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Updated: Jun 2, 2026

A Preclinical Model of Sepsis-Induced Myopathy with Disuse in Mice
Published on: June 14, 2024
Immunometabolic reprogramming and glycolysis-associated signatures in sepsis: insights from single-cell RNA
Tao Li1,2, Yun Liu2,3, WanZhao Wang4
1Department of Intensive Care Unit, The Second Hospital of Tianjin Medical University, Tianjin, China.
Background:
Immunometabolic remodeling is central to sepsis, yet robust glycolysis-associated biomarkers and their cell-type context remain unclear.
Methods:
We integrated peripheral blood scRNA-seq (GSE175453) and a whole-blood microarray cohort (GSE100159). Glycolysis activity was scored by AUCell (HALLMARK_GLYCOLYSIS), hub genes were prioritized by LASSO/random forest/Boruta, communication was inferred by ligand-receptor analysis, and qRT-PCR was performed in CLP vs control mice.
Results:
Sepsis showed myeloid predominance and increased glycolysis scores, most evident in monocytes and plasma cells. Five candidates (GLRX, MDH1, MDH2, TGFBI, COPB2) displayed good discriminatory performance in bulk data; TGFBI was monocyte-enriched and centrally positioned in a dense communication network with B cells/plasma cells/neutrophils. qRT-PCR confirmed a significant between-group difference for TGFBI in the CLP model.
Conclusions:
These findings link enhanced glycolysis-associated programs to a monocyte-centered TGFBI communication pattern and prioritize TGFBI as a candidate biomarker for further validation in sepsis.
