Blood sample / Sepsis · Observational Study
ClinicalTrials.gov · September 10, 2026
Early or partial results. Treat as a signal, not a conclusion.
This is a study registration for a planned ex vivo pilot study that has not yet recruited participants. It proposes to test whether mesenchymal stromal cells (MSCs) can correct immune and metabolic dysfunction in blood samples from sepsis patients by measuring TNF-α production after co-incubation. No results are available in this registry record, and the study remains in hypothesis-generating phase with no clinical outcomes.
Observational. Sepsis; age from 18 Years. Intervention: Patient with sepsis complicated by ARDS or septic shock. Compared with: Ex vivo co-incubation of whole blood without mesenchymal stromal cells.. n = 51. 1 site: France.
This is a study registration for a planned ex vivo pilot study that has not yet recruited participants. It proposes to test whether mesenchymal stromal cells (MSCs) can correct immune and metabolic dysfunction in blood samples from sepsis patients by measuring TNF-α production after co-incubation. No results are available in this registry record, and the study remains in hypothesis-generating phase with no clinical outcomes.
This is a registry record with no results posted; no efficacy or safety data are available.
The source did not state who this applies to in practice.
This is a registry record for an unstarted ex vivo pilot study with no results posted; it describes a hypothesis-driven mechanistic study designed to test whether mesenchymal stromal cells can correct immune dysfunction in sepsis blood samples.
As stated by the source record.
Quoted from the source exactly as published.
Graded across the dimensions that decide whether you should act, each from what the source actually supports. There is no single score, and where a dimension was not assessed it says so.
What is missing. This record has no key findings. That is a gap in the analysis, not a judgement about the study.
Registry record from ClinicalTrials.gov (NCT07812012). This is a study registration, not published results. Lead sponsor: Centre Hospitalier Universitaire Dijon. Recruitment status: NOT_YET_RECRUITING. Study type: OBSERVATIONAL. Enrollment: 51 participants (ESTIMATED). Conditions: Sepsis. Interventions: BIOLOGICAL: Blood sample; BIOLOGICAL: Blood sample. Primary outcome measures: Concentration of TNF-α in the supernatant from ex vivo co-incubation of whole blood collected on days 1-3 after admission to the intensive care unit (± CSMs), as measured by ELISA, following stimulation of immune cells with LPS , 3 months. Brief summary: Sepsis is a life-threatening organ dysfunction caused by the host's dysregulated immune response to infection. It represents a major global public health challenge. A state of post-septic compensatory immunosuppression may contribute to excess mortality by promoting secondary infections, thereby prolonging the stay in the intensive care unit and increasing the risk of death. New therapeutic strategies to complement antimicrobial treatments-which may correct sepsis-induced functional alterations in immune cells (such as endotoxin tolerance and reduced HLA-DR expression), partly mediated by metabolic abnormalities-are currently being investigated. Among these, mesenchymal stromal cells (MSCs) appear particularly promising. They are capable of reprogramming immune cells by redirecting certain metabolic pathways, notably improving mitochondrial function. MSCs generally have an anti-inflammatory effect in preclinical models of infection, particularly in the early phase of severe ventilated pneumonia, as illustrated by the animal model we have developed, and preliminary trials are currently underway in humans. The ability of CSMs to correct sepsis-induced immunosuppression has not yet been explored. Nevertheless, CSMs possess the ability to communicate with the inflammatory microenvironment in which they are found, conferring plasticity to their response. We hypothesize that CSMs could correct certain immune and metabolic dysfunctions in circulating immune cells from patients with sepsis meeting severity criteria who are admitted to the intensive care unit. Furthermore, priming (or prior stimulation) of CSMs could enable a more precise and personalized therapeutic approach, with the possibility of directing CSMs toward a pro-inflammatory (CSM1) or anti-inflammatory (CSM2) phenotype through prior incubation with specific agonists (LPS; IFN-γ/TNF, respectively) before their administration. Depending on the patient's immune status (pro-inflammatory or anti-inflammatory phase), such a personalized approach would optimize treatment with CSMs.
Taken from the source record, never inferred. Follow any of these and new work involving them reaches your briefing.