The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches

Abstract Glioblastoma (GBM) is a highly aggressive brain tumor associated with limited therapeutic options and a poor prognosis. CXCR3, a chemokine receptor, serves dual autocrine–paracrine functions in cancer. Despite gaps in our understanding of the functional role of the CXCR3 receptor in GBM, it...

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Published in:Cell Death and Disease
Main Authors: Travis Yui Hei Chan, Jenny Sum Yee Wong, Karrie Mei-Yee Kiang, Cherry Won Yuet Sun, Gilberto Ka-Kit Leung
Format: Article
Language:English
Published: Nature Publishing Group 2023-12-01
Online Access:https://doi.org/10.1038/s41419-023-06354-2
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author Travis Yui Hei Chan
Jenny Sum Yee Wong
Karrie Mei-Yee Kiang
Cherry Won Yuet Sun
Gilberto Ka-Kit Leung
author_facet Travis Yui Hei Chan
Jenny Sum Yee Wong
Karrie Mei-Yee Kiang
Cherry Won Yuet Sun
Gilberto Ka-Kit Leung
author_sort Travis Yui Hei Chan
collection DOAJ
container_title Cell Death and Disease
description Abstract Glioblastoma (GBM) is a highly aggressive brain tumor associated with limited therapeutic options and a poor prognosis. CXCR3, a chemokine receptor, serves dual autocrine–paracrine functions in cancer. Despite gaps in our understanding of the functional role of the CXCR3 receptor in GBM, it has been shown to hold promise as a therapeutic target for the treatment of GBM. Existing clinical therapeutics and vaccines targeting CXCR3 ligand expression associated with the CXCR3 axes have also shown anti-tumorigenic effects in GBM. This review summarizes existing evidence on the oncogenic function of CXCR3 and its ligands CXCL9, CXCL10, and CXCL11, in GBM, and examines the controversies concerning the immunomodulatory functions of the CXCR3 receptor, including immune T cell recruitment, polarization, and positioning. The mechanisms underlying monotherpies and combination therapies targeting the CXCR3 pathways are discussed. A better understanding of the CXCR3 axes may lead to the development of strategies for overcoming the limitations of existing immunotherapies for GBM.
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spelling doaj-art-ceb8ee0ebf204fd78c30261a2bd034ea2025-08-19T23:56:17ZengNature Publishing GroupCell Death and Disease2041-48892023-12-01141211310.1038/s41419-023-06354-2The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approachesTravis Yui Hei Chan0Jenny Sum Yee Wong1Karrie Mei-Yee Kiang2Cherry Won Yuet Sun3Gilberto Ka-Kit Leung4Division of Neurosurgery, Department of Surgery, School of Clinical Medicine, LKS Faculty of Medicine, The University of Hong KongDivision of Vascular Surgery, Department of Surgery, School of Clinical Medicine, LKS Faculty of Medicine, The University of Hong KongDivision of Neurosurgery, Department of Surgery, School of Clinical Medicine, LKS Faculty of Medicine, The University of Hong KongRoyal College of Surgeons in Ireland, University of Medicine and Health SciencesDivision of Neurosurgery, Department of Surgery, School of Clinical Medicine, LKS Faculty of Medicine, The University of Hong KongAbstract Glioblastoma (GBM) is a highly aggressive brain tumor associated with limited therapeutic options and a poor prognosis. CXCR3, a chemokine receptor, serves dual autocrine–paracrine functions in cancer. Despite gaps in our understanding of the functional role of the CXCR3 receptor in GBM, it has been shown to hold promise as a therapeutic target for the treatment of GBM. Existing clinical therapeutics and vaccines targeting CXCR3 ligand expression associated with the CXCR3 axes have also shown anti-tumorigenic effects in GBM. This review summarizes existing evidence on the oncogenic function of CXCR3 and its ligands CXCL9, CXCL10, and CXCL11, in GBM, and examines the controversies concerning the immunomodulatory functions of the CXCR3 receptor, including immune T cell recruitment, polarization, and positioning. The mechanisms underlying monotherpies and combination therapies targeting the CXCR3 pathways are discussed. A better understanding of the CXCR3 axes may lead to the development of strategies for overcoming the limitations of existing immunotherapies for GBM.https://doi.org/10.1038/s41419-023-06354-2
spellingShingle Travis Yui Hei Chan
Jenny Sum Yee Wong
Karrie Mei-Yee Kiang
Cherry Won Yuet Sun
Gilberto Ka-Kit Leung
The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title_full The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title_fullStr The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title_full_unstemmed The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title_short The duality of CXCR3 in glioblastoma: unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
title_sort duality of cxcr3 in glioblastoma unveiling autocrine and paracrine mechanisms for novel therapeutic approaches
url https://doi.org/10.1038/s41419-023-06354-2
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