4.7 Article

IGFBP2 promotes tumor progression by inducing alternative polarization of macrophages in pancreatic ductal adenocarcinoma through the STAT3 pathway

期刊

CANCER LETTERS
卷 500, 期 -, 页码 132-146

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.canlet.2020.12.008

关键词

IGFBP2; TAM; alternative polarization; PDAC; STAT3

类别

资金

  1. U.S. National Institutes of Health/National Cancer Institute [P30CA012197]
  2. National Foundation for Cancer Research
  3. Skip Viragh Family Foundation
  4. National Natural Science Foundation of China [81702410]
  5. Natural Science Foundation of Tianjin [17JCQNJC11100]
  6. Natural Science Foundation of Tianjin Medical University [2016KYZQ02]
  7. Hanes and Willis Family Endowed Professorship in Cancer
  8. Tianjin Medical University General Hospital and Comprehensive Cancer Center of Wake Forest Baptist Medical Center

向作者/读者索取更多资源

This study revealed the role of IGFBP2 in TAM polarization, where IGFBP2 promotes the accumulation of M2-like TAMs and plays a pro-tumor role in PDAC growth. Mechanistically, IGFBP2 activates STAT3 to increase IL-10 secretion, driving TAM polarization towards an M2 phenotype and contributing to the immunosuppressive microenvironment in PDAC.
Tumor-associated macrophages (TAMs) represent the M2-like phenotype with potent immunosuppressive activity, and play a pro-tumor role in pancreatic ductal adenocarcinoma (PDAC) biology. In this study, we investigated the role of the insulin-like growth factor binding protein 2 (IGFBP2) as a determinant of TAM polarity. Clinical data revealed that the levels of IGFBP2 correlated with M2 TAMs accumulation and disease progression in human PDAC. In vivo mouse model experiments showed that IGFBP2 promoted an immunosuppressive microenvironment and tumor growth in a macrophage dependent manner. Bioinformatics analysis of PDAC transcriptomes revealed a significant association between IGFBP2 expression and M2 macrophage polarization and signal transducer and activator of transcription 3 (STAT3) activation. Mechanistic investigations demonstrated that IGFBP2 augmented the expression and secretion of IL-10 through STAT3 activation in PDAC cells, which induced TAM polarization toward an M2 phenotype. IGFBP2-polarized M2 macrophages significantly increased Tregs infiltration and impaired antitumor T-cell immunity in a mouse model. Thus, our investigations have illuminated the IGFBP2 signaling pathway that contributes to the macrophage-based immunosuppressive microenvironment in PDAC, suggesting that blocking the IGFBP2 axis constitutes a potential treatment strategy to reset TAM polarization toward an antitumor state in PDAC.

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