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Updated: Aug 11, 2025

Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Immune checkpoint molecule Tim-3 promotes NKT cell apoptosis and predicts poorer prognosis in Sepsis
Han Wu1, Tingxuan Tang2, Hai Deng3
1Division of Trauma & Surgical Critical Care, Department of Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China; Department of Thoracic Surgery, Sichuan Provincial People's Hospital, University of Electronic Science and Technology of China, Chengdu, China; Chinese Academy of Sciences Sichuan Translational Medicine Research Hospital, Chengdu 610072, China.
Background:
Sepsis is a leading cause of death among critically ill patients, which is defined as life-threatening organ dysfunction caused by a deregulated host immune response to infection. Immune checkpoint molecule Tim-3 plays important and complex roles in regulating immune responses and in inducing immune tolerance. Although immune checkpoint blockade would be expected as a promising therapeutic strategy for sepsis, but the underlying mechanism remain unknown, especially under clinical conditions.
Methods:
Tim-3 expression and apoptosis in NKT cells were compared in septic patients (27 patients with sepsis and 28 patients with septic shock). Phenotypic and functional characterization of Tim-3+ NKT cells were analysed, and then the relationship between Tim-3 + NKT cells and clinical prognosis were investigated in septic patients. α-lactose (Tim-3/Galectin-9 signalling inhibitor) and Tim-3 mutant mice (targeting mutation of the Tim-3 cytoplasmic domain) were utilized to evaluate the protective effect of Tim-3 signalling blockade following septic challenge.
Results:
There is a close correlation between Tim-3 expression and the functional status of NKT cells in septic patients, Upregulated Tim-3 expression promoted NKT cell activation and apoptosis during the early stage of sepsis, and it was associated with worse disease severity and poorer prognosis in septic patients. Blockade of the Tim-3/Galectin-9 signal axis using α-lactose inhibited in vitro apoptosis of NKT cells isolated from septic patients. Impaired activity of Tim-3 protected mice following septic challenge.
Conclusions:
Overall, these findings demonstrated that immune checkpoint molecule Tim-3 in NKT cells plays a critical role in the immunopathogenesis of septic patients. Blockade of immune checkpoint molecule Tim-3 may be a promising immunomodulatory strategy in future clinical practice for the management of sepsis.
Insights
Immune checkpoint molecule Tim-3 in NKT cells is upregulated in sepsis, promoting T cell activation and apoptosis, and is linked to worse outcomes. Blocking Tim-3 signaling may offer a promising sepsis treatment.
Area of Science:
- Immunology
- Critical Care Medicine
- Molecular Biology
Background:
- Sepsis is a life-threatening condition caused by a deregulated immune response to infection.
- Immune checkpoint molecule Tim-3 regulates immune responses and tolerance.
- The role of Tim-3 in sepsis pathogenesis and its therapeutic potential remain unclear.
Purpose of the Study:
- To investigate the role of Tim-3 in NKT cells during sepsis.
- To explore the correlation between Tim-3 expression, NKT cell function, and clinical prognosis in septic patients.
- To evaluate the therapeutic potential of blocking Tim-3 signaling in sepsis.
Main Methods:
- Compared Tim-3 expression and apoptosis in NKT cells of septic patients and healthy controls.
- Analyzed phenotypic and functional characteristics of Tim-3+ NKT cells.
- Investigated the relationship between Tim-3+ NKT cells and clinical outcomes.
- Utilized α-lactose and Tim-3 mutant mice to assess the effect of Tim-3 signaling blockade.
Main Results:
- Upregulated Tim-3 expression in NKT cells correlated with increased activation and apoptosis in early sepsis.
- Higher Tim-3 expression was associated with worse disease severity and poorer prognosis.
- Blocking Tim-3/Galectin-9 signaling inhibited NKT cell apoptosis in vitro.
- Impaired Tim-3 activity conferred protection in a mouse model of sepsis.
Conclusions:
- Tim-3 on NKT cells plays a critical role in sepsis immunopathogenesis.
- Blocking Tim-3 represents a potential immunomodulatory strategy for sepsis management.
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