Sepsis and septic shock are still important causes of mortality in intensive care medicine. Renal replacement therapy by standard volume haemofiltration is currently used, but a higher-volume haemofiltration may improve the prognosis. The study is a prospective randomized multicenter trial comparing two treatments in patients suffering from septic shock complicated with acute renal failure admitted to ICU. One group will be treated by early high volume haemofiltration (70 ml/kg/h) and the second group by standard volume haemofiltration (35 ml/kg/h). The main outcome will be one-month mortality.
Background Sepsis and septic shock are still important causes of mortality in intensive care medicine nowadays. Mortality ranges from 40 up to 80 % depending on the number of organ failures. Therapeutic strategy consists of two major components: haemodynamic stabilization with restoration of adequate arterial pressure and optimization of peripheral perfusion delivery, and infection treatment. Mortality remains high despite the use of new antimicrobial therapy and adjuvant therapies such as activated protein C, low dose corticoids and haemofiltration. Initial observations in patients with acute renal failure treated by haemofiltration showed azotemia control, restoration of the sodium-water balance, elimination of inflammatory mediators and improvement of the cardiac and pulmonary functions was demonstrated independently of a negative water balance. There is no human randomized study so far demonstrating these preliminary findings. Nevertheless, several authors have demonstrated inflammatory mediators elimination by the use of haemofiltration. Moreover, the clinical improvement seems to be related to the ultra filtration dose and to the early initiation of therapy. Joannes-Boyau et al carried out a pilot study in abdominal surgery patients demonstrating that the use of high volume haemofiltration in patients with septic shock and multiple organ failure restores hemodynamic stability with drastic reductions in catecholamine requirements and a substantial reduction of observed vs. expected mortality. Objectives The principal objective of the study is to evaluate the effect of early Continuous High Volume Haemofiltration on 28-day mortality in patients with septic shock complicated by acute renal failure. The secondary objectives are to assess the effect of High Volume Haemofiltration on haemodynamics, doses of catecholamines, organ failures, duration of mechanical ventilation, duration of renal replacement therapy need, morbidity, length of ICU and hospital stay, and 60- and 90-day mortality. Study design Open label randomized multicenter controlled trial on two parallel groups of patients with septic shock and acute renal failure admitted to ICU, treated early either by high volume (70 ml/kg/h) or by standard volume (35 ml/kg/h) haemofiltration. Eligibility criteria Inclusion criteria. Septic shock (Bone criteria) for less than 24 hours, RIFLE criteria : injury or worse, age over 18 years, and written informed consent by next of kin. Non inclusion criteria. Cirrhosis, age over 80 years, life expectancy less than 3 months or metastatic cancer. Intervention High volume (70 ml/kg/h) vs. standard volume (35 ml/kg/h) haemofiltration during 96 hours. Further renal replacement therapy (if haemofiltration, only standard volume is allowed) may be used according to investigator decision. Primary endpoint All cause 28-day mortality. Statistical aspects 460 patients are planned to be included (230 in each group). A 15 % absolute reduction in 28-days all-cause mortality in the high volume group compared with the standard group is expected. However, as this reduction might be greater, an interim analysis is planned when half of the total sample size will have been included. Data will be analyzed on an intention-to-treat basis. Duration of the study: 3 years.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
139
High Volume ultra filtration (70 ml/kg/h)
Conventional Volume (35 ml/kg/h)
Cliniques de l'Europe
Brussels, Belgium
Astrid Queen Military Hospital
Bruxelles (Neder Over Hembeek), Belgium
TIVOLI Hospital
La Louvière, Belgium
University Hospital
Liège, Belgium
St-Pierre Para-University Hospital
Ottignies-Louvain-la-Neuve, Belgium
Hospital
Agen, France
Clinic Bordeaux Nord
Bordeaux, France
University Hospital
Brest, France
University Hospital
Grenoble, France
Hospital R Boulin - Libourne
Libourne, France
...and 6 more locations
all-cause mortality.
Time frame: 28-day
Haemodynamic parameters and volume loading
Time frame: Every 12 hours during 96 hours after inclusion
Doses and duration of catecholamine infusions
Time frame: Every 12 hours during 96 hours after inclusion
Organ failures
Time frame: During 96 hours after inclusion
Duration of mechanical ventilation
Time frame: Total during the stay in intensive care
Duration of renal replacement therapy
Time frame: Total during the stay in Intensive Care Unity (ICU)
Morbidity
Time frame: Total during the stay in intensive care
Length of stay in ICU and hospital
Time frame: End of hospitalization
Mortality
Time frame: in ICU (96 first hours after inclusion), 60 and 90-day
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