogenicity in ER-positive HER2-positive mammary carcinoma. Targeting TFF3 with AMPC and c-MET inhibitors shows promise for treating this challenging cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Estrogen receptor-positive (ER+) and HER2-positive (HER2+) mammary carcinoma (MC) presents treatment resistance due to HER2/ERα pathway interactions.
- Trefoil Factor-3 (TFF3) is implicated in mediating resistance to endocrine and HER2-targeted therapies in ER+ and ER+HER2+ MC.
Purpose of the Study:
- To elucidate the role and mechanism of TFF3 in ER+HER2+ MC.
- To identify novel combinatorial therapeutic strategies for ER+HER2+ MC.
Main Methods:
- Investigated TFF3 function using interfering RNA and small-molecule inhibitors (AMPC).
- Conducted high-throughput screening to identify synergistic drug combinations.
- Assessed effects on cell proliferation, survival, stem cell phenotype, invasion, and xenograft growth.
- Analyzed TFF3's mechanism involving c-MET signaling.
Main Results:
- Elevated TFF3 expression enhanced ER+HER2+ MC oncogenicity, including proliferation, survival, and stem cell characteristics.
- Targeting TFF3 with AMPC inhibited these oncogenic properties.
- AMPC synergized with c-MET inhibitors (c-METis) to reduce cell survival and stem cell phenotype.
- The combination therapy suppressed tumor growth and metastasis in vivo.
Conclusions:
- TFF3 antagonism is a viable therapeutic strategy for ER+HER2+ MC.
- Combining TFF3 inhibition with c-MET inhibition offers a promising approach for treating ER+HER2+ MC.
- TFF3 activates c-MET signaling in a positive-feedback loop, enhancing the cancer stem cell phenotype.
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