View clinical trials related to Septic Shock.
Filter by:Despite promising observational and phase 1 data, the therapeutic potential of vitamin C for the management of septic shock has not borne out in recent large multi-centre randomized controlled trials. There is biological plausibility for benefit with intravenous vitamin C, and the investigators hypothesize that the doses used in these trials were insufficient to demonstrate an effect. High-dose vitamin C has been trialed in patients with cancer and burns and proven to be safe. The investigators have recently demonstrated a dramatic benefit of high-dose intravenous vitamin C in reversing organ dysfunction in a large mammalian model of sepsis. The proposed prospective interventional study will be the first to administer high-dose intravenous vitamin C in critically ill patients with sepsis. The objectives of this study will be to determine whether high-dose intravenous vitamin C (i) reduces vasopressor requirement in critically ill patients with septic shock (ii) reverses organ dysfunction and (iii) is well tolerated.
Compare the microcirculatory reactivity before and after a 30-minute intravenous infusion of 40 mg/kg vitamin C and evaluate intra-individual variation of hemodynamic parameters between T0 and T1.
Sepsis is one of the leading causes of death in intensive care. About 50% of patients with septic shock die after 1 year; and 50% of survivors suffer from cognitive decline. The pathophysiological mechanisms of serious complications of sepsis are now well known. In fact, the systemic inflammation related to sepsis amplifies the release of pro-inflammatory cytokines and neurotoxic mediators, hence an increase in deleterious phenomena such as oxidative stress, mitochondrial dysfunction, endothelial activation, disruption of the blood-brain barrier, neuroinflammation (astrocytic and microglial activation) leading to multi-organ failure which compromises the patient's vital and functional prognosis. Although there has been progress in the understanding of its pathophysiology, the management of sepsis and septic shock in intensive care relies mainly on anti-infective treatments and the restoration of cardiovascular and respiratory functions. There is virtually no adjuvant therapy for the management of sepsis, apart from a few hormonal therapies such as insulin to maintain blood glucose levels below 180 mg / dL and low doses of corticosteroids and vasopressin. There is therefore a pressing need to develop innovative treatments targeting inflammatory and immunological processes in order to reduce the complications of sepsis and improve patient prognosis. Some recent work has shown that electrical vagus nerve stimulation (SNV), a technique used for the treatment of drug-resistant epilepsy, can modulate inflammatory and immune responses and control inflammation syndrome in animal models of sepsis, arthritis and rheumatism in humans. In this pilot study the investigators plan to evaluate the efficacy of transcutaneous (non-invasive) SNV as an adjuvant treatment in patients with sepsis in intensive care.
Several data emphasize the relation between tachycardia (>90/min) and high mortality during septic shock. The investigators previously demonstrated the high mortality associated with hypercontractility, tachycardia and the presence of a left ventricular obstruction. A severe hypovolemia, a hyper adrenergic stimulation or a severe vasoplegia can all explain this relation between tachycardia, hypercontractility and the mortality during septic shock. Landiolol is another short-term acting beta-blocker with a half-life of 4 minutes without any beta 2 activity or membrane stabilizing effect. The landiolol has been used in critically ill patients to control supraventricular tachycardia but not in this context of tachycardia and septic shock. The investigators hypothesize that landiolol by reducing the heart rate may improve the survival of patients treated for a septic shock and presenting with an hypercontractility state.
This clinical study aims to compare the recent septic shock management protocol from American College of Critical Care Medicine (ACCM) to Ultrasound-guided Septic Shock Management (USSM) protocol. USSM protocol laid on Doppler ultrasonography to evaluate stroke volume, cardiac index, and systemic vascular resistance in each step of management to decide the proper fluid resuscitation and vasoactive therapy; differs from ACCM protocol which use clinical finding in its early step. ACCM protocol application elicits risk of improper therapy since clinical sign per se often could not describe the certain cardiac output. This can be prevented earlier by USSM protocol. The outcome compared of the two protocols is: mortality rate, clinical parameter, macrocirculation hemodynamic parameter, laboratory microcirculation parameter, and signs of fluid overload. The investigators hypothesized if the USSM protocol had a better outcome and less fluid overload complication.
This monocentric, prospective, controlled, randomized, single-blind study will be conducted in surgical resuscitation at the Rouen University Hospital. The aim of our research project is to evaluate the extubation time after sedation with inhaled isoflurane compared to conventional intravenous sedation with midazolam, in patients who require prolonged sedation (3 to 28 days) in a context of septic shock. This population is particularly at risk of hypnotic accumulation due to the prolonged duration of use and the increased risk of developing renal or hepatic impairment in connection with septic shock. Based on data from the literature on shorter durations of up to 96 hours of sedation, the investigators expect a decrease in the time to extubation in patients sedated with isoflurane as well as a better quality of awakening with a decrease in resuscitation delirium. This shortened duration of mechanical ventilation could have beneficial effects on the morbidity associated with prolonged sedation and ventilation: reduction of pneumopathies acquired under mechanical ventilation, reduction of the length of stay in resuscitation and hospitalization.
Sepsis-induced cardiac dysfunction (SIMD) is a well-known phenomenon yet its diagnosis remains elusive with no accepted definition, or defining pathophysiological mechanism associated with this disease. Systolic dysfunction occurs in 20-70% of patients, and may be severe, yet does not appear to have any prognostic value for mortality. Diastolic function has also been variably described and seems to be related to short-term mortality. However, the contribution of left ventricular systolic and diastolic dysfunction to mortality in sepsis are still far from clear, with uncertain contribution from previous cardiovascular disease, vasopressor and inotropic drugs and mechanical ventilation. Another poorly investigated area is right ventricular dysfunction. Cor pulmonale occurs in up to 25% of patients with septic shock, and is invariably related to pulmonary haemodynamics and mechanical ventilation, yet very little is known about how this affects prognosis. Finally, although the outcome of disease is a function of multiple parameters, septic cardiomyopathy is most frequently characterized based on individual echocardiographic parameters, without considering their interactions or placing them in the context of biomarkers and clinically available haemodynamic data. Available relevant studies are often monocentric, and many fail to consider the various confounders that influence the clinical outcome in sepsis. Therefore, the diagnostic and prognostic value of combinations of clinical, biochemical and haemodynamic variables remains to be established. Accordingly, the purpose of this study is to identify biomarkers and echocardiographic and haemodynamic signatures characteristic of specific outcomes in SIMD to support the diagnosis and prognosis in SIMD. Specific aims are: 1. To determine the association between left ventricular systolic and diastolic dysfunction, and adverse outcome in SIMD; 2. To determine the association between right ventricular systolic and diastolic dysfunction, and adverse outcome in SIMD; 3. To determine the association between novel biomarkers and adverse outcome in SIMD; 4. To determine the combined value of biomarker, echocardiographic, and haemodynamic variables for predicting adverse outcomes in SIMD; 5. To explore if there are different phenotypes of SIMD using unsupervised machine learning algorithms, and whether they are associated with adverse outcomes. 50 patients will be enrolled in a feasibility study to evaluate the logistical setup for acute echocardiography and biobanking facilities. A further 300 patients will be enrolled with inclusion from peripheral centers once feasibility is confirmed.
Sepsis results in activation of the coagulation system, which is commonly described as disseminated intravascular coagulation (DIC). The DIC score, which is commonly used to define this syndrome, does not allow to delineate between hypercoagulation and hypocoagulation. The aim of this prospective observational study is to evaluate data from automated rotational thromboelastometry and compare These with the DIC score regarding intensive care unit outcome.
Purpose and rationale: Sepsis is a life-threatening organ dysfunction caused by a dysregulated host response to infection. Sepsis and septic shock are major public health problems killing one in every three patients. Microcirculatory dysfunction is frequent in septic shock. The duration and severity of this dysfunction have a prognostic impact by being associated with organ failure and mortality. Our study purposes to demonstrate the feasibility of optical coherence tomography angiography (OCTA) to improve assessment of microcirculatory dysfunction by showing that retinal and choroidal microcirculatory changes with prognostic impact are present during septic shock. Primary objective: To characterize the alterations of retinal and choroidal microcirculation in septic shock. We will test the hypothesis that retinal and/or choroidal microcirculation shows dysfunctional changes (lower vascular density, lower percentage of perfused small vessel, lower blood flow index and higher vascular heterogeneity) in septic shock patients. Secondary objective: To test the prognostic value of retinal and choroidal microcirculatory dysfunction in septic shock. We will test the hypothesis that higher magnitude and persistence of retinal and/or choroidal microcirculatory dysfunction beyond the successful macro-hemodynamic resuscitation are independent predictors of organ failure and mortality in septic shock patients. Study type: Two sequential observational studies. Study design: A cross-sectional case-control study followed by a prospective cohort study with a 90-days longitudinal follow-up period. Study population: 165 septic shock patients and 30 healthy controls. Study duration: 90 days from enrolment to final follow-up assessment. One to two years of enrolment.
Sepsis is the most common cause of acute kidney injury (AKI) in critically ill patients and is associated with a high mortality rate. Currently there is no available specific treatment to prevent or treat AKI in this setting. Many experimental and clinical data suggest that Nicotinamide, a safe and inexpensive vitamin, could be effective to prevent major adverse kidney events during septic shock. The main objective of the study is to show the superiority of Nicotinamide supplementation compared to the placebo group, in patients with septic shock admitted to intensive care. A 15% reduction in the incidence of major renal adverse events at day 30 is expected in the "Nicotinamide" group.