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Septic Shock clinical trials

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NCT ID: NCT03405870 Recruiting - Septic Shock Clinical Trials

LIPIDS-P Trial Phase I/II

LIPIDS-P
Start date: August 17, 2018
Phase: Phase 1/Phase 2
Study type: Interventional

Briefly, this pilot clinical trial will evaluate preliminary safety and efficacy of the study drug (Smoflipid) at elevating cholesterol levels (primary outcome) in patients with sepsis and moderate organ dysfunction and will also evaluate measures of organ dysfunction, mortality, and biological activity (secondary outcomes).

NCT ID: NCT03401398 Recruiting - Septic Shock Clinical Trials

Stress Hydrocortisone In Pediatric Septic Shock

SHIPSS
Start date: March 11, 2019
Phase: Phase 3
Study type: Interventional

SHIPSS is a multi-institutional, prospective, controlled, randomized, double-blinded interventional trial that will examine the potential benefits and risks of adjunctive hydrocortisone prescribed for children with fluid and vasoactive-inotropic refractory septic shock. It is hypothesized that adjunctive hydrocortisone will significantly reduce the incidence of new and progressive organ dysfunction (primary outcome) and proportion of children with poor outcomes, defined as death or severely impaired health-related quality of life (HRQL) (secondary outcome), as assessed at 28 days following study enrollment (randomization).

NCT ID: NCT03336814 Recruiting - Septic Shock Clinical Trials

Evaluation of Early Association of Terlipressin and Norepinephrine During Septic Shock; the TerliNor Study

TERLINOR
Start date: July 27, 2018
Phase: Phase 4
Study type: Interventional

In guidelines norepinephrine is the first line vasopressor recommended in case of septic shock. Use of vasopressin is recommended when norepinephrine fails to maintain a mean arterial pressure above 65mmHg or in salvage. Several studies failed to show a superiority of vasopressin over norepinephrine but none evaluated the effect of an early association on organ failure. Terlipressin is a pro-drug of vasopressin which has the same vasoconstrictor effect. We hypothesize that the early association of terlipressin and norepinephrine during septic shock reduces organ failure. This bi centric, double-blinded, randomised, controlled versus placebo study includes 40 patients. Randomisation will be stratified between centers (two university affiliated intensive care units of Assistance-Publique-Hôpitaux de Marseille, Marseille, France). All patients with septic shock needing more than 0,5µg/kg/min of norepinephrine to reach PAM objectives are randomised, after hemodynamic evaluation and optimisation, to receive continuous infusions of terlipressin (0,01mg/kg/min) or placebo (physiologic serum). The 2 groups receive steroid therapy (continuous intravenous hydrocortisone perfusion) at this time. Clinicians are blinded of perfusion used. Use of terlipressin remains possible in salvage when patients need more of 1µg/kg/min of norepinephrine on physician's decision. Patients with acute ischemic or septic heart failure are excluded of the study. Primary objective is sepsis related Sequential Organ Failure Assessment (SOFA) score difference between the groups at day 3. Secondary objectives are mortality at day 28, lactates clearance in the first 48hours, renal function (evaluates with AKIN criteria) and use of renal replacement therapy.

NCT ID: NCT03334006 Recruiting - Sepsis Clinical Trials

Prospective, Randomized Trial of Personalized Medicine With Pentaglobin® After Surgical Infectious Source Control in Patients With Peritonitis (PEPPER Trial).

PEPPER
Start date: November 20, 2017
Phase: Phase 2
Study type: Interventional

The aim of this prospective, randomized, controlled trial is to provide evidence for adjuvant IgGAM treatment with regard to 1. Improvement of patient outcomes for peritonitis. Improvement in outcome will be determined by scores such as MOF, SOFA and survival. 2. Identification of biomarkers (including immunoglobulin levels, HLA-DR, Nf-kB1 and other immunological biomarkers) to identify patient subpopulations that benefit most from IgGAM treatment. These patients will form the basis for a further randomized, controlled, double-blind Phase III trial (RCT) to demonstrate the benefit of this treatment. 3. In addition, these biomarkers could help to guide a targeted, i.e. "personalized", adjuvant therapy with Pentaglobin® (IgGAM) in the indication of peritonitis.

NCT ID: NCT03208257 Recruiting - Septic Shock Clinical Trials

Esmolol to Control Adrenergic Storm in Septic Shock- ROLL-IN 2

ECASSS-R2
Start date: August 7, 2017
Phase: Phase 2
Study type: Interventional

Septic shock is a common syndrome caused by the body's response to an infection. Septic shock is responsible for 10% of all ICU admissions and 30% of ICU deaths. Use of "beta blocker" medications may improve outcomes after septic shock. This pilot study evaluates protocols to infuse the beta blocker esmolol in patients with septic shock.

NCT ID: NCT03198611 Recruiting - Septic Shock Clinical Trials

Reversibility of Diastolic Disfunction in Septic Shock

REPRISS
Start date: March 1, 2018
Phase: N/A
Study type: Observational

Objectives: To study the prognostic value of the evolution of diastolic function according to fluid balance in patients admitted to the ICU with a diagnosis of septic shock, in terms of mortality (ICU and hospital) and mortality at 90 days. 2.4. Secondary objectives: A) Incidence and reversibility of myocardial dysfunction (left ventricular systolic and diastolic) in septic shock. B) Incidence and reversibility of diastolic dysfunction according to the echocardiographic criterion used. C) Incidence and reversibility of right ventricular systolic dysfunction.

NCT ID: NCT03189355 Recruiting - Septic Shock Clinical Trials

Expression of Protein Tyrosine Phosphatase 1B (PTP1B) and Body Composition Modification in Patients With Septic Shock

Coc-SEPP1B
Start date: January 9, 2017
Phase: N/A
Study type: Interventional

With a prevalence of more than 15% in ICU, septic shock today represents a real public health problem and remains the leading cause of mortality in ICU. Undernutrition is characterized by an alteration of the body composition and in particular by a loss of muscle mass. In intensive care, there are indirect elements suggesting a link between loss of muscle mass and prognosis. Muscle mass results from a balance between the pathway of proteolysis and that of protein synthesis, depending on many factors, not one of the most important are insulin. The protein PTP1B (Protein Tyrosine Phosphatase 1B), by the dephosphorylation of its numerous substrates, constitutes an endogenous regulator of numerous intracellular signaling pathways, including that of insulin. PTP1B could play a role in the protein synthesis abnormalities observed during sepsis leading clinically to impaired body composition including muscle body mass. Therefore, we propose to study the association between PTP1B and loss of muscle mass in patients in sepsis in resuscitation. The intestinal barrier plays an essential role in protecting against microbial luminal flora and the phenomenon of bacterial translocation. Zonulin is one of the major regulators of tight junctions, important actors in the intestinal barrier function. The increase in plasma zonulin levels, greater than 0.6 ng / mg, is directly correlated with increased intestinal permeability (16). However, elevation of plasma zonulin has never been evaluated in septic resuscitation patients. This is why we propose the evaluation of the association between plasma zonulin and the loss of muscle mass in these resuscitation patients.

NCT ID: NCT03177330 Recruiting - Septic Shock Clinical Trials

Safety and Efficacy of Heparin Dosing Score Protocol for Polymyxin-B Hemoperfusion

Start date: May 15, 2017
Phase: N/A
Study type: Observational

Polymyxin B hemoperfusion (PMX-HP) is mainly used to remove endotoxins in septic shock patients with intra-abdominal infections. Because of the concerns of postoperative bleeding, physicians may hesitate to use anticoagulation in patients with septic shock within a few hours after an abdominal operation. We developed a heparin dosing score protocol for heparin dosage adjustment. The purpose of the study is to examine the safety and efficacy of the heparin dosing score protocol.

NCT ID: NCT03151668 Recruiting - Septic Shock Clinical Trials

Effect of Dexmedetomidine on Perfusion Index and Microcirculation in Severe Sepsis and Septic Shock Patients

Start date: January 4, 2017
Phase: Phase 3
Study type: Interventional

Septic shock is one of the major causes of death worldwide with in-hospital mortality rates varying between (11.9% to 47.2 %). Alterations in microcirculatory blood flow were associated with high risk of organ dysfunction and death. Experimental studies on septic rats revealed that dexmedetomidine treatment can effectively reduce the generation of inflammatory mediators and yields beneficial effects on endotoxemic animals' microcirculation.

NCT ID: NCT03065751 Recruiting - Septic Shock Clinical Trials

Plasmaexchange in Early Septic Shock

EXCHANGE
Start date: January 2016
Phase: N/A
Study type: Interventional

Sepsis is defined by the occurrence of a systemic inflammatory response syndrome (SIRS) in the context of infection. Unfortunately, its incidence appears to be rising, and the mortality of septic shock remains extraordinary high (> 60%). Death in sepsis arises from shock and multi organ dysfunction that are - at least in part - triggered by an inadequate response of the host's immune system to the infection. Given the injurious role of 1) this overwhelming immune response and 2) the consumption of protective plasmatic factors (e.g. vWF cleaving proteases, hemostatic factors etc.) while the disease is progressing the investigators hypothesize that early therapeutic plasma exchange (TPE) in the most severely ill individuals might improve hemodynamics, oxygenation and ultimately survival. This therapeutic strategy combines 2 major aspects in 1 procedure: 1. removal of harmful circulating molecules and 2. replacement of protective plasma proteins. The investigators designed the EXCHANGE trial to analyze in a randomized fashion the benefit of TPE as an add-on treatment to state of the art standard sepsis care. Only patients with early septic shock (< 12 hrs) and high catecholamine doses (noradrenaline > 0.4 ug/kg bodyweight/min) will be included. Those in the treatment group will receive 3 TPEs within three consecutive days. The primary outcome is 28-day all cause mortality. To show an assumed reduction from 60% to 45% in the experimental group, a sample size of 173 patients per group has been calculated. The overall sample size is therefore n=346. The recruitment period is 3 years (+3 months observation) and will be performed in 11 national centers in Germany. Secondary endpoints (including hemodynamics, oxygenation, coagulation, and microcirculation) will be assessed on day 1, 2, 3 before and after TPE and on day 4, 5, 7 and 14. Project management and data monitoring will be organized by the Hanover Clinical Trial Center and biostatistics including a web-based randomization will be performed by the Institute of biometrics (Prof. Koch) at Hannover Medical School. The investigators hope to demonstrate a potential benefit of an additive treatment approach to improve the outcome of patients suffering from an under-recognized but deadly disease.