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Lipid-dependent accrual of a subset of monocyte-derived macrophages is essential for tissue regeneration

delete2026-03-11
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PRE
AI
T
Tao Yao
X
Xin Tian
L
Linbin Rao
J
Jinling Ni
J
Jiayong Yu
H
Hongguo Yang
Y
Yuexiao Tang
X
Xingxiao Huang
X
Xintong Xia
L
Lin Zhao
B
Bowen Diao
Y
Yan Ping
D
Danni Wei
S
Siqi Li
H
Hui Chai
Z
Zhiming Hu
X
Xiongzhong Ruan
S
Suihan Feng
M
Mengle Shao *
B
Bo Shan *
Y
Ying Wu *
DOI:10.1038/s42255-026-01480-5delete
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Abstract

Abstract

En 中文
Tissue regeneration is essential for maintaining tissue homoeostasis and influences disease progression. In the liver, injury evokes a complex regenerative response with robust immune activation and metabolic rewiring, yet how these processes coordinate hepatocyte proliferation remains unclear. Here we show the presence of an injury-induced, lipid-dependent accrual of a distinct monocyte-derived macrophage (MDM) subset characterized by abundant cytosolic lipid content and heightened inflammatory response. Multi-omic analyses, spanning both single-cell transcriptomics and quantitative lipidomics, unveil substantial cellular diversity and heterogeneity between these ‘lipo-inflammatory MDMs’ (termed LIMMs) and other hepatic macrophages, including Kupffer cells. Blocking CD36-dependent LIMM induction markedly impairs hepatocyte proliferation and liver regeneration in injured livers. Mechanistically, CD36-mediated increase in ceramide biosynthesis activates IRE1α–XBP1 signalling pathway in LIMMs, driving production of the regenerative cytokine interleukin-6. Disrupting CD36-dependent IRE1α activation in LIMMs compromises liver repair. These findings identify a lipid-laden MDM subcluster as a key regulator of regenerative inflammation in injured livers. A distinct lipid-laden subset of monocyte-derived macrophages regulates hepatocyte proliferation and liver regeneration in injured livers, via CD36-mediated signalling.
Keywords:
Fat metabolism
Liver
Metabolism
Monocytes and macrophages
Stress signalling
Life Sciences
general

Journal

Nature Metabolism cover
Nature Metabolism
IF:
20.8
Papers:
1.6K
Citations:
1.4W

Organization

Z
Zhejiang University
Scholars:
1.5W
Papers: 5.2K
Citations: 17.8W
T
tongde hospital
Scholars:
32
Papers: 16
Citations: 0
Z
zhejiang chinese medical university
Scholars:
4.2K
Papers: 1.4K
Citations: 0
C
chongqing medical university
Scholars:
3.0W
Papers: 1.6W
Citations: 23
C
Chinese Academy of Sciences
Scholars:
3.9W
Papers: 1.5W
Citations: 58.4W
Cited Papers

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Citing Papers

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