Abstract
Background
Immune cell activation in early sepsis is beneficial to clear pathogens, but immune cell exhaustion during the inflammatory response induces immunosuppression in sepsis. Here, we studied the relationship between immune cell survival status and the prognosis of sepsis patients.Methods
Sepsis patients admitted to our hospital with a diagnosis time of less than 24 h were recruited. RNA sequencing technologies were used to study functional alterations in various immune cells in peripheral blood mononuclear cells (PBMCs) from sepsis patients. Flow cytometry and electron microscopy were performed to study cell apoptosis and morphological alterations.Results
A total of 68 sepsis patients with complete data were enrolled and divided into survival (45 patients) and death (23 patients) groups according to their prognosis. Patients in the death group had significantly increased lactic acid levels compared with those in the survival group, but there was no significant difference in other physiological and coagulation functional indicators between the two groups. Bulk RNA sequencing showed that cell death-related pathways and biomarkers were highly enriched and activated in the PBMCs of the death group than that in the survival group. Signs of mitochondrial damage, autophagosomes, cell surface damage and cell surface pore forming were also more pronounced in PBMCs from the death group under electron microscopy. Further single-cell RNA sequencing revealed that cell death occurred mainly in myeloid cells rather than lymphocytes at the early stage of sepsis; cell death patterns of destructive necrosis and pyroptosis were predominant in neutrophils, and apoptosis, autophagy and ferroptosis with less damage to the surroundings were predominant in monocytes.Conclusion
Cell death mainly occurs in monocytes and neutrophils in the PBMCs of sepsis at the early stage. The study provides a perspective for the immunotherapy of early sepsis targeting immune cell death.References
Articles referenced by this article (48)
MicroRNA-106a Inhibits Autophagy Process and Antimicrobial Responses by Targeting ULK1, ATG7, and ATG16L1 During Mycobacterial Infection.
Front Immunol, 610021 2021
MED: 33505399
Identifying phenotype-associated subpopulations by integrating bulk and single-cell sequencing data.
Nat Biotechnol, (4):527-538 2021
MED: 34764492
Cell death pathways: intricate connections and disease implications.
EMBO J, (5):e106700 2021
MED: 33439509
SPI1-mediated autophagy of peripheral blood monocyte cells as a mechanism for sepsis based on single-cell RNA sequencing.
Int Immunopharmacol, 109909 2023
MED: 37012859
Proteomics Combined with RNA Sequencing to Screen Biomarkers of Sepsis.
Infect Drug Resist, 5575-5587 2022
MED: 36172619
Inflammation and Cell Death of the Innate and Adaptive Immune System during Sepsis.
Biomolecules, (7):1011 2021
MED: 34356636
Show 10 more references (10 of 48)
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