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Design of Cecal Ligation and Puncture and Intranasal Infection Dual Model of Sepsis-Induced Immunosuppression
Published on: June 15, 2019
Lymphocyte function inhibition and exhaustion in sepsis: mechanisms and applications
Yuan Yan1, Jialian Wang1, Chao Wang1
1Department of Intensive Care Medicine, Chongqing Emergency Medical Center, Chongqing University Central Hospital, School of Medicine, Chongqing University, Chongqing, China.
Abstract:
Sepsis is a life-threatening organ dysfunction syndrome caused by a dysregulated host response to infection and is characterized by complex pathophysiological mechanisms in which immune dysfunction plays a central role. Among immune cells, lymphocytes are critically involved in both the progression and resolution of sepsis. Increasing evidence indicates that lymphocyte depletion, functional exhaustion, and phenotypic reprogramming are closely associated with persistent immunosuppression and adverse clinical outcomes. This review examines the major mechanisms underlying lymphocyte function inhibition in sepsis and organizes them into interconnected pathways, including inhibitory membrane receptors (such as PD-1, CTLA-4, and LAG-3), mitochondrial and endoplasmic reticulum stress-related organelle dysfunction, exosome-mediated intercellular communication, non-coding RNA regulatory networks, and cytokine-driven immune modulation. These mechanisms interact through shared intracellular signaling pathways, contributing to impaired proliferation, altered cytokine production, metabolic dysregulation, and apoptosis of lymphocytes. The clinical relevance of lymphocyte-based indicators is also discussed, including absolute lymphocyte counts, subpopulation distribution, and immune checkpoint expression, which show potential value in early risk stratification and prognostic assessment. In addition, emerging therapeutic strategies targeting immune checkpoints and immunometabolic dysfunction are summarized. These insights provide a structured understanding of lymphocyte inhibition in sepsis and offer potential directions for improving immune monitoring and developing individualized immunomodulatory interventions.
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