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T cell activation profiles can distinguish gram negative/positive bacterial sepsis and are associated with ICU
Canxia Huang1, Hui Xiong2, Weichao Li1
1Department of Intensive Care Unit, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.
Introduction:
Sepsis is a life-threatening complication resulting from a dysregulated host response to a serious infection, of which bacteria are the most common cause. A rapid differentiation of the gram negative (G-)/gram positive (G+) pathogens facilitates antibiotic treatment, which in turn improves patients' survival.
Methods:
We performed a prospective, observational study of adult patients in intensive care unit (ICU) unit and underwent the analysis of peripheral blood lymphocyte subsets, cytokines and other clinical indexes. The enrolled 94 patients were divided into no infection group (n=28) and bacterial sepsis group (n=66), and the latter group was subdivided into G- (n=46) and G+ (n=20) sepsis subgroups.
Results:
The best immune biomarker which differentiated the diagnosis of G- sepsis from G+ sepsis, included activation markers of CD69, human leukocyte antigen DR (HLA-DR) on CD3+CD8+T subset. The ratio of CD3+CD4+CD69+T/CD3+CD8+CD69+T (odds ratio (OR): 0.078(0.012,0.506), P = 0.008), PCT>0.53 ng/ml (OR: 9.31(1.36,63.58), P = 0.023), and CO2CP<26.5 mmol/l (OR: 10.99(1.29, 93.36), P = 0.028) were predictive of G- sepsis (versus G+ sepsis), and the area under the curve (AUC) was 0.947. Additionally, the ratio of CD3+CD4+CD69+T/CD3+CD8+CD69+T ≤ 0.2697 was an independent risk factor for poor ICU discharge in G- sepsis patients (HR: 0.34 (0.13, 0.88), P=0.026).
Conclusion:
We conclude that enhanced activation of T cells may regulate the excessive inflammatory response of G- bacterial sepsis, and that T cell activation profiles can rapidly distinguish G- sepsis from G+ sepsis and are associated with ICU discharge.
Insights
Rapidly distinguishing gram-negative from gram-positive bacterial sepsis is crucial for effective antibiotic treatment and patient survival. T cell activation profiles offer a promising biomarker for differentiating sepsis types and predicting outcomes.
Area of Science:
- Immunology
- Infectious Diseases
- Critical Care Medicine
Background:
- Sepsis, a life-threatening condition, arises from a dysregulated host response to infection, commonly bacterial.
- Prompt identification of Gram-negative (G-) versus Gram-positive (G+) pathogens is vital for guiding appropriate antibiotic therapy and improving patient survival.
Purpose of the Study:
- To identify immune biomarkers that can differentiate between G- and G+ bacterial sepsis.
- To investigate the association of these biomarkers with clinical outcomes, specifically intensive care unit (ICU) discharge.
Main Methods:
- A prospective, observational study involving 94 adult ICU patients.
- Analysis of peripheral blood lymphocyte subsets, cytokines, and clinical indexes.
- Patients were categorized into no infection, G- sepsis, and G+ sepsis groups.
Main Results:
- Specific T cell activation markers (CD69, HLA-DR on CD3+CD8+T cells) effectively differentiated G- from G+ sepsis (AUC=0.947).
- The ratio of CD3+CD4+CD69+T/CD3+CD8+CD69+T, along with procalcitonin (PCT) and CO2 content, were predictive of G- sepsis.
- A low ratio of CD3+CD4+CD69+T/CD3+CD8+CD69+T (≤ 0.2697) independently predicted poor ICU discharge in G- sepsis patients.
Conclusions:
- Enhanced T cell activation may modulate the inflammatory response in G- bacterial sepsis.
- T cell activation profiles can rapidly distinguish G- from G+ sepsis.
- T cell activation markers are associated with ICU discharge outcomes in sepsis patients.
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