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Recent Advances Targeting CCR5 for Cancer and Its Role in Immuno-Oncology
Xuanmao Jiao1, Omar Nawab1,2, Tejal Patel2
1Pennsylvania Cancer and Regenerative Medicine Research Center, Baruch S. Blumberg Institute, Pennsylvania Biotechnology Center, Wynnewood, Pennsylvania.
Abstract:
Experiments of nature have revealed the peculiar importance of the G-protein-coupled receptor, C-C chemokine receptor type 5 (CCR5), in human disease since ancient times. The resurgence of interest in heterotypic signals in the onset and progression of tumorigenesis has led to the current focus on CCR5 as an exciting new therapeutic target for metastatic cancer with clinical trials now targeting breast and colon cancer. The eutopic expression of CCR5 activates calcium signaling and thereby augments regulatory T cell (Treg) differentiation and migration to sites of inflammation. The misexpression of CCR5 in epithelial cells, induced upon oncogenic transformation, hijacks this migratory phenotype. CCR5 reexpression augments resistance to DNA-damaging agents and is sufficient to induce cancer metastasis and "stemness". Recent studies suggest important cross-talk between CCR5 signaling and immune checkpoint function. Because CCR5 on Tregs serves as the coreceptor for human immunodeficiency virus (HIV) entry, CCR5-targeted therapeutics used in HIV, [small molecules (maraviroc and vicriviroc) and a humanized mAb (leronlimab)], are now being repositioned in clinical trials as cancer therapeutics. As CCR5 is expressed on a broad array of tumors, the opportunity for therapeutic repositioning and the rationale for combination therapy approaches are reviewed herein.
Insights
The C-C chemokine receptor type 5 (CCR5) is a promising target for metastatic cancer therapy. Therapeutics targeting CCR5, initially developed for HIV, are now being repurposed for cancer treatment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- The G-protein-coupled receptor C-C chemokine receptor type 5 (CCR5) plays a significant role in human diseases.
- CCR5 signaling is implicated in tumorigenesis, inflammation, and immune cell regulation.
- Misexpression of CCR5 in epithelial cells contributes to cancer progression and metastasis.
Purpose of the Study:
- To review the role of CCR5 in cancer development and metastasis.
- To explore the potential of CCR5-targeted therapeutics in cancer treatment.
- To discuss the repositioning of HIV therapeutics for cancer therapy.
Main Methods:
- Review of existing literature on CCR5 in cancer and HIV.
- Analysis of CCR5 signaling pathways in tumorigenesis.
- Examination of clinical trial data for CCR5-targeted drugs in cancer.
Main Results:
- CCR5 expression in tumors promotes metastasis and resistance to DNA-damaging agents.
- CCR5 signaling influences regulatory T cell (Treg) function and immune checkpoints.
- CCR5 antagonists, like maraviroc and leronlimab, show promise as cancer therapeutics.
Conclusions:
- CCR5 is a critical target for novel cancer therapies, particularly for metastatic disease.
- Repositioning of HIV CCR5 inhibitors offers a viable strategy for cancer treatment.
- Combination therapy approaches involving CCR5 inhibitors warrant further investigation.
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