Integrated single-cell multiomics reveals neutrophil-driven immune-metabolic reprogramming of Kupffer cells via thrombospondin-1/CD36 after surgical stress

Surgical stress, such as liver ischemia/reperfusion (I/R) injury characterized by robust neutrophil infiltration and immune activation, induces sterile inflammation that reshapes tissue immunity and contributes to organ dysfunction, yet the intercellular circuits that spatially orchestrate these responses within the hepatic immune microenvironment remain incompletely defined. Here, we integrate single-cell RNA sequencing, spatial transcriptomics, high-dimensional spectral flow cytometry, and metabolomics to resolve the hepatic immune landscape following I/R at cellular and spatial resolution. While confirming extensive immune remodeling, we identify a dominant neutrophil–Kupffer cell communication axis mediated by neutrophil-derived thrombospondin-1 (TSP-1), which selectively engages CD36 on Kupffer cells. This interaction drives coordinated immune-metabolic reprogramming in Kupffer cells, characterized by suppression of oxidative phosphorylation, enhanced glycolysis, and remodeling of sphingolipid metabolism, including accumulation of hexosylceramides. Spatial analyses reveal preferential neutrophil–Kupffer cell colocalization within necrotic niches, and cross-species integration with human liver transplant datasets demonstrates conserved upregulation of the TSP-1/CD36 axis following reperfusion. Pharmacologic inhibition of TSP-1 attenuates liver injury and inflammatory responses in vivo. Together, these findings define a spatially organized, neutrophil-driven immune-metabolic circuit that governs functional reprogramming of Kupffer cells during surgical stress and identify the TSP-1/CD36 pathway as a conserved and targetable mediator of sterile liver injury.

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Publication Details

Journal
JCI Insight
Published
2026-09-21
DOI
https://doi.org/10.1172/jci.insight.203495
Primary Topic
Liver physiology and pathology
Type
article
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article

Integrated single-cell multiomics reveals neutrophil-driven immune-metabolic reprogramming of Kupffer cells via thrombospondin-1/CD36 after surgical stress

Amrendra Kumar, Dequan Lou, Meihong Deng, Vijaya Bharti et al.
JCI Insight
Liver physiology and pathology
article

Integrated single-cell multiomics reveals neutrophil-driven immune-metabolic reprogramming of Kupffer cells via thrombospondin-1/CD36 after surgical stress

Amrendra Kumar, Dequan Lou, Meihong Deng, Vijaya Bharti, Patricia S. Latham, Hai Huang, Grace Wu, Xingping Huang, Allan Tsung, Preethi Jayakumar, Anna E. Vilgelm, Ti Yang, Lopa Mishra, Kong Chen, Hongji Zhang, James M. Crawford, Chengli Shen, Yunwei Zhang, Amblessed Onuma, Xiaorong Guo
article en

Abstract

Surgical stress, such as liver ischemia/reperfusion (I/R) injury characterized by robust neutrophil infiltration and immune activation, induces sterile inflammation that reshapes tissue immunity and contributes to organ dysfunction, yet the intercellular circuits that spatially orchestrate these responses within the hepatic immune microenvironment remain incompletely defined. Here, we integrate single-cell RNA sequencing, spatial transcriptomics, high-dimensional spectral flow cytometry, and metabolomics to resolve the hepatic immune landscape following I/R at cellular and spatial resolution. While confirming extensive immune remodeling, we identify a dominant neutrophil–Kupffer cell communication axis mediated by neutrophil-derived thrombospondin-1 (TSP-1), which selectively engages CD36 on Kupffer cells. This interaction drives coordinated immune-metabolic reprogramming in Kupffer cells, characterized by suppression of oxidative phosphorylation, enhanced glycolysis, and remodeling of sphingolipid metabolism, including accumulation of hexosylceramides. Spatial analyses reveal preferential neutrophil–Kupffer cell colocalization within necrotic niches, and cross-species integration with human liver transplant datasets demonstrates conserved upregulation of the TSP-1/CD36 axis following reperfusion. Pharmacologic inhibition of TSP-1 attenuates liver injury and inflammatory responses in vivo. Together, these findings define a spatially organized, neutrophil-driven immune-metabolic circuit that governs functional reprogramming of Kupffer cells during surgical stress and identify the TSP-1/CD36 pathway as a conserved and targetable mediator of sterile liver injury.

JCI InsightVol. 11(18)
Northwell Health (US), Feinstein Institute for Medical Research (US), The University of Texas MD Anderson Cancer Center (US), University of Pittsburgh (US), George Washington University (US), University of Virginia (US), The Ohio State University (US)
Openalex Percentile: Top 13%
Liver physiology and pathology
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