Loading clinical trials...
Loading clinical trials...
Showing 1-9 of 9 trials
NCT04153682
Hospital-Acquired Pneumonia (HAP) is the second most frequent hospital-acquired infection in the US and Europe and accounts for a large proportion of antibiotics prescribed in hospitals. Conventional methods to identify causative microorganisms (virus, bacteria) are time-consuming and sometimes inaccurate, leading to inadequate treatment in a large proportion of HAP patients. The FILMARRAY® Pneumonia Panel (FA-PP, bioMérieux) is an automated diagnostic device, allowing detection of multiple pathogens and resistance markers in one hour. Strategies combining rapid diagnostic testing and intervention of specialists in infectious diseases (i.e. antimicrobial stewardship -AMS - experts) showed significant synergistic impact on antibiotic use, mortality and costs in bloodstream infections. The trial hypothesis is that a strategy combining antimicrobial stewardship and FA-PP improves quality of care in HAP patients, as compared to antimicrobial stewardship alone. The trial will include patients hospitalized for ≥ 48 hours, aged 18 years or older, who have criteria of pneumonia: new lung infiltrate on a chest-x ray, plus evidence that the infiltrate is of an infectious origin (i.e. new onset of fever and/or purulent sputum and/or leukocytosis and/or decline in oxygenation). After informed consent, participants will be randomly allocated to either the intervention or the control arm. In the control arm, management of HAP patients will include clinical examination and conventional microbiological tests. Antibiotic choice will be discussed between AMS experts and the physician in charge of the patient. In the intervention arm, in addition to the procedures above, the strategy will include rapid testing using the FA-PP on a respiratory specimen, obtained by either invasive or non-invasive sampling. No additional invasive procedures will be required for the study, and FA-PP will be performed on samples collected as part as routine care. Investigators will visit the patient at inclusion, on day 3 and on day 30 (or at hospital discharge) to collect data on comorbidities, clinical outcomes, results of microbiological tests and antibiotics. At the end of follow-up, we will compare the number of days on broad-spectrum antibiotics, the incidence of negative outcomes, the length of stay and costs in the two arms. The use of the FA-PP is expected to prompt early adjustment of antibiotic therapy, improve outcomes, decrease length of stay, and to reduce the use of broad-spectrum antibiotics. The antibiotic saving may reduce the selection pressure, incidence of colonization with multidrug-resistant bacteria and incidence of hospital-acquired superinfections, both at an individual and hospital level. Moreover, this trial relies on the intervention of multidisciplinary AMS teams that are currently being implemented in many health facilities. Their transversal position offers opportunities for recruitment of patients from a wide range of medical and surgical departments. This project evaluates the feasibility of clinical trials based on the intervention of these teams, and will provide a high level of evidence regarding their impact on the prognosis of patients, appropriate use of antibiotics, and antimicrobial resistance.
NCT05483309
Hospital-Acquired Pneumonia (HAP) is a severe lung infection that develops while a patient is in hospital. We aim to design a trial to see if modern diagnostic investigations can safely improve outcomes for patients suspected of HAP. Currently, doctors use chest x-rays to make the diagnosis, but these are difficult to interpret and a third of patients suspected of HAP receive antibiotics inappropriately. Patients are concerned about misdiagnosis and a solution might be to replace the chest x-ray with a CT scan since these show the lungs in more detail. Once a diagnosis of HAP is made, doctors would like to identify the bacteria or viruses responsible. However, current tests are too slow to determine the initial treatment, so guidelines suggest we cover a range of possibilities with two extended spectrum antibiotics. Patients tell us they are concerned, because these antibiotics increase the risk of severe side effects and promote antibiotic resistance. The BIOFIRE® FILMARRAY® pneumonia panel (FAPP) is a new test that can identify the cause of HAP quickly. If we can determine the best way to use the FAPP, we can give antibiotics more effectively and slow the development of antimicrobial resistance. We will conduct a feasibility study to inform the design of a fully powered trial to discover whether using CT scans or the FAPP, or both together, helps improve antibiotic use and patient recovery whilst being cost effective. We will interview some participants and staff about how the trial is working so that we can improve the design. We will list the costs associated with HAP so we can design a cost effectiveness evaluation for the definitive trial. We will use patient samples to investigate immune and inflammation related processes to better understand why some people develop HAP and why some become particularly unwell.
NCT05785442
The current study is an exploratory, phase IIa randomized clinical trial (RCT) aiming to evaluate if early presepsin increase coupled with early initiation of anakinra as an adjunct therapy to the standard-of-care treatment may improve outcomes of community-acquired pneumonia or hospital-acquired pneumonia.
NCT05624684
The objective of this study is to assess the diagnostic performance of multiplex respiratory PCR (PCR-RM) compared to standard microbiological tests and its potential impact on the early adaptation of antibiotic treatment in intensive care patients with severe pneumonia.
NCT05914584
The goal of this clinical trial is to determine the safety (phase II), then efficacy (phase III) of baricitinib plus standard of care (SOC) as compared to SOC alone for the treatment of hospital-acquired pneumonia in patients with a pro-inflammatory profile.
NCT04700202
Single center, retrospective chart review. Patients admitted to MDMC ICU from 4/1/2017 to 6/30/2020 will be identified through the electronic medical record utilizing ICD codes for HAP and VAP.
NCT05418517
Medical condition or disease under investigation: Oromaxillofacial surgery in head and neck cancer Purpose of research: Retrospective data analysis identifying hospital acquired pneumonia in patients who undergo temporary tracheostomy with oromaxillofacial surgery and free flap reconstruction Primary objective: Undertake an adequately powered, robustly designed observational cohort study that describes the rates of hospital acquired pneumonia in patients who undergo a tracheostomy and those that undergo overnight intubation during oromaxillofacial surgery for HNC. Secondary objective: To investigate whether smoking history, respiratory history (COPD, asthma) or size of tumour are associated with an increased risk of developing hospital acquired pneumonia. Number of Subjects/Patients: 193 Study Type: Observational cohort Main Inclusion Criteria: Patients who underwent oromaxillofacial resection with free flap reconstruction and tracheostomy from 1st January 2018 to 31st December 2018. Patients who underwent oromaxillofacial resection with free flap reconstruction and with overnight intubation from 1st January 2014 to 31st December 2014 Statistical Methodology and Analysis: A power calculation has been used to determine the sample size required for statistical analysis of data. Statistical significance for rates of HAP will be tested between the two groups.
NCT04937075
Hospital-acquired pneumonia (HAP) is one of the most frequent complications and the main cause of antibiotics use in hospitalized patients, particularly in intensive care units (ICUs). The latest European and French recommendations for the management of HAP were published in 2017 and 2018. Gram-negative bacilli are frequently identified in this pneumonia. The experts discussed the issue of tailored-empiric antimicrobial therapy. Because delayed antimicrobial therapy is associated with poor outcomes, their conclusion was to reduce the time to deliver proper antimicrobial therapy, but to limit over-use of broad-spectrum molecules. Since delays in microbiological identification hinder the ability of clinicians to streamline therapy, rapid diagnostic with multiplex PCR, which decreases the time to organism identification by 2 days compared to conventional methods, is appealing, especially for gram-negative bacilli. The FilmArray® Lower Respiratory Tract Infection Panel is a rapid multiplex PCR which tests for the most frequently pathogens (18 bacteria including plenty of gram-negative bacilli +5 genes of resistance, and 9 viruses) involved in HAP. The FilmArray® Lower Respiratory Tract Infection (LRTI) Panel has a sensitivity and a specificity of 95% and 99% respectively and can be implemented in a personalized antimicrobial guidance to treat HAP due to gram-negative bacilli. The investigators hypothesized that a rapid multiplex PCR for guidance of empiric antimicrobial therapy, especially for gram-negative bacilli, reduces the time-to-proper antimicrobial therapy and reduces the risk of death of patients suffering of HAP. The investigators aim to assess the efficacy of an antimicrobial stewardship including the results of a rapid respiratory panel multiplex PCR for empiric antimicrobial guidance in patients with hospital-acquired pneumonia due to gram-negative bacilli. The investigators will use a before-after design to test the efficiency of an antimicrobial stewardship including a highly innovative intervention.
NCT00543608
The purpose of this study is to compare the clinical cure rates of two dosing regimens of iclaprim with vancomycin (every 12 hours \[q12h\]) in the treatment of patients with hospital-acquired pneumonia (HAP), ventilator-associated pneumonia (VAP), or health-care-associated pneumonia (HCAP) suspected or confirmed to be due to Gram-positive pathogens.