The tyrosine kinase inhibitor nintedanib activates SHP-1 and induces apoptosis in triple-negative breast cancer cells

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作者
Chun-Yu Liu
Tzu-Ting Huang
Pei-Yi Chu
Chun-Teng Huang
Chia-Han Lee
Wan-Lun Wang
Ka-Yi Lau
Wen-Chun Tsai
Tzu-I Chao
Jung-Chen Su
Ming-Huang Chen
Chung-Wai Shiau
Ling-Ming Tseng
Kuen-Feng Chen
机构
[1] Comprehensive Breast Health Center,Division of Medical Oncology, Department of Oncology
[2] Taipei Veterans General Hospital,Department of Pathology
[3] Taipei Veterans General Hospital,Division of Hematology & Oncology, Department of Medicine
[4] School of Medicine,Department of Surgery
[5] National Yang-Ming University,Department of Medical Research
[6] Show Chwan Memorial Hospital,undefined
[7] School of Medicine,undefined
[8] College of Medicine,undefined
[9] Fu-Jen Catholic University,undefined
[10] Yang-Ming Branch of Taipei City Hospital,undefined
[11] Transplant Medicine & Surgery Research Centre,undefined
[12] Changhua Christian Hospital,undefined
[13] Institute of Biopharmaceutical Sciences,undefined
[14] National Yang-Ming University,undefined
[15] Taipei Veterans General Hospital,undefined
[16] National Taiwan University Hospital,undefined
[17] National Taiwan University College of Medicine,undefined
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摘要
Triple-negative breast cancer (TNBC) remains difficult to treat and urgently needs new therapeutic options. Nintedanib, a multikinase inhibitor, has exhibited efficacy in early clinical trials for HER2-negative breast cancer. In this study, we examined a new molecular mechanism of nintedanib in TNBC. The results demonstrated that nintedanib enhanced TNBC cell apoptosis, which was accompanied by a reduction of p-STAT3 and its downstream proteins. STAT3 overexpression suppressed nintedanib-mediated apoptosis and further increased the activity of purified SHP-1 protein. Moreover, treatment with either a specific inhibitor of SHP-1 or SHP-1-targeted siRNA reduced the apoptotic effects of nintedanib, which validates the role of SHP-1 in nintedanib-mediated apoptosis. Furthermore, nintedanib-induced apoptosis was attenuated in TNBC cells expressing SHP-1 mutants with constantly open conformations, suggesting that the autoinhibitory mechanism of SHP-1 attenuated the effects of nintedanib. Importantly, nintedanib significantly inhibited tumor growth via the SHP-1/p-STAT3 pathway. Clinically, SHP-1 levels were downregulated, whereas p-STAT3 was upregulated in tumor tissues, and SHP-1 transcripts were associated with improved disease-free survival in TNBC patients. Our findings revealed that nintedanib induces TNBC apoptosis by acting as a SHP-1 agonist, suggesting that targeting STAT3 by enhancing SHP-1 expression could be a viable therapeutic strategy against TNBC.
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页码:e366 / e366
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