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Updated: Nov 26, 2025

Rapid Depletion of Renal Macrophages Using Human CD59/Intermedilysin Cell Ablation Tool
Published on: May 9, 2025
Kidney inflammaging is promoted by CCR2+ macrophages and tissue-derived micro-environmental factors
Lise Lefèvre1,2, Jason S Iacovoni1, Hélène Martini1,3
1Institute of Metabolic and Cardiovascular Diseases, UMR1048, 1 av Jean Pouhlès, BP 84225, 31432, Toulouse, Cedex 4, France.
Abstract:
The incidence of disorders associated with low inflammatory state, such as chronic kidney disease, increases in the elderly. The accumulation of senescent cells during aging and the senescence-associated secretory phenotype, which leads to inflammaging, is known to be deleterious and account for progressive organ dysfunction. To date, the cellular actors implicated in chronic inflammation in the kidney during aging are still not well characterized. Using the DECyt method, based on hierarchical clustering of flow cytometry data, we showed that aging was associated with significant changes in stromal cell diversity in the kidney. In particular, we identified two cell populations up-regulated with aging, the mesenchymal stromal cell subset (kMSC) expressing CD73 and the monocyte-derived Ly6C+ CCR2+ macrophage subset expressing pro-inflammatory cytokines. Aged CD73+ kMSCs depicted senescence associated features with low proliferation rate, increased DNA damage foci and Ccl2 expression. Using co-cultures experiments, we showed that aged CD73+ kMSC promoted monocyte activation and secretion of inflammatory cytokines albeit less efficiently than young CD73+ kMSCs. In the context of ageing, increased frequency of CD73+ kMSC subpopulations could provide additional niche factors to newly recruited monocytes favoring a positive regulatory loop in response to local inflammation. Interfering with such partnership during aging could be a valuable approach to regulate kidney inflammaging and to limit the risk of developing chronic kidney disease in the elderly.
Insights
Aging kidneys show increased CD73+ kidney mesenchymal stromal cells (kMSCs) and inflammatory macrophages. Aged kMSCs promote inflammation, contributing to kidney dysfunction and chronic kidney disease risk in the elderly.
Area of Science:
- Nephrology
- Immunology
- Gerontology
Background:
- Aging is linked to increased chronic kidney disease and low-grade inflammation (inflammaging).
- Cellular senescence and its secretory phenotype contribute to organ dysfunction during aging.
- Cellular drivers of kidney inflammation in aging remain poorly understood.
Purpose of the Study:
- To characterize cellular changes in the aging kidney and their role in inflammation.
- To identify specific cell populations altered with age in the kidney.
Main Methods:
- Utilized the DECyt method for hierarchical clustering of flow cytometry data.
- Analyzed kidney stromal cell diversity in aged versus young models.
- Performed co-culture experiments to assess cell interactions and inflammatory cytokine secretion.
Main Results:
- Aging significantly altered kidney stromal cell diversity, increasing CD73+ kidney mesenchymal stromal cells (kMSCs) and Ly6C+CCR2+ monocyte-derived macrophages.
- Aged CD73+ kMSCs exhibited senescence markers, including DNA damage and Ccl2 expression.
- Aged kMSCs promoted monocyte activation and inflammatory cytokine release, though less efficiently than young kMSCs.
Conclusions:
- Increased CD73+ kMSC subpopulations in aging may create a pro-inflammatory niche for monocytes, exacerbating kidney inflammation.
- Targeting the kMSC-monocyte interaction could be a strategy to mitigate kidney inflammaging.
- This research offers insights into preventing chronic kidney disease in the elderly.
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