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Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Characterization of distinct subpopulations of hepatic macrophages in HFD/obese mice
Hidetaka Morinaga1, Rafael Mayoral2, Jan Heinrichsdorff1
1Division of Endocrinology and Metabolism, Department of Medicine, University of California, San Diego, La Jolla, CA.
Abstract:
The current dogma is that obesity-associated hepatic inflammation is due to increased Kupffer cell (KC) activation. However, recruited hepatic macrophages (RHMs) were recently shown to represent a sizable liver macrophage population in the context of obesity. Therefore, we assessed whether KCs and RHMs, or both, represent the major liver inflammatory cell type in obesity. We used a combination of in vivo macrophage tracking methodologies and adoptive transfer techniques in which KCs and RHMs are differentially labeled with fluorescent markers. With these approaches, the inflammatory phenotype of these distinct macrophage populations was determined under lean and obese conditions. In vivo macrophage tracking revealed an approximately sixfold higher number of RHMs in obese mice than in lean mice, whereas the number of KCs was comparable. In addition, RHMs comprised smaller size and immature, monocyte-derived cells compared with KCs. Furthermore, RHMs from obese mice were more inflamed and expressed higher levels of tumor necrosis factor-α and interleukin-6 than RHMs from lean mice. A comparison of the MCP-1/C-C chemokine receptor type 2 (CCR2) chemokine system between the two cell types showed that the ligand (MCP-1) is more highly expressed in KCs than in RHMs, whereas CCR2 expression is approximately fivefold greater in RHMs. We conclude that KCs can participate in obesity-induced inflammation by causing the recruitment of RHMs, which are distinct from KCs and are not precursors to KCs. These RHMs then enhance the severity of obesity-induced inflammation and hepatic insulin resistance.
Insights
Obesity-associated liver inflammation involves more than Kupffer cells (KCs). Recruited hepatic macrophages (RHMs) increase significantly in obesity and are the primary inflammatory drivers, exacerbating hepatic insulin resistance.
Area of Science:
- Immunology
- Hepatology
- Metabolic Diseases
Background:
- Obesity-induced liver inflammation is traditionally attributed to Kupffer cells (KCs).
- Recruited hepatic macrophages (RHMs) are a recently identified, significant liver macrophage population in obesity.
- The distinct roles of KCs and RHMs in obesity-related hepatic inflammation remain unclear.
Purpose of the Study:
- To determine whether KCs, RHMs, or both are the major inflammatory cell type in obesity-associated liver inflammation.
- To characterize the phenotype and origins of KCs and RHMs in lean and obese states.
- To elucidate the chemokine system's role in regulating KC and RHM populations.
Main Methods:
- In vivo macrophage tracking using differential fluorescent labeling of KCs and RHMs.
- Adoptive transfer techniques to study macrophage populations.
- Analysis of inflammatory markers (TNF-α, IL-6) and chemokine system components (MCP-1, CCR2) in KCs and RHMs.
Main Results:
- Obese mice exhibited a sixfold increase in RHMs, while KC numbers remained comparable to lean mice.
- RHMs were smaller, immature, monocyte-derived cells, distinct from KCs.
- RHMs from obese mice showed heightened inflammation and elevated TNF-α and IL-6 expression compared to lean mice.
- KCs expressed higher MCP-1, while RHMs showed significantly greater CCR2 expression.
Conclusions:
- Kupffer cells (KCs) contribute to obesity-induced liver inflammation by recruiting distinct recruited hepatic macrophages (RHMs).
- RHMs, not precursors to KCs, are the primary inflammatory cells in obese livers.
- RHMs exacerbate hepatic inflammation and insulin resistance in obesity.

