International Journal of Molecular Sciences (Dec 2022)

Changes in the Expression and Functional Activities of C-X-C Motif Chemokine Ligand 13 (<i>CXCL13</i>) in Hyperplastic Prostate

  • Daoquan Liu,
  • Mingzhou Li,
  • Xun Fu,
  • Shu Yang,
  • Zhen Wang,
  • Jianmin Liu,
  • Yan Li,
  • Yongying Zhou,
  • Pengfei Ren,
  • Yuhang Guo,
  • Xinghuan Wang,
  • Michael E. DiSanto,
  • Ping Chen,
  • Xinhua Zhang

DOI
https://doi.org/10.3390/ijms24010056
Journal volume & issue
Vol. 24, no. 1
p. 56

Abstract

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Background: C-X-C motif chemokine ligand 13 (CXCL13), a member of the CXC subtype in chemokine superfamily, affects numerous biological processes of various types of cells and the progress of a great number of clinical diseases. The purpose of the current study was to reveal the internal mechanism between CXCL13 and benign prostatic hyperplasia (BPH). Methods: Human serum, prostate tissues and human prostate cell lines (BPH-1, WPMY-1) were utilized. The effect of recombinant human CXCL13 (rHuCXCL13) protein and the influences of the knockdown/overexpression of CXCL13 on two cell lines were studied. Rescue experiments by anti-CXCR5 were also conducted. In vivo, rHuCXCL13 was injected into the ventral prostate of rats. Additionally, a tissue microarray of hyperplastic prostate tissues was constructed to analyze the correlations between CXCL13 and clinical parameters. Results: CXCL13 was highly expressed in the prostate tissues and upregulated in the BPH group. It was observed that CXCL13 modulated cell proliferation, apoptosis, and the epithelial–mesenchymal transition (EMT) through CXCR5 via AKT and the ERK1/2 pathway in BPH-1, while it contributed to inflammation and fibrosis through CXCR5 via the STAT3 pathway in WPMY-1. In vivo, rHuCXCL13 induced the development of rat BPH. Additionally, CXCL13 was positively correlated with the prostate volume and total prostate specific antigen. Conclusions: Our novel data demonstrated that CXCL13 modulated cell proliferation, cell cycle, the EMT of epithelial cells, and induced the fibrosis of prostatic stromal cells via a variety of inflammatory factors, suggesting that CXCL13 might be rediscovered as a potential therapeutic target for the treatment of BPH.

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