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Updated: Oct 23, 2025

Phenotypic Characterization of Macrophages from Rat Kidney by Flow Cytometry
Published on: October 18, 2016
The Role of Macrophages in Kidney Fibrosis
Xiaoling Wang1,2, Jianwei Chen3, Jun Xu4
1Shanxi Key Laboratory of Birth Defect and Cell Regeneration, Shanxi Medical University, Taiyuan, China.
Abstract:
The phenotypic heterogeneity and functional diversity of macrophages confer on them complexed roles in the development and progression of kidney diseases. After kidney injury, bone marrow-derived monocytes are rapidly recruited to the glomerulus and tubulointerstitium. They are activated and differentiated on site into pro-inflammatory M1 macrophages, which initiate Th1-type adaptive immune responses and damage normal tissues. In contrast, anti-inflammatory M2 macrophages induce Th2-type immune responses, secrete large amounts of TGF-β and anti-inflammatory cytokines, transform into αSMA+ myofibroblasts in injured kidney, inhibit immune responses, and promote wound healing and tissue fibrosis. Previous studies on the role of macrophages in kidney fibrosis were mainly focused on inflammation-associated injury and injury repair. Apart from macrophage-secreted profibrotic cytokines, such as TGF-β, evidence for a direct contribution of macrophages to kidney fibrosis is lacking. However, under inflammatory conditions, Wnt ligands are derived mainly from macrophages and Wnt signaling is central in the network of multiple profibrotic pathways. Largely underinvestigated are the direct contribution of macrophages to profibrotic signaling pathways, macrophage phenotypic heterogeneity and functional diversity in relation to kidney fibrosis, and on their cross-talk with other cells in profibrotic signaling networks that cause fibrosis. Here we aim to provide an overview on the roles of macrophage phenotypic and functional diversity in their contribution to pro-fibrotic signaling pathways, and on the therapeutic potential of targeting macrophages for the treatment of kidney fibrosis.
Insights
Macrophages exhibit diverse roles in kidney disease. While M1 macrophages cause damage, M2 macrophages promote healing and fibrosis, with their direct contribution to kidney fibrosis pathways needing further investigation.
Area of Science:
- Nephrology
- Immunology
- Cell Biology
Background:
- Macrophages play complex roles in kidney diseases, with distinct M1 (pro-inflammatory) and M2 (anti-inflammatory/fibrotic) phenotypes.
- M2 macrophages contribute to kidney fibrosis by secreting TGF-β and transforming into myofibroblasts.
- Existing research on macrophages in kidney fibrosis primarily focuses on inflammation and repair, with limited understanding of direct profibrotic signaling contributions.
Purpose of the Study:
- To provide an overview of macrophage phenotypic and functional diversity in kidney fibrosis.
- To explore the direct contribution of macrophages to profibrotic signaling pathways.
- To discuss the therapeutic potential of targeting macrophages for kidney fibrosis treatment.
Main Methods:
- Literature review and synthesis of existing research on macrophage roles in kidney fibrosis.
- Analysis of macrophage phenotypic heterogeneity and functional diversity.
- Examination of macrophage cross-talk with other cells in profibrotic signaling.
Main Results:
- Macrophages exhibit significant phenotypic and functional diversity, influencing kidney disease progression.
- Evidence suggests macrophages directly contribute to kidney fibrosis through secreted factors and signaling pathways like Wnt.
- Macrophage cross-talk with other cells is crucial in profibrotic networks.
Conclusions:
- Macrophage diversity is a key factor in kidney fibrosis development and progression.
- Targeting macrophage functions offers potential therapeutic strategies for kidney fibrosis.
- Further research is needed to fully elucidate the direct profibrotic roles of macrophages.
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