VEGFB167 drives tumor progression by modulating the immune microenvironment

  • Int Immunopharmacol. 2025 Aug 28:161:115048. doi: 10.1016/j.intimp.2025.115048.
Yaowu Zheng  1 Quangang Chen  2 He Zhang  2 Xin Li  2 Salah Adlat  1 Yanan Yu  2 Noor Bahadar  1 Rajiv Kumar Sah  1 Wei Xu  2 Ankang Hu  3 Xiaodan Lu  4 Renjin Chen  5 Yang Chen  6
Affiliations
  • 1. Transgenic Research Center, Northeast Normal University, Changchun, Jilin 130024, China.
  • 2. School of Life Sciences, Xuzhou Medical University, Jiangsu, Xuzhou 221004, China.
  • 3. School of Life Sciences, Xuzhou Medical University, Jiangsu, Xuzhou 221004, China. Electronic address: [email protected].
  • 4. Precision Medicine Center, Jilin Province, General Hospital, Changchun 130021, China. Electronic address: [email protected].
  • 5. School of Life Sciences, Xuzhou Medical University, Jiangsu, Xuzhou 221004, China. Electronic address: [email protected].
  • 6. School of Life Sciences, Xuzhou Medical University, Jiangsu, Xuzhou 221004, China. Electronic address: [email protected].
Abstract

Vascular endothelial growth factor B (VEGFB), a member of VEGF family, shares the VEGFR1 receptor with VEGFA. VEGFB has two isoforms, VEGFB167 and VEGFB186, whose distinct biological roles remain poorly characterized. To elucidate the isoform-specific functions of VEGFB in tumorigenesis, we utilized transgenic mouse models, including VEGFB overexpression (aP2-Vegfb167, aP2-Vegfb186) and VEGFB knockout (Vegfb-/-), along with tumor cell lines (B16-F10, U14 and LLC). Our findings revealed that VEGFB167 acts as a potent promoter of tumor growth. VEGFB inactivation significantly retards tumor growth and tumor cell metastasis. Mechanistically, VEGFB deficiency alters the tumor microenvironment by shifting tumor-associated macrophages (TAMs) from a pro-tumor M2 phenotype to an anti-tumor M1 phenotype, thereby enhancing anti-tumor immunity. Notably, the impact of VEGFB on tumor growth and metastasis surpasses that of VEGFA, highlighting its potential as a promising therapeutic target. These findings establish VEGFB167 as a key regulator of tumor progression and suggest that targeting VEGFB signaling could provide novel strategies for VEGFB-sensitive cancers.

Keywords
Macrophage; STAT3; Tumor microenvironment; VEGFB; VEGFR1.