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Septic Shock clinical trials

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NCT ID: NCT01790620 Completed - Sepsis Clinical Trials

Impact of CVVHD With Adsorption Capacity Membranes in Septic Acute Kidney Injury

Start date: May 2013
Phase: N/A
Study type: Interventional

Septic patients with acute kidney injury (SA-AKI) requiring continuous renal replacement therapies (CRRT) present high mortality due to systemic inflammatory response, cytokine liberation, and finally multiorgan dysfunction. Cytokine plasmatic elimination with continuous venovenous hemofiltration (CVVH) presents frequent complications, known as "dialytrauma", and a high resource cost both technical and human. The study primary end-point is to demonstrate a longer filter life with the use of continuous venovenous hemodialysis (CVVHD) respect to CVVH, both modalities employing the same adsorption capacity membrane. As secondary end-points investigators will try to demonstrate less dialytrauma events of CVVHD respect to CVVH. In order to achieve these objectives investigators have designed a proof of concept exploratory trial that will include those patients whom present SA-AKI meeting CRRT initiation criteria. During the first 72 hours investigators will measure plasmatic elimination capacity of main cytokines, and other clinical and prognostic relevant molecules. Investigators will also measure hemodynamic, respiratory, and metabolic parameters. Adverse effects related to CRRT ("dialytrauma") will also be registrated. Finally, investigators will analyze 90 days survival. Demonstration of a minor complication rate (longer filter patency with less dialytrauma events) with a similar immunomodulating capacity and with its consequent lower cost, should settle the based evidence principles that recommend the use of CVVHD asociated to an adsorption capacity membrane in patients with SA-AKI whom need CRRT.

NCT ID: NCT01775020 Completed - Sepsis Clinical Trials

Dose-response Study of Arginine Supplementation in Severe Sepsis

Start date: October 2003
Phase: Phase 0
Study type: Interventional

Pilot data in patients and data from pig studies indicate that arginine-NO metabolism is impaired in sepsis with changes in splanchnic metabolism and function, and reduced survival at low nitrate levels. Prolonged intravenous supplementation of L-arginine proved effective in pigs for increasing NO production, restoring gut function, and inhibiting an increase in pulmonary arterial pressure, without any deleterious systemic side effects. Prolonged intravenous L-arginine supplementation could therefore be useful in septic ICU patients.

NCT ID: NCT01718613 Completed - Septic Shock Clinical Trials

Vasopressin Versus Norepinephrine for the Management of Septic Shock in Cancer Patients

VANCS II
Start date: November 2012
Phase: Phase 3
Study type: Interventional

Although arginine vasopressin has been used as an additional drug in refractory shock in worldwide clinical practice, there are no prospective studies using it as a first choice therapy in patients with cancer and septic shock. The aim of this study is assess if the use of arginine vasopressin would be more effective on treatment of septic shock in cancer patients than norepinephrine, decreasing the composite end point of mortality and organ failure in 28 days.

NCT ID: NCT01665092 Completed - Septic Shock Clinical Trials

Rapid Administration of Carnitine in sEpsis

RACE
Start date: January 2013
Phase: Phase 2
Study type: Interventional

Prior work has shown that exogenous L-carnitine administration enhances glucose and lactate oxidation, attenuates fatty acid toxicity, and improves endothelial-smooth muscle coupling and cardiac mechanical efficiency. The overall goal of this proposal is to investigate L-carnitine as a novel adjunctive treatment of septic shock. In this study the investigators will test our primary hypothesis: Early adjunctive L-carnitine administration in vasopressor dependent septic shock will significantly reduce cumulative organ failure at 48 hours with an associated decrease in 28-day mortality suggesting the need for further phase III study. To accomplish this the investigators will conduct a phase II, double blinded, placebo controlled, adaptive randomized trial of 250 eligible patients with vasopressor-dependent septic shock. Study subjects will be assigned to one of four arms: low (6g), medium (12g) or high (18g) dose intravenous L-carnitine or placebo for 12 hours as a part of early resuscitative care.

NCT ID: NCT01649921 Completed - Sepsis Clinical Trials

The Effects of Interferon-gamma on Sepsis-induced Immunoparalysis

Start date: November 2012
Phase: Phase 3
Study type: Interventional

The primary aim of this study is to assess the effects of adjunctive therapy with Interferon (IFN)-gamma on immune function in patients with septic shock in a placebo-controlled manner. Moreover, the investigators want to evaluate new markers that could be used to identify patients with immunoparalysis, and to monitor the patient's immunological response to IFN-γ. In addition, mechanistic studies will be performed to further elucidate mechanisms (such as epigenetic modifications) behind immunoparalysis and the effects of IFN-γ on these mechanisms. With use of the results the investigators will obtain in this pilot study, the investigators will conduct a large multicentre clinical trial with IFN-γ.

NCT ID: NCT01648036 Completed - Septic Shock Clinical Trials

Heparin Anticoagulation to Improve Outcomes in Septic Shock: The HALO Pilot

Start date: July 2012
Phase: Phase 2
Study type: Interventional

Life-threatening infections account for 10% of all intensive care unit admissions and constitute the second more frequent cause of death in the ICU after heart diseases. The most common cause of death in patients admitted with life-threatening infections is multi-organ failure that is mediated by severe inflammation. Given the relationship between inflammation and blood clotting, blood-thinners (also called anticoagulants) have been used to decrease inflammation and the formation of small clots. Several lines of evidence suggest that heparin, a proven and inexpensive blood-thinner, may reduce improve survival in patients diagnosed with life-threatening infection. The primary objective of this study is to demonstrate the feasibility of enrolling patients in a large randomized controlled trial investigating heparin in patients with severe infections. In this study, patients with life-threatening infections will have an equal chance of receiving an intravenous infusion of heparin, or a low dose of a similar drug to prevent of blood clots while patients are immobile. The primary purpose of the study is to demonstrate that an average of 2 patients per site, per month, can be enrolled. Other measures of feasibility include the consent rate, the number of protocol violations that occur during the trial, and the number of dose reductions needed due to excessive anticoagulation. To study the biologic effects of heparin in patients with severe infection, specific laboratory markers will be measured and analyzed. If the feasibility of the trial is confirmed, a large randomized trial designed to tell if heparin can safely improve survival will be conducted. Given its low cost and availability, if heparin is shown to improve survival in patients with severe infection, adoption of this therapy on a global scale is anticipated.

NCT ID: NCT01632059 Completed - Sepsis Clinical Trials

Examination of ADMA Serum Level and DDAH II

ADSeS
Start date: February 2012
Phase: N/A
Study type: Observational

Examination of ADMA (Asymmetric-Dimethylarginine)-serum level and DDAH II (Dimethylarginine Dimethylaminohydrolase)- Polymorphism in patients with severe Sepsis and septic shock as prognostic value. This study looks into ADMA as a good prognostic factor for sepsis. Further more the dependency of the ADMA level to the DDAH II polymorphisms is reviewed this study.

NCT ID: NCT01612676 Completed - Septic Shock Clinical Trials

Investigating FE 202158 as Potential Primary Treatment in Patients With Early Septic Shock

Start date: June 2012
Phase: Phase 2
Study type: Interventional

The purpose of this trial is to investigate the potential of FE 202158 as a treatment which can stabilize blood pressure for treatment of patients in early septic shock.

NCT ID: NCT01611753 Completed - Septic Shock Clinical Trials

Red Blood Cell Transfusion Improves Perfusion Parameters in Septic Shock Patients With Hypoperfusion

Start date: April 2004
Phase: N/A
Study type: Interventional

The purpose of this study was to evaluate the immediate effects of red blood cells transfusion on central venous oxygen saturation and lactate levels in septic shock patients randomized to two different hemoglobin levels. The influence of red blood cell (RBC) transfusion on the adequacy of oxygen delivery (DO2) and supply (VO2) could be assessed by systemic oxygen variables such as central venous oxygen saturation (ScvO2) and lactate levels. Although it is not clear that alterations in these parameters actually represent an improvement in the DO2/VO2 ratio, they might represent a better transfusion trigger than the absolute hemoglobin value. Patients admitted with a diagnosis of septic shock and hemoglobin levels lower than 9.0 g/dL , less than 48 hours of shock diagnosis, were included, a central venous catheter in the superior vena cava and signed informed consent. The investigators randomized all patients into two groups. Patients in the liberal group received transfusions immediately, as the objective was to maintain hemoglobin levels above 9.0 g/dL. In the restrictive group, transfusion was withheld until their hemoglobin levels fell below 7.0 g/dL. Each time a patient received a transfusion, the investigators collected a set of laboratory tests, including hemoglobin levels, ScvO2 and lactate, at two time points, immediately before transfusion and one hour after its ending. The sample size was calculated by considering that in 80% of the transfusions in patients in the restrictive group ScvO2 would improve compared to only 45% of those in the liberal group, with an alpha error of 0.05 and 80% power. Improvement was defined as an increase of 5% over the pre-transfusion ScvO2. Twenty-eight transfusions in each group would be necessary, but to correct for potential non-parametric distribution of the main variables, the number was adjusted to 35 transfusions in each group. Trends in ScvO2 and lactate were categorized as worsening or improving. The investigators defined improvement when ScvO2 reached 70% in patients with baseline levels below this threshold or when there was an absolute increase of at least 5% after transfusion. Any increase in patients with previous ScvO2 ≥ 70% was considered to be "no change". Worsening was defined as a reduction of 5% in the previous levels or a decline to less than 70% in patients with pre-transfusion levels in the range of 70 to 75%. The investigators also carried out a ROC curve analysis to assess the accuracy of the pre-transfusion hemoglobin levels, pre-transfusion lactate and pre-transfusion ScvO2 in predicting the patients whose ScvO2 would increase more than 5% with transfusion. For this analysis, the investigators used a different approach because it would also be necessary to analyze patients with a lower chance of response to assess the prediction of response. Thus, this analysis included all patients with ScvO2 below 75%, rather than only those below 70%. As before, the investigators defined improvement as any increase ≥ 5%. The investigators did not consider patients with levels above 75% in this analysis, as the physiological interpretation of this situation is challenging. The investigators considered as altered any lactate levels above 1.5 times the reference level, and a change ≥ 10% was defined as improvement or worsening. In patients with baseline normal levels, the status was recorded as worsening if a 10% increase was detected. Afterwards, the investigators tested the association between these categorized variables and the baseline levels of hemoglobin. The impact on perfusion was also assessed by the determination of Δlactate (lactate post-transfusion x 100/lactate pre-transfusion) and ΔScvO2 (ScvO2 post-transfusion x 100/ScvO2 pre-transfusion), and their correlation with the baseline hemoglobin levels was analyzed using the Spearman correlation test. In all tests, the results were considered significant if the p level was lower than 0.05.

NCT ID: NCT01604551 Completed - Septic Shock Clinical Trials

Membrane Shedding During Septic Shock

Start date: May 2003
Phase: N/A
Study type: Observational

Microparticles (MPs) result from plasma cell membrane remodeling and shedding after cell stimulation or apoptosis. MPs are know recognized as a pool of bioactive messengers with emerging role in pathophysiology of immune and cardiovascular diseases. MPs have been characterized during septic shock and may contribute to dissemination of pro-inflammatory and procoagulant mediators. This is a prospective observational study of circulating MPs and blood coagulation in 100 septic shock patients admitted in 3 tertiary hospitals medical ICU at baseline (D1), D2, D3, D4 and D7.