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Active clinical trials for "Sepsis"

Results 441-450 of 1417

Effects on Microcirculation of IgGAM in Severe Septic/Septic Shock Patients.

Severe SepsisSeptic Shock

IgM-enriched immunoglobulins (IgGAM; Pentaglobin ® ) are new therapy for sepsis and septic shock since they support immune system especially in case of " immunoparalysis" . However IgGAM isn't commonly prescribed, few centres use it as routine in severe infections and there aren't any guidelines to determine how and when to use them. Microcirculatory dysfunction is a crucial aspect in the pathogenesis of sepsis-induced organ dysfunction, resulting in hypoperfusion and tissue hypoxia. Unpublished clinical data suggest a beneficial effect of IgGAM at microvascular level proved with near infrared spectroscopy and Vascular occlusion test (VOT). This study is a double blind phase II prospective randomised controlled trial that will include patients admitted to the Intensive Care Unit of the University Hospital "Ospedali Riuniti" of Ancona, after no more than 24 hours from development of severe sepsis or septic shoc. Patients will be randomized into two groups (treaties and controls): patients in group of the treaties will be submitted to infusion of IgGAM conjugate (Pentaglobin ®) at dosage of 250 mg/kg IV (5 mL/kg) per day (rate of 0.4 mL/kg/h), for 72 hours. The controls will receive equal amount of physiological NaCl solution (0.9%) as placebo. Neither the patient nor the staff nurses and MD will be aware of the group and of the treatment applied. IgGAM solutions or NaCl 0.9% will be provided by the hospital pharmacy in similar bags. The remaining treatments will not be changed in any way and will be at the discretion of the doctor who's in charge of the patient. All patients of the two groups will receive the optimal therapy for their conditions, according to good medical clinical practice (GMP), with appropriate antibiotic therapy, vasoactive and infusional therapy

Completed8 enrollment criteria

Study of Early Enteral Dextrose in Sepsis

Sepsis

This study is a prospective single-center randomized double-blinded placebo-controlled clinical trial testing the effects of early enteral dextrose as a therapeutic agent in critically ill patients with sepsis. Primary outcomes are differences in circulating plasma levels of the pro-inflammatory cytokine IL-6 to be tested 24 hours after the start of enteral infusion. Secondary outcomes include differences in circulating incretin hormone levels, differences in other pro-inflammatory cytokines including IL-1β and TNF-α, changes in intestinal microbial composition and function after intervention, glycemic control and variability as assessed by capillary blood glucose measurements and exogenous insulin dosing during the intervention period, and clinical outcomes including intensive care unit (ICU) and hospital stay and in-hospital mortality.

Completed8 enrollment criteria

Efficacy and Safety of Ethanol Lock Therapy for the Prevention of Central Line-associated Bloodstream...

Catheter-Related Infections

Patients on long-term parenteral nutrition (PN) are at high risk for central line-associated bloodstream infections (CLABSI). This study evaluates the efficacy and safety of ethanol lock therapy for CLABSI prophylaxis in adult patients on PN.

Terminated7 enrollment criteria

Adrenal Cortical Function and Vitamin A Deficiency in Sepsis

Sepsis

The study involves the participant to receive a 250 mcg Cortrosyn (ACTH) Stimulation Test to test the ability of the body to make Cortisol. If the body is not able to make large amount of Cortisol (Delta Cortisol < 13 mg/dl) from the stimulation test, then the participant will be given additional cortisol like medicine called Solumedrol or matching placebo. If the body is able to make large amounts of Cortisol (> 13 mg/dl), then the participant will receive daily shots of Vitamin A for 7 days or matching placebo. If the participant does not respond to the stimulation test, and meets the criteria for Cortisol deficiency (all 3 cortisol concentrations < 20 mg/dl), then he/she will screen failed for the study and will be offered hydrocortisone as part of routine care by the treating physician.

Completed7 enrollment criteria

Implementation and Evaluations of Sepsis Watch

SepsisSevere Sepsis1 more

The purpose of this study is to study the implementation and impact of an early warning system to detect and treat sepsis in the emergency room. We are observing the implementation of a Sepsis Machine Learning Model on all Adult patients. All data (observations field notes, interview recording & transcripts, and survey responses) will be stored on HIPAA-compliant Duke servers behind the Duke firewall, and requiring password-protected user authentication to access. The risk to patients is minimal. The two risks to interviewed clinical staff we have identified involve loss of work time and anonymity.

Completed2 enrollment criteria

Hydrocortisone, Vitamin C, and Thiamine for the Treatment of Sepsis and Septic Shock

Sepsis

In this prospective clinical study, the investigators compare the outcome and clinical course of consecutive septic participants treated with intravenous vitamin C, hydrocortisone, and thiamine (treatment group) with a control group treated in the investigators' ICU. The primary outcome is hospital survival. A propensity score is generated to adjust the primary outcome.There is 70 participants in each group.

Completed4 enrollment criteria

The Effect of Esmolol on Clinical Prognosis of Patients With Severe Sepsis

Severe Sepsis

The purpose of this study was to investigate the effect of esmolol on hemodynamic parameters,tissue perfusion and the clinical prognosis of patients with severe sepsis

Completed10 enrollment criteria

Molecular Culture for the Diagnosis of Pediatric Sepsis

SepsisSepsis Bacterial6 more

Babies and children have an increased risk of getting an infection with a bacteria in the bloodstream (sepsis). It is often difficult for the doctor to determine whether a child has an infection of the bloodstream, because the symptoms are often unclear and can also occur in children who are not sick. To determine whether there is an infection, a little blood is currently taken for a blood test (the blood culture) to investigate whether there is a bacteria in the blood. However, it often takes at least 36 hours before the results of this blood culture are available. That is why antibiotics are usually started immediately to treat the possible infection. However, it often turns out that the blood culture is negative after 36 hours, which means that no bacteria have been found in the blood. Usually the antibiotics are then stopped because it turns out that there was no infection at all. There is currently no good test that can predict whether (newborn) children have an infection or not. That is why too many children are currently wrongly receiving antibiotics. These antibiotics can damage the healthy bacteria in the intestines. There are many billions of 'beneficial bacteria' in the intestine. These play an important role in the digestion of food and protect against external infections. Antibiotics aim to kill bacteria that cause inflammation or infection. Unfortunately, antibiotics also kill some of these beneficial bacteria. In addition, unnecessary use of antibiotics contributes to antibiotic resistance. The aim of this research is to investigate whether Molecular Culture, a PCR based test that can identify bacterial pathogens in bodily fluids within 4 hours, has greater accuracy than traditional culturing techniques for bacteria in blood. If proven, this could lead to faster identification or exclusion of sepsis in children.

Not yet recruiting7 enrollment criteria

Treatment Strategy of Human Gamma Globulin on the Therapy for Intensively Ill Children With Inflammatory...

Critical IllnessSepsis1 more

The inflammatory storm in critically ill patients releases cytokines, causing systemic immune damage, which may be an important cause of multiple organ failure and even death. Inflammatory storms exacerbate the deterioration of the disease in those children. Gamma globulin may be an effective option to control inflammatory storms. However, this preliminary result needs to be verified from reliable and representative RCTs. In our study, we conducted a retrospective study on the use of gamma globulin and an unused control group. At present, the indications of IVIG are mainly focused on the neuromuscular system and the blood system. We hope to establish a more appropriate and operable evaluation table for the suitability of gamma globulin for clinical use.

Not yet recruiting5 enrollment criteria

Mitochondrial Dysfunction Contributes to Sepsis Induced Cardiac Dysfunction

Sepsis

This proposal hypothesizes that mitochondrial bioenergetics in the patient will correspond to mtDNA DAMPs levels and markers of inflammation. We predict these will serve as a prognostic indicator of Sepsis induced cardiac dysfunction (SICD) outcomes. Successful completion of these studies will provide a clearer understanding of the etiology of SICD development and therefore will have a high impact on biomedical research by identifying a new mechanism for understanding sepsis induced organ failure. Importantly, they will also provide a means for more directed and focused therapies, based upon individual bioenergetic/mitochondrial-mediated inflammation profiles. The combined, complementary expertise of the Mentor/co-primary investigators (Drs. Mathru and Ballinger) provide an excellent combination in both basic and translational research. They also have experience conducting studies and publications that will strengthen this research project. Importantly, the methods for characterizing mitochondrial bioenergetics from platelets were developed here at UAB, and methods for quantitative assessment of mtDNA DAMPs have been recently developed.

Not yet recruiting6 enrollment criteria
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