The role of CXCL1/CXCR2 axis in neurological diseases
- PMID: 37247498
- DOI: 10.1016/j.intimp.2023.110330
The role of CXCL1/CXCR2 axis in neurological diseases
Abstract
The C-X-C chemokine ligand (CXCL) 1 and its receptor C-X-C chemokine receptor (CXCR) 2 are widely expressed in the peripheral nervous systems (PNS) and central nervous systems (CNS) and are involved in the development of inflammation and pain after various nerve injuries. Once a nerve is damaged, it affects not only the neuron itself but also lesions elsewhere in its dominant site. After the CXCL1/CXCR2 axis is activated, multiple downstream pathways can be activated, such as c-Raf/MAPK/AP-1, p-PKC-μ/p-ILK/NLRP3, JAK2/STAT3, TAK1/NF-κB, etc. These pathways in turn mediate cellular motility state or cell migration. CXCR2 is expressed on the surface of neutrophils and monocytes/macrophages. These cells can be recruited to the lesion through the CXCL1/CXCR2 axis to participate in the inflammatory response. The expression of CXCR2 in neurons can activate some pathways in neurons through the CXCL1/CXCR2 axis, thereby causing damage to neurons. CXCR2 is also expressed in astrocytes, and when CXCR2 activated, it increases the number of astrocytes but impairs their function. Since inflammation can occur at almost any site of injury, elucidating the mechanism of CXCL1/CXCR2 axis' influence on inflammation may provide a favorable target for clinical treatment. Therefore, this article reviews the research progress of the CXCL1/CXCR2 axis in neurological diseases, aiming to provide a more meaningful theoretical basis for the treatment of neurological diseases.
Keywords: CNS; CXCL1; CXCR2; Inflammation; PNS.
Copyright © 2023 Elsevier B.V. All rights reserved.
Conflict of interest statement
Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Similar articles
-
Levo-corydalmine alleviates vincristine-induced neuropathic pain in mice by inhibiting an NF-kappa B-dependent CXCL1/CXCR2 signaling pathway.Neuropharmacology. 2018 Jun;135:34-47. doi: 10.1016/j.neuropharm.2018.03.004. Epub 2018 Mar 5. Neuropharmacology. 2018. PMID: 29518397
-
CXCL1-CXCR2 axis mediates inflammatory response after sciatic nerve injury by regulating macrophage infiltration.Mol Immunol. 2024 May;169:50-65. doi: 10.1016/j.molimm.2024.03.006. Epub 2024 Mar 16. Mol Immunol. 2024. PMID: 38493581
-
Crosstalk between NFκB-dependent astrocytic CXCL1 and neuron CXCR2 plays a role in descending pain facilitation.J Neuroinflammation. 2019 Jan 3;16(1):1. doi: 10.1186/s12974-018-1391-2. J Neuroinflammation. 2019. PMID: 30606213 Free PMC article.
-
CXCL1/CXCR2 signaling in pathological pain: Role in peripheral and central sensitization.Neurobiol Dis. 2017 Sep;105:109-116. doi: 10.1016/j.nbd.2017.06.001. Epub 2017 Jun 3. Neurobiol Dis. 2017. PMID: 28587921 Review.
-
CXCR2 Receptor: Regulation of Expression, Signal Transduction, and Involvement in Cancer.Int J Mol Sci. 2022 Feb 16;23(4):2168. doi: 10.3390/ijms23042168. Int J Mol Sci. 2022. PMID: 35216283 Free PMC article. Review.
Cited by
-
Inhibition of CXCR2 as a therapeutic target for chronic post-surgical pain: Insights from animal and cell models.Cytojournal. 2024 Aug 29;21:28. doi: 10.25259/Cytojournal_46_2024. eCollection 2024. Cytojournal. 2024. PMID: 39391210 Free PMC article.
-
miR-758-3p Interferes with Neuronal Apoptosis in Cerebral Ischemia-Reperfusion by Inhibiting ILK.Mol Neurobiol. 2025 Jun;62(6):7805-7819. doi: 10.1007/s12035-025-04736-5. Epub 2025 Feb 12. Mol Neurobiol. 2025. PMID: 39937418 Free PMC article.
-
Adverse effects of CXCR2 deficiency in mice reared under non-gnotobiotic conditions.Sci Rep. 2024 Oct 30;14(1):26159. doi: 10.1038/s41598-024-75532-9. Sci Rep. 2024. PMID: 39478033 Free PMC article.
-
The Role of CXCR3 in Nervous System-Related Diseases.Mediators Inflamm. 2024 Oct 11;2024:8347647. doi: 10.1155/2024/8347647. eCollection 2024. Mediators Inflamm. 2024. PMID: 39429695 Free PMC article. Review.
-
Identification of senescence-related biomarkers for osteoporosis based on microarray analysis, Mendelian randomization, and experimental validation.Mamm Genome. 2025 May 24. doi: 10.1007/s00335-025-10116-0. Online ahead of print. Mamm Genome. 2025. PMID: 40411576
Publication types
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Medical
Research Materials
Miscellaneous