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A lipid-associated macrophage lineage rewires the spatial landscape of adipose tissue in early obesity
Cooper M. Stansbury, … , Indika Rajapakse, Lindsey A. Muir
Cooper M. Stansbury, … , Indika Rajapakse, Lindsey A. Muir
Published August 31, 2023
Citation Information: JCI Insight. 2023;8(19):e171701. https://doi.org/10.1172/jci.insight.171701.
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Resource and Technical Advance Metabolism

A lipid-associated macrophage lineage rewires the spatial landscape of adipose tissue in early obesity

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Abstract

Adipose tissue macrophage (ATM) infiltration is associated with adipose tissue dysfunction and insulin resistance in mice and humans. Recent single-cell data highlight increased ATM heterogeneity in obesity but do not provide a spatial context for ATM phenotype dynamics. We integrated single-cell RNA-Seq, spatial transcriptomics, and imaging of murine adipose tissue in a time course study of diet-induced obesity. Overall, proinflammatory immune cells were predominant in early obesity, whereas nonresident antiinflammatory ATMs predominated in chronic obesity. A subset of these antiinflammatory ATMs were transcriptomically intermediate between monocytes and mature lipid-associated macrophages (LAMs) and were consistent with a LAM precursor (pre-LAM). Pre-LAMs were spatially associated with early obesity crown-like structures (CLSs), which indicate adipose tissue dysfunction. Spatial data showed colocalization of ligand-receptor transcripts related to lipid signaling among monocytes, pre-LAMs, and LAMs, including Apoe, Lrp1, Lpl, and App. Pre-LAM expression of these ligands in early obesity suggested signaling to LAMs in the CLS microenvironment. Our results refine understanding of ATM diversity and provide insight into the dynamics of the LAM lineage during development of metabolic disease.

Authors

Cooper M. Stansbury, Gabrielle A. Dotson, Harrison Pugh, Alnawaz Rehemtulla, Indika Rajapakse, Lindsey A. Muir

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Figure 7

eWAT LR signaling dynamics.

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eWAT LR signaling dynamics.
(A) LR pairs with most increased colocalizat...
(A) LR pairs with most increased colocalization during the first 8 weeks (8w) of HFD feeding. Dot sizes are LR colocalization per 1000 (1k) capture spots (same as x axis) and dot colors indicate diet condition. (B) LR pairs with most increased colocalization during the last 6 weeks of HFD feeding. (C) LR pairs with most decreased colocalization during the first 8 weeks of HFD feeding. (D) LR pairs with most decreased colocalization during last 6 weeks of HFD feeding. (E) Counts of colocalized cell type–specific LR pairs with log fold change > 1 in each diet condition. (F) Differentially expressed myeloid LR pairs using Wilcoxon rank-sum test (α = 0.05, Bonferroni corrected) with nonzero colocalization in spatial data. 14w, 14 weeks.

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