Sepsis is a major cause of death in Intensive Care Units and therefore finding new therapies to improve survival rates and limit morbidity is a major goal. Over the past decades, blood purification has been proposed as an adjuvant therapy for sepsis. The goal of blood purification is to restore the immune homeostasis and efficiency through the removal of bacterial products including endotoxins, broad-spectrum cytokines and other inflammatory mediators. Indeed, the large and overwhelmed release of these mediators in the early phase of sepsis may induce multiple organ failure syndrome. In 2017, different techniques are proposed for blood purification. Among them, the highly adsorptive membrane, oXiris™, seems promising. This membrane can be used in case of Acute Kidney Injury associated with sepsis and exhibits enhanced blood purification capacities. Previous studies on animals have already proven that this membrane can remove broad-spectrum cytokines but also endotoxins from the blood. This ability to remove endotoxins is particularly interesting since endotoxins are believed to be the trigger of the immune cascade at the initiation of sepsis. The lack of clinical evidence is the main limit to a wider use of this membrane. Therefore, the aim of the present clinical trial is to characterize the blood purification properties of the membrane in a human clinical setting. The oXiris™ membrane is specifically designed to improve the adsorptive capacities of the polyacrylonitrile-based AN69 membrane. Its extremely rich coating of polyethyleneimine (PEI) gives the membrane the ability to bind and remove not only cytokines but also endotoxins due to the positive charges of PEI at the surface of the membrane. The tested hypothesis is that the oXiris™ filter allows for a greater endotoxin and cytokine removal compared to a standard polysulfone ("PrismafleX HF1400") filter in patients with septic shock.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
OTHER
Masking
NONE
Enrollment
39
All patients will have arterial blood sampling to assess pre-filter and post-filter plasma endotoxin mass and activity and plasma cytokine levels
All patients will have ultrafiltrate sampling to assess cytokine levels
Patients included in the experimental arm will have renal replacement therapy by performing CVVH using oXiris™ filter
Patients included in the experimental arm will have renal replacement therapy by performing CVVH using PrismafleX HF1400 filter
Hopital Universitaire de Clermont Ferrand
Clermont-Ferrand, France
CHU Francois Mitterrand
Dijon, France
CHU Dijon - Bocage central
Dijon, France
L'Hôpital Nord-Ouest - Villefranche sur Saone
Gleizé, France
Anesthesia and Critical Care Medicine Department - Edouard Herriot Hospital
Lyon, France
Clinique de la Sauvegarde
Lyon, France
Hôpital Pasteur 2 - Hôpital Universitaire de Nice
Nice, France
Hopital Haut Lévèque - CHU Bordeaux
Pessac, France
Interleukin 6 (IL-6) plasmatic concentration
Time frame: 24 hours after the initiation of CVVH
Endotoxin plasmatic mass concentration
Time frame: 24 hours after the initiation of CVVH
Pre-filter plasma endotoxin mass
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma endotoxin activity
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma endotoxin mass
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma endotoxin activity
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma cytokine level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma cytokine level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Ultrafiltrate cytokine level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma lipids level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma lipids level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma Procalcitonin level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma Procalcitonin level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma Phospholipid Transfer Protein level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma Phospholipid Transfer Protein level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma Cholesteryl Ester Transfer Protein level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma Cholesteryl Ester Transfer Protein level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Pre-filter plasma lipopolysaccharide (LPS) Binding Protein level
Time frame: At initiation of CCVH (H0) then 1, 4, 12 and 24 hours after the initiation of CVVH
Post-filter plasma LPS-Binding Protein level
Time frame: 1, 4, 12 and 24 hours after the initiation of CVVH
Norepinephrine requirements
Time frame: 4, 12 and 24 hours after the initiation of CVVH
Fluids infused
Time frame: 4, 12 and 24 hours after the initiation of CVVH
Patient survival
Time frame: At day 7
Patient survival
Time frame: At day 30
Patient survival
Time frame: At day 90
Comparison of the results obtained on the above-mentioned parameters, according to the type of bacteria identified from standard care microbiological exams.
Time frame: At day 7
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