Investigation of Wnt2‘s Role in Macrophage Polarization and Its Effects on Sepsis

Objective Sepsis, characterized by organ dysfunction from an uncontrolled immune response to infection, remains a leading cause of mortality in critical care settings. A key underlying mechanism involves the imbalance between pro-inflammatory M1-type macrophages and anti-inflammatory M2-type macrophages in the biphasic pathological process of ‘cytokine storm–immunosuppression’ in sepsis. These macrophages, as crucial effector cells of innate immunity, contribute to multi-organ injury.Methods This article presents a comprehensive review of a large body of relevant literature. Wnt2, a secreted glycoprotein from the Wnt signaling family, performs distinct immunomodulatory roles. The classic Wnt/β-catenin signaling pathway interacts with key regulatory nodes like NF-κB and metabolic reprogramming to regulate macrophage phenotype switching, balance inflammatory cytokine release, and protect organs including the lungs, intestines, heart, and liver during sepsis.Results This article provides a comprehensive overview of the molecular characteristics of Wnt2, the pathological significance of macrophage polarization in sepsis, the molecular network underlying Wnt2-mediated macrophage polarization and inflammatory regulation, and the prospects for clinical translation.Conclusions The study establishes an integrative framework linking ‘Wnt/β-catenin–macrophage polarization–sepsis,’ providing a theoretical basis for the development of targeted immunotherapeutic strategies for sepsis.

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Journal
Immunological Investigations
Published
2026-10-01
DOI
https://doi.org/10.1080/08820139.2026.2712497
Primary Topic
Immune cells in cancer
Type
article
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article

Investigation of Wnt2‘s Role in Macrophage Polarization and Its Effects on Sepsis

Qiu Huang, Yong He, Jianfen Sun, Jing Tang et al.
Immunological Investigations
Immune cells in cancer
article

Investigation of Wnt2‘s Role in Macrophage Polarization and Its Effects on Sepsis

Qiu Huang, Yong He, Jianfen Sun, Jing Tang, Yao Lin, Wenkai Xiao
article en

Abstract

Objective Sepsis, characterized by organ dysfunction from an uncontrolled immune response to infection, remains a leading cause of mortality in critical care settings. A key underlying mechanism involves the imbalance between pro-inflammatory M1-type macrophages and anti-inflammatory M2-type macrophages in the biphasic pathological process of ‘cytokine storm–immunosuppression’ in sepsis. These macrophages, as crucial effector cells of innate immunity, contribute to multi-organ injury.Methods This article presents a comprehensive review of a large body of relevant literature. Wnt2, a secreted glycoprotein from the Wnt signaling family, performs distinct immunomodulatory roles. The classic Wnt/β-catenin signaling pathway interacts with key regulatory nodes like NF-κB and metabolic reprogramming to regulate macrophage phenotype switching, balance inflammatory cytokine release, and protect organs including the lungs, intestines, heart, and liver during sepsis.Results This article provides a comprehensive overview of the molecular characteristics of Wnt2, the pathological significance of macrophage polarization in sepsis, the molecular network underlying Wnt2-mediated macrophage polarization and inflammatory regulation, and the prospects for clinical translation.Conclusions The study establishes an integrative framework linking ‘Wnt/β-catenin–macrophage polarization–sepsis,’ providing a theoretical basis for the development of targeted immunotherapeutic strategies for sepsis.

Immunological Investigations
Macau University of Science and Technology (MO), Guangdong Medical College (CN), People’s Hospital of Rizhao (CN), Jieyang People's Hospital (CN)
Good health and well-being
Openalex Percentile: Top 19%
Immune cells in cancer
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Investigation of Wnt2‘s Role in Macrophage Polarization and Its Effects on Sepsis — Qiu Huang, Yong He, et al. · Immunological Investigations (2026) | TGRS Research Map | TGRS