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Updated: Feb 5, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Targeting the MIF/CXCR7/AKT Signaling Pathway in Castration-Resistant Prostate Cancer
Shahrzad Rafiei1, Bin Gui1, Jiaxin Wu2
1Division of Urology, Department of Surgery, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts.
Abstract:
Although androgen deprivation therapy (ADT) is an effective treatment for metastatic prostate cancer, incurable castration-resistant prostate cancer (CRPC) inevitably develops. Importantly, androgen receptor (AR) continues to be critical for prostate cancer growth and progression after ADT. One of the underlying molecular mechanisms is derepression of AR-repressed genes involved in cell cycle and proliferation after ADT. Here, the data demonstrate that C-X-C chemokine receptor type 7 (CXCR7), a seven-transmembrane G-protein-coupled chemokine receptor, is an AR-repressed gene and is upregulated after ADT. AR directly regulates CXCR7 using clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 (CRISPR/Cas9) gene editing. Macrophage migration inhibitory factor (MIF) was identified as a ligand for CXCR7, which induces expression of cell-cycle genes through activating AKT signaling pathway. Previous studies have been focused on chemokine CXCL12 and its receptor CXCR4 in mediating metastasis of various cancer types, including prostate cancer. The critical roles of CXCL12/CXCR4 axis in the interaction between cancer cells and their microenvironment render it a promising therapeutic target in cancer treatment. The data suggest that the MIF/CXCR7/AKT pathway drives CRPC growth and metastasis independent of the CXCL12/CXCR4 axis. Furthermore, CXCR7 blockade in combination with anti-androgen enzalutamide inhibits CRPC tumor growth and potentially prevents metastasis. Notably, both MIF and CXCR7 are overexpressed in CRPC patient specimens and therefore are attractive therapeutic targets for these patients. IMPLICATIONS: This work suggests that CXCR7 plays more important roles than CXCR4 in CRPC progression; thus, targeting CXCR7 in combination with anti-androgen is a promising therapeutic approach for metastatic CRPC.
Insights
Targeting C-X-C chemokine receptor type 7 (CXCR7) with anti-androgen therapy shows promise for treating metastatic castration-resistant prostate cancer (CRPC). This approach inhibits tumor growth and metastasis by blocking the MIF/CXCR7/AKT pathway, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Androgen deprivation therapy (ADT) is effective for metastatic prostate cancer, but castration-resistant prostate cancer (CRPC) eventually develops.
- The androgen receptor (AR) remains crucial for CRPC growth, with AR-repressed genes driving proliferation after ADT.
- C-X-C chemokine receptor type 7 (CXCR7) is identified as an AR-repressed gene upregulated post-ADT.
Purpose of the Study:
- To investigate the role of CXCR7 in CRPC progression and its potential as a therapeutic target.
- To elucidate the molecular pathway involving CXCR7 in CRPC growth and metastasis.
- To evaluate the efficacy of CXCR7 blockade in combination with anti-androgen therapy.
Main Methods:
- Utilized clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 (CRISPR/Cas9) gene editing to confirm direct AR regulation of CXCR7.
- Identified macrophage migration inhibitory factor (MIF) as a CXCR7 ligand that activates the AKT signaling pathway.
- Assessed the impact of CXCR7 blockade combined with enzalutamide on CRPC tumor growth and metastasis in preclinical models.
Main Results:
- CXCR7 is upregulated after ADT and directly regulated by AR.
- The MIF/CXCR7/AKT pathway promotes CRPC growth and metastasis independently of the CXCL12/CXCR4 axis.
- CXCR7 and MIF are overexpressed in CRPC patient specimens.
- Combination therapy of CXCR7 blockade and enzalutamide inhibited CRPC tumor growth and metastasis.
Conclusions:
- CXCR7 plays a significant role in CRPC progression, potentially more critical than CXCR4.
- The MIF/CXCR7/AKT pathway represents a novel mechanism driving CRPC.
- Targeting CXCR7 in combination with anti-androgen therapy is a promising strategy for metastatic CRPC.
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