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Cytoarchitectural multi-depot profiling reveals immune-metabolic crosstalk in human colon-associated adipose tissue

  • Jutta Jalkanen
  • , Jiawei Zhong
  • , Pamela A Nono Nankam
  • , Nayanika Bhalla
  • , Merve Elmastas
  • , Jiaxin Luo
  • , Sophie Weinbrenner
  • , Scott Frendo-Cumbo
  • , Benedek Pesti
  • , William Gourash
  • , Anita Courcoulas
  • , Zinger Yang Loureiro
  • , Arne Dietrich
  • , Jesper Bäckdahl
  • , Anders Thorell
  • , Marcus Buggert
  • , Joanna Kalucka
  • , Margo P Emont
  • , Evan D Rosen
  • , Matthias Blüher
  • Peter Kovacs, Patrik L Ståhl, Lucas Massier, Mikael Rydén, Niklas Mejhert*
*Corresponding author for this work
3 Citations (Scopus)

Abstract

While it is well established that the cellular composition of white adipose tissue (WAT) varies between depots, the functional relevance of this heterogeneity remains unclear. By combining spatial and single-nucleus RNA sequencing, we provide a comprehensive map of subcutaneous and visceral (omental, mesenteric, mesocolic, and epiploic) WAT in both men and women. Our analyses reveal shared features, such as the spatial organization of adipogenesis, alongside depot-specific characteristics, including distinct cell-type enrichments and unique cell-cell communication routes. Epiploic WAT stands out by harboring high proportions of serum amyloid A expressing fat cells (encoded by SAA1/SAA2) and several leukocyte populations. Through mechanistic studies, we demonstrate that adipocyte SAA1/SAA2 expression is induced by inflammatory signals, including lipopolysaccharide, and that SAA1 activates immune responses in adipose-resident myeloid cells. Collectively, our findings suggest that visceral WAT exhibits distinct cytoarchitectural properties, with those located near the colon adapting by developing specialized adipocytes and immune cell populations.

Original languageEnglish
JournalCell Metabolism
Volume38
Issue number2
Pages (from-to)419-433.e9
ISSN1550-4131
DOIs
Publication statusPublished - 3 Feb 2026

Keywords

  • adipocyte subtypes
  • adipose depots
  • cell-cell communication
  • cellular heterogeneity
  • inflammation
  • insulin resistance
  • microbiome
  • obesity
  • transcriptomics
  • Humans
  • Middle Aged
  • Adipocytes/metabolism
  • Male
  • Adipose Tissue, White/metabolism
  • Colon/metabolism
  • Adipose Tissue/metabolism
  • Serum Amyloid A Protein/metabolism
  • Female
  • Adult
  • Adipogenesis

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