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Sébastien Gibot

Publications and source records attributed to Sébastien Gibot.

At least 19 recordsLinked to original sources

TREM-1 promotes survival during septic shock in mice.

Triggering receptor expressed on myeloid (TREM)-1 is integral to the inflammatory response occurring during septic shock, although its precise function has yet to be determined. Here we show that in vivo silencing of TREM-1 using siRNA duplexes in a fecal peritonitis mouse model resulted in a blunted inflammatory response and increased mortality. This was associated with impaired bacterial clearance related to marked inhibition of the neutrophil oxidative burst. By contrast, TREM-1-silenced mice were highly resistant to a lethal endotoxin challenge, while partial silencing of TREM-1 in the bacterial peritonitis model produced a significant survival benefit. These data highlight the crucial role of the TREM-1 pathway in mounting an adequate inflammatory and cytotoxic response to polymicrobial sepsis, and both the therapeutic promise and potential risks of its modulation.

Animals↗

Modulation of the triggering receptor expressed on myeloid cells-1 pathway during pneumonia in rats.

BACKGROUND: Triggering receptor expressed on myeloid cells-1 (TREM-1) is a cell-surface molecule that has been identified on both human and murine polymorphonuclear neutrophils and mature monocytes. The activation of TREM-1 in the presence of microbial components amplifies the inflammatory response and may be responsible for the hyperresponsiveness observed during the initial stage of sepsis. The aim of the present study was to investigate the effect of the modulation of the TREM-1 pathway during experimental pneumonia in rats. METHODS: Adult male Wistar rats were intratracheally inoculated with Pseudomonas aeruginosa (PAO1 strain) and randomly treated or not treated with an analogue synthetic peptide derived from the extracellular moiety of TREM-1 (LP17). RESULTS: P. aeruginosa induced a severe pneumonia associated with signs of severe sepsis within the first 24 h. In septic rats, LP17 improved hemodynamic status, attenuated the development of lactic acidosis and hypoxemia, modulated lung and systemic inflammatory responses and coagulation activation, reduced lung histological damage, and improved survival. CONCLUSIONS: The modulation of the TREM-1 pathway by the use of such synthetic peptides as LP17 appears beneficial during P. aeruginosa pneumonia in rats in attenuating lung and systemic inflammatory responses.

Amino Acid Sequence↗

Soluble triggering receptor expressed on myeloid cells and the diagnosis of pneumonia and severe sepsis.

The triggering receptor expressed on myeloid cells (TREM)-1 is a recently identified molecule involved in the inflammatory response. It belongs to the immunoglobulin superfamily and is expressed on the surface of neutrophils, mature monocytes, and macrophages. The engagement of TREM-1 synergizes with the Toll-like receptors signaling pathway in amplifying the inflammatory response mediated by several microbial components. The expression of the membrane-bound TREM-1 is strongly upregulated on monocytes during sepsis. Besides its membranous form, a soluble counterpart of TREM-1 exists that is specifically released during several infectious processes. The measurement of that soluble form in biological fluids may be useful as a diagnostic tool, especially during severe sepsis and pneumonia. Moreover, the evolutionary pattern of TREM-1 may be interesting during the follow-up of septic patients.

Biomarkers↗

Modulation of the triggering receptor expressed on the myeloid cell type 1 pathway in murine septic shock.

The triggering receptor expressed on myeloid cell type 1 (TREM-1) is a cell surface molecule that has been identified on both human and murine polymorphonuclear neutrophils and mature monocytes. The activation of TREM-1 in the presence of microbial components amplifies the inflammatory response and may be responsible for the hyperresponsiveness observed during the initial stage of sepsis. To investigate the effect of the modulation of the TREM-1 pathway during experimental murine sepsis, we used analogue synthetic peptides derived from the extracellular moiety of TREM-1. The TREM-1 ligand was expressed on both peritoneal and peripheral neutrophils during experimental peritonitis in mice. The TREM-1 peptides inhibited the recognition by TREM-1 of its ligand and protected endotoxinic mice from death. In septic rats, the TREM-1 peptides improved the hemodynamic status, attenuated the development of lactic acidosis, modulated the production of such proinflammatory cytokines as tumor necrosis factor alpha and interleukin-1beta, and improved survival. The protective effect of these peptides on arterial pressure could partly be explained by a decreased production of nitric oxide. These data suggest that in vivo modulation of TREM-1 might be a suitable therapeutic tool for the treatment of sepsis.

Adaptor Proteins, Signal Transducing↗

The therapeutic potential of TREM-1 modulation in the treatment of sepsis and beyond.

The triggering receptor expressed on myeloid cells (TREM)-1 is a recently identified molecule that is involved in monocytic activation and the inflammatory response. It belongs to a family related to natural killer cell receptors, and is expressed on neutrophils, mature monocytes and macrophages. The engagement of TREM-1 synergizes with the activation of several toll-like receptors in amplifying the inflammatory response mediated by microbial components. The modulation of the TREM-1 signaling pathway, by the use of small synthetic peptides derived from its extracellular domain, confers interesting survival advantages during experimental murine septic shock, even when administered late after the onset of sepsis.

Animals↗

Serial changes in soluble triggering receptor expressed on myeloid cells in the lung during development of ventilator-associated pneumonia.

OBJECTIVE: To determine the diagnostic role of soluble triggering receptor expressed on myeloid cells (sTREM)-1 in non-directed bronchial lavage fluid in ventilator-associated pneumonia (VAP). DESIGN: Non-directed bronchial lavage fluid and plasma were collected on alternate days in critically ill mechanically ventilated patients from the start of ventilatory support until complete weaning from the ventilator. Soluble TREM-1 levels were measured by an enzyme-linked immunosorbent assay. SETTING: A general adult medical and surgical university hospital intensive care unit. PATIENTS: Nine patients who developed VAP and 19 patients who did not develop VAP (controls). RESULTS: Plasma levels of sTREM-1 did not change significantly in either patient group. While in controls concentrations of sTREM-1 in non-directed bronchial lavage fluid did not change significantly over time, in patients who developed VAP levels of sTREM-1 in non-directed bronchial lavage fluid increased towards the diagnosis of VAP. A cut-off value for non-directed bronchial lavage fluid sTREM-1 levels of 200 pg/ml on the day of VAP had a diagnostic sensitivity of 75% and a specificity of 84%. Sensitivity increased when taking into account all sTREM-1 levels higher than 200 pg/ml from the 6-day period before the day of diagnosis that were preceded by an increase of at least 100 pg/ml (sensitivity 88%, specificity 84%). CONCLUSIONS: Soluble TREM-1 is a potential biomarker of VAP.

APACHE↗

Clinical review: role of triggering receptor expressed on myeloid cells-1 during sepsis.

Triggering receptor expressed on myeloid cells (TREM)-1 is a recently identified molecule that is involved in monocytic activation and in the inflammatory response. It belongs to a family related to the natural killer cell receptors and is expressed on neutrophils, mature monocytes and macrophages. The inflammatory response mediated by Toll-like receptor-2 and -4 stimulation is amplified by the engagement of TREM-1. The expression of membrane-bound TREM-1 is greatly increased on monocytes during sepsis. Moreover, infection induces the release of a soluble form of this receptor, which can be measured in biological fluid and may be useful as a diagnostic tool. Modulation of the TREM-1 signalling pathway by the use of small synthetic peptides confers interesting survival advantages during experimental septic shock in mice, even when this teatment is administered late after the onset of sepsis.

Animals↗

Surface triggering receptor expressed on myeloid cells 1 expression patterns in septic shock.

OBJECTIVE: To analyze the pattern of cell-surface expression of the triggering receptor expressed on myeloid cells (TREM) 1 during septic shock. DESIGN AND SETTING: Prospective clinical study in an adult 16-bed medical ICU. PATIENTS AND METHODS: 25 septic shock patients, 15 patients with shock of noninfectious origin and 7 healthy volunteers. Arterial blood was drawn within 12 h of admission and subjected to flow cytometry analysis after staining with anti-TREM-1 and anti-CD14 antibodies. Repeated sampling was performed on days 2, 3, 5, 7, and 14 in septic shock patients. RESULTS: Monocytic TREM-1 expression was significantly higher in septic shock patients (mean fluorescence intensity 2.3+/-0.2) than in nonseptic patients (1.0+/-0.1), and healthy volunteers (1.0+/-0.1). There was no difference in monocytic TREM-1 expression between nonseptic patients and healthy volunteers or between any of the three groups with respect to TREM-1 expression on neutrophils. The time course of TREM-1 expression on monocytes diverged significantly by day 3 between survivors and ns. CONCLUSIONS: The specificity of TREM-1 regulation by infection is highlighted. Moreover, surface TREM-1 expression on monocytes may prove useful in allowing the follow-up of septic patients during the course of the disease.

Aged↗

Time-course of sTREM (soluble triggering receptor expressed on myeloid cells)-1, procalcitonin, and C-reactive protein plasma concentrations during sepsis.

OBJECTIVE: To describe the course of plasma sTREM (soluble triggering receptor expressed on myeloid cells)-1, procalcitonin (PCT), and C-reactive protein (CRP) concentrations during sepsis and their clinical informative value in predicting outcome. DESIGN: Prospective, noninterventional study. SETTING: Medical adult intensive care unit at a university hospital in France. PATIENTS: Sixty-three critically ill patients with sepsis, severe sepsis, or septic shock. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Soluble TREM-1 concentrations were significantly lower at admission in nonsurvivors (n = 21) than in survivors (n = 42) (94 [30-258] vs. 154 [52-435] pg/mL, p = .02), whereas PCT levels were higher among nonsurvivors (19.2 [0.3-179] vs. 2.4 (0-254) pg/mL, p = .001). CRP levels did not differ between the two groups of patients. Plasma PCT and CRP decreased during the 14-day period of study in both survivors and nonsurvivors. Conversely, sTREM-1 plasma concentrations remained stable or even increased in nonsurviving patients and decreased in survivors. An elevated baseline sTREM-1 level was found to be an independent protective factor with an odds of dying of 0.1 (95% confidence interval, 0.1-0.8). CONCLUSION: A progressive decline of plasma sTREM-1 concentration indicates a favorable clinical evolution during the recovery phase of sepsis. In addition, baseline sTREM-1 level may prove useful in predicting outcome of septic patients.

Biomarkers↗

Surface and soluble triggering receptor expressed on myeloid cells-1: expression patterns in murine sepsis.

OBJECTIVE: To examine the expression patterns of the triggering receptor expressed on myeloid cells (TREM)-1 during experimental septic shock. DESIGN: Animal study. SETTING: Animal research laboratory. SUBJECTS: Male BALB/c mice, 7-9 wks of age. INTERVENTIONS: Septic shock was induced by cecal ligation and puncture in eight mice. Eight additional animals were sham-operated and served as a control group. All animals were resuscitated by fluid infusion and administered antibiotics. Kill was performed under anesthesia 12, 24, or 48 hrs later. MEASUREMENTS AND MAIN RESULTS: Surface expression of TREM-1 was analyzed using flow cytometry on peripheral blood cells, peritoneal macrophages and neutrophils, splenic macrophages, and Kupffer cells. Gene expression was also studied in these same cells using reverse transcription-polymerase chain reaction. Tumor necrosis factor-alpha, interleukin-1beta, and soluble TREM-1 concentrations were determined in plasma and peritoneal lavage fluid. Sepsis strongly induced TREM-1 gene expression, which translated into an up-regulation of TREM-1 surface expression on neutrophils and monocytes/macrophages both at the focus on infection as well as distally. Moreover, sepsis induced the release of significant levels of soluble TREM-1. Plasma soluble TREM-1 concentrations negatively correlated with tumor necrosis factor-alpha and interleukin-1beta levels at 12 hrs. CONCLUSIONS: These results provide new information as to the regulation of TREM-1 during sepsis. Considering that both cell-surface and soluble TREM-1 were strongly up-regulated during infection, this study may add support to the putative usefulness of TREM-1 as a diagnostic tool.

Animals↗

Cutting edge: expression patterns of surface and soluble triggering receptor expressed on myeloid cells-1 in human endotoxemia.

Triggering receptor expressed on myeloid cells-1 (TREM-1) is a recently identified molecule involved in the amplification of inflammation. To determine the regulation of TREM-1, we studied TREM-1 expression and soluble TREM-1 plasma levels upon i.v. LPS challenge in healthy humans in vivo and in vitro. Granulocyte TREM-1 expression was high at baseline and immediately down-regulated upon LPS exposure along with an increase in soluble TREM-1. Monocytes displayed a gradual up-regulation of TREM-1 upon LPS in vivo and in vitro. In vitro studies extended these findings to highly purified lipoteichoic acid and Streptococcus pneumoniae. Nonbacterial TLR ligands such as polyinosine-polycytidylic acid and imidazoquinoline, as well as the TLR9 ligand CpG, did not impact TREM-1 expression. The LPS-induced alterations in TREM-1 surface expression were not a result of increased TNF-alpha or IL-10. Inhibitor studies disclosed a PI3K-dependent pathway in LPS-induced up-regulation of TREM-1 on monocytes, whereas MAPK played a limited role.

Cell Separation↗

A soluble form of the triggering receptor expressed on myeloid cells-1 modulates the inflammatory response in murine sepsis.

The triggering receptor expressed on myeloid cells (TREM)-1 is a recently discovered receptor expressed on the surface of neutrophils and a subset of monocytes. Engagement of TREM-1 has been reported to trigger the synthesis of proinflammatory cytokines in the presence of microbial products. Previously, we have identified a soluble form of TREM-1 (sTREM-1) and observed significant levels in serum samples from septic shock patients but not controls. Here, we investigated its putative role in the modulation of inflammation during sepsis. We observed that sTREM-1 was secreted by monocytes activated in vitro by LPS and in the serum of animals involved in an experimental model of septic shock. Both in vitro and in vivo, a synthetic peptide mimicking a short highly conserved domain of sTREM-1 appeared to attenuate cytokine production by human monocytes and protect septic animals from hyper-responsiveness and death. This peptide seemed to be efficient not only in preventing but also in down-modulating the deleterious effects of proinflammatory cytokines. These data suggest that in vivo modulation of TREM-1 by sTREM peptide might be a suitable therapeutic tool for the treatment of sepsis.

Amino Acid Sequence↗

Plasma level of a triggering receptor expressed on myeloid cells-1: its diagnostic accuracy in patients with suspected sepsis.

BACKGROUND: Previous experimental studies have suggested that the triggering receptor expressed on myeloid cells-1 (TREM-1) is specifically upregulated in the presence of microbial products. OBJECTIVE: To evaluate the diagnostic value of plasma levels of the soluble form of TREM-1 in patients admitted with clinical suspicion of infection. DESIGN: Prospective, noninterventional study conducted between July and September 2003. SETTING: Medical adult intensive care unit at a university hospital in France. PARTICIPANTS: 76 consecutive newly admitted patients who presented with clinically suspected infection and fulfilled at least 2 criteria of the systemic inflammatory response syndrome. MEASUREMENTS: Sensitivity and specificity of plasma soluble TREM-1 levels at admission for the diagnosis of infection. Two independent intensivists blinded to the results of soluble TREM-1 assays retrospectively classified patients as having the systemic inflammatory response syndrome, sepsis, severe sepsis, or septic shock. RESULTS: The systemic inflammatory response syndrome was diagnosed in 29 patients (38%), and sepsis, severe sepsis, or septic shock was diagnosed in the remaining 47 (62%). A plasma soluble TREM-1 level higher than 60 ng/mL was more accurate than any other clinical or laboratory finding for indicating infection (sensitivity, 96% [95% CI, 92% to 100%]; specificity, 89% [CI, 82% to 95%]; positive likelihood ratio, 8.6 [CI, 3.8 to 21.5]; negative likelihood ratio, 0.04 [CI, 0.01 to 0.2]). LIMITATIONS: The study did not enroll patients with mild infections not requiring intensive care unit hospitalization, patients older than 80 years of age, or patients who were immunocompromised. CONCLUSION: In newly admitted critically ill patients, measurement of plasma levels of soluble TREM-1 could help to rapidly identify those with infection.

Blotting, Western↗

Soluble triggering receptor expressed on myeloid cells and the diagnosis of pneumonia.

BACKGROUND: The diagnosis and treatment of bacterial pneumonia in patients who are receiving mechanical ventilation remain a difficult challenge. The triggering receptor expressed on myeloid cells (TREM-1) is a member of the immunoglobulin superfamily, and its expression on phagocytes is specifically up-regulated by microbial products. The presence of soluble TREM-1 (sTREM-1) in bronchoalveolar-lavage fluid from patients receiving mechanical ventilation may be an indicator of pneumonia. METHODS: We conducted a prospective study of 148 patients receiving mechanical ventilation in whom infectious pneumonia was suspected. A rapid immunoblot technique was used to measure sTREM-1 in bronchoalveolar-lavage fluid. Two independent intensivists who were unaware of the results of the sTREM-1 assay determined whether community-acquired pneumonia and ventilator-associated pneumonia were present or absent. RESULTS: The final diagnosis was community-acquired pneumonia in 38 patients, ventilator-associated pneumonia in 46 patients, and no pneumonia in 64 patients. The presence of sTREM-1 by itself was more accurate than any clinical findings or laboratory values in identifying the presence of bacterial or fungal pneumonia (likelihood ratio, 10.38; sensitivity, 98 percent; specificity, 90 percent). In multiple logistic-regression analysis, the presence of sTREM-1 was the strongest independent predictor of pneumonia (odds ratio, 41.5). CONCLUSIONS: In patients receiving mechanical ventilation, rapid detection of sTREM-1 in bronchoalveolar-lavage fluid may be useful in establishing or excluding the diagnosis of bacterial or fungal pneumonia.

Aged↗

[Myocardial dysfunction and septic shock].

Myocardial dysfunction frequently accompanies severe sepsis and septic shock. It is now clear that such a myocardial depression, as evidenced by biventricular alteration, is present during the early phase of sepsis in most patients. Myocardial depression exists despite a fluid loading-dependent hyperdynamic state and usually recovers within 7 to 10 days in survivors. Myocardial dysfunction does not appear to be due to irreversible structural abnormalities nor to myocardial hypoperfusion, but rather linked to many circulating mediators including cytokines. At a cellular level, reduced myocardial contractility could be related in part to apoptosis and induced by both nitric oxide-dependent and nitric oxide-independent mechanisms. However, whatever the mechanism involved, it leads to calcium homeostasis abnormality. The present review describes both the diagnosis procedure and the molecular and cellular pathways of sepsis-induced myocardial depression.

Cardiomyopathies↗

Histocompatibility leukocyte antigen-D related expression is specifically altered and predicts mortality in septic shock but not in other causes of shock.

Although the expression of monocyte histocompatibility leukocyte antigen (HLA)-DR has been shown to be decreased during human sepsis, its level of expression in other nonseptic critical conditions is unclear. The aim of this study was to compare the level of HLA-DR expression on circulating monocytes among patients with septic, hemorrhagic, and cardiogenic shocks and severe sepsis without shock. At admission, HLA-DR expression was exclusively decreased in patients with septic shock (n = 30; P < 0.001), whereas the expression was similar between the other studied groups: cardiogenic shock (n = 16), hemorrhagic shock (n = 11), severe sepsis without shock (n = 18), and healthy volunteers (n = 8). HLA-DR expression was not predictive for overall mortality, but at day 1, an HLA-DR expression of less than 14 of mean fluorescence intensity (that corresponds to 40% labeled monocytes) was predictive of mortality exclusively in patients with septic shock (odds ratio, 11.4 and 95% confidence interval, 1.7; 78.4; P < 0.008). Catecholamine infusion, mechanical ventilation, positive blood culture, and number of units of blood or plasma transfused did not correlate with decreased HLA-DR expression. Thus, the decrease in HLA-DR expression is specific to septic shock and is associated, in septic shock patients, with increased mortality risk.

Adult↗