7 Clinical Trials for Various Conditions
The duodenoscopes currently used for Endoscopic Retrograde Cholangio - and Pancreaticography (ERCP) examinations are reusable and are therefore washed and disinfected after each use. Despite this, these endoscopes sometimes remain contaminated with bacteria. Several reports of outbreaks linked to contaminated duodenoscopes have been published worldwide. Recently, the Food and Drug Administration (FDA) advised manufacturers and health care professionals to transition away from fixed endcap duodenoscopes and instead focus more on the use of duodenoscopes with disposable components or fully disposable duodenoscopes. Single-use endoscopes have been developed, but they are not yet widely used, partly because of the extra costs that these endoscopes add to the examination. A possible interim solution, is to only use these disposable endoscopes in patients who carry multi-resistant bacteria in order to prevent the spread of these bacteria. For this, it is important to know how many people who undergo an ERCP carry multi-resistant bacteria. The primary objective of this study is to measure the prevalence of multi-resistant bacteria in patients undergoing ERCP in four different countries: India, the Netherlands, Italy and the United States. In the Netherlands, some secondary outcomes will be investigated with regard to the prevalence of duodenoscope contamination, the risk of bacterial transmission via a contaminated duodenoscope and the presence of multi-resistant bacteria in the duodenum.
The purpose of this study is to better understand the effectiveness and safety of microbiome therapies (MT) as a treatment for patients with Multidrug Resistant Organism (MDRO) colonization after an infection. Limited data from prior studies suggest that MT may be an effective treatment to reduce intestinal MDRO colonization Although shedding of MDROs from patients to their surrounding environment is a recognized pathway of transmission, the potential effect of MT on the transmission of MDRO to other patients in the hospital environment is unclear. This study will test the safety and efficacy of MT for this use in hospitalized patients. This study will also help design larger studies. The MT may help reduce MDROs that colonize the gut. By reducing colonization before infections happen, this could help doctors avoid using "last resort" antibiotics that can have serious side effects like kidney damage. The reduction in MDROs after MT was originally identified in patients treated with MT for recurrent Clostridioides difficile (often called "C. diff") diarrhea. It has been shown that a type of MT called fecal microbiota transplant (FMT) can eliminate both C. difficile and other resistant bacteria.
This study is specifically designed to provide observational data which can be used to help in the design of future randomized clinical trials on both therapeutics and diagnostics for MDRO infections. To this end, clinical and epidemiological data will be collected on patients who have MDRO isolated from clinical cultures during hospitalization, as well as descriptions of the outcomes of patients treated with various antimicrobial regimens. Molecular and microbiological characterization will also be performed on MDRO isolates. These data will include a detailed clinical and epidemiological description of patients including identifying potential barriers to enrollment in future trials. In addition, data will be collected on species, strain type, and mechanism of drug resistance of the causative organism. Knowing the molecular characteristics will further inform future trial design as not all diagnostics detect and not all therapeutics are active against the same mechanisms of resistance.
This randomized phase III trial studies chlorhexidine gluconate cleansing to see how well it works compared to control cleansing in preventing central line associated bloodstream infection and acquisition of multi-drug resistant organisms in younger patients with cancer or undergoing donor stem cell transplant. Chlorhexidine gluconate may help reduce bloodstream infections and bacterial infections associated with the central line.
This is a Phase 1, open-label, multiple-dose trial conducted at a single center. The treatment period will consist of three 6 g doses (18 g) of ZTI-01 as a 1-hour intravenous (IV) infusion (+10 minute window). A total of 30 enrolled subjects will be randomized to undergo a single standardized bronchoscopy with bronchoalveolar lavage (BAL) at one of five sampling times. A total of 6 subjects will be assigned to each BAL-sampling time. Up to ten additional enrolled subjects will act as alternates to obtain 30 evaluable subjects. An evaluable subject is defined as a subject who receives all doses of ZTI-01, undergoes BAL at the randomized sampling timepoint with BAL return volume adequate for testing, and undergoes at least the one blood sampling timepoint that is concurrent with the assigned BAL sampling timepoint, with blood sampling volume that is adequate for testing. The objectives of the study are to assess safety and pharmacokinetics (PK) for a multiple dose regimen of IV-infused ZTI-01.
The purpose of this study is to determine whether ceftaroline is effective and safe in the treatment of Community-Acquired Pneumonia
The purpose of the study is to determine if the antibiotic ceftaroline is safe and effective in the treatment of community-acquired pneumonia in adults.