View clinical trials related to Pneumonia.
Filter by:SARS-CoV-2, the virus that causes COVID-19, is currently a global public health problem, declared a pandemic by the World Health Organization, which today has more than one million deaths in the world, of which , 30,000 approximately belong to Colombia, being the country number 11 with the highest number of deaths. The most common symptoms related to this disease are fever, cough, dyspnea, myalgia, headache, diarrhea and rhinorrhea. COVID-19 is characterized by immune system dysfunction and hyperinflammation causing acute respiratory distress syndrome, macrophage activation, and coagulopathy. The clinical course for SARS-CoV-2 in most cases is mild, but approximately 14% of cases can be severe. In pneumonia caused by SARS-CoV-2, the lung lining is known to alter the composition of the lung microbiome, in addition to lymphocyte damage that can promote the growth of bacteria to initiate bacterial pneumonia, and it is estimated that the prevalence of coinfection / superinfection reaches 50% among deaths from COVID-19. Coinfection between different microorganisms and SARS-CoV-2 is a serious problem in the COVID-19 pandemic, and there is still little information on this. It is for this reason that the researchs propose to develop this research project that will allow to understand the possible mechanisms associated with the development of bacterial coinfection / superinfection in patients diagnosed with COVID-19, which will allow expanding the panorama of knowledge towards a better and adequate treatment in these patients, as well as detection of biomarkers or clinical phenotypics that may be useful in the diagnosis, based on evidence. It is important to note that these results are of clinical importance since we will try to identify biomarkers or changes in the lung microbiome that allow doctors to early identify patients at risk of developing coinfection and thus initiate early treatments or preventive measures, which allow the improvement of clinical outcomes in patients. Results will be presented in a timely manner at national and international conferences and in peer-reviewed, indexed, high-impact journals.
Worldwide emergence of extended-spectrum β-lactamase-producing Enterobacteriaceae (ESBL-E) had become a major problem in ICU, with at least 10% of incidence at the admission in Europe. A systematic rectal swab is used in 70% of French ICU to detect intestinal ESBL-E carriage The relationship between intestinal carriage and ICU-acquired infection is not perfectly known. The investigators conducted a five years study monocentric retrospective observational cohort in patients with presence of extended-spectrum β-lactamase-producing Enterobacteriaceae in systematic rectal swabs to investigate which type of infections and which bacteria are involved. The investigators also collect data about antibiotherapy used to treat these infections.
A parallel, prospective, double-blind, placebo-controlled clinical trial will be conducted in the population affiliated to EPS SURAMERICANA S.A. with positive test for antigen and PCR for SARS-CoV-2. Participants will be randomly assigned in a 1: 1 ratio to the intervention group or the control group using a sequence of random numbers. The patients included will be those with less than 7 days from the onset of symptoms, and without evidence of serious disease. One group will be assigned oral ivermectin therapy at a dose of 600 mcg/kg every 12 hours for 5 consecutive days, and the other group will received placebo. A minimum sample size of 483 patients for each arm was calculated to observe differences. All randomized patients will be included in the analysis according to the randomization arm (intention-to-treat analysis). The primary objective is to evaluate the efficacy of ivermectin in the prevention of severe disease, reduction in the rate of hospitalization, reduction of ICU stay, and mortality. This evaluation will be carried out up to 28 days after the intervention begins. Given the public health emergency, the study is expected to be completed in a period of 6 months from the INVIMA approval.
Coronavirus Disease 19 (COVID-19) is a worldwide pandemic and a major global health concern which is caused by Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2). The newly emerged Coronavirus disease 2019 (COVID-19), which was first identified in Wuhan, China, has swept through 219 countries, killing a staggering number of people. According to WHO reports, the number of deaths had risen to 3,155,168by March 30, 2021, out of 149,910,744 confirmed cases. In Bangladesh, the outbreak has infected over 745,322confirmed cases, with over 11,053 deaths reported. Though the patient may be asymptomatic or present with mild symptoms, mortality is quite high in the severe form of the disease which often progresses to critical phase presented as Acute Respiratory Distress Syndrome (ARDS). This is due to exaggerated response of immune system to the virus termed as cytokine storm syndrome (CSS). There is currently no effective antiviral therapy for SARS-CoV-2 and supportive care is the mainstay of therapy. As a result we are still searching for a better therapeutic agent which will help in treating Covid-19 cases in terms of mortality, morbidity, oxygen requirement, length of stay in hospital. Co-trimoxazole (composed of one-part Trimethoprim and five parts Sulfamethoxazole)is a sulphur containing anti-folate bactericidal drug which is being used for over 60 years for various indications esp. respiratory tract infections. It is known to have immunomodulatory and anti-inflammatory properties that may help to prevent progression to critical phase and cytokine storm syndrome in severe COVID-19 patients. It acts rapidly when given in high dose due to its better bioavailability and lung penetration. Low cost and a good safety profile can make it an ideal candidate for treatment of COVID -19 in a low resource country like Bangladesh. Methods and materials: This interventional double-blind place controlled randomized trial will be conducted in the department of medicine at Bangabandhu Sheikh Mujib Medical University (BSMMU) for a duration of 6 months following approval of this protocol. It will recruit at least 94 consecutive adults (18 years or older) patients with clinically suspected COVID-19 and severe illness as per WHO criteria. After taking informed written consent patients will be randomly assigned in a 1:1 ratio to either oral high dose co-trimoxazole in addition to standard therapy or placebo along with standard therapy. Baseline characteristics, changes in the physiological and biochemical parameters like (SpO2/FiO2 ratio, respiratory rate, body temperature and C - reactive protein), length of hospital stay, side effects of drugs, requirement for ventilatory support (non-invasive and invasive ventilation) and 28- day mortality between the two groups will be compared. Data will be collected from case record forms, anonymised and stored securely in a secure online web based portal. Statistical analysis will be performed using t-test or Mann -Whitney U test or Wilcoxon signed rank test for continuous variables and Chi- square test or Fisher's exact test for categorical variables. Survival will be assessed by the Kaplan-Meier method. Comparisons between two groups will be performed using the log-rank test. A p-value of < 0.05 will be considered to be significant. The statistical software SPSS version 25 will be used for the analysis. Conclusion If the results from this clinical trial demonstrate the beneficial effects of high co-trimoxazole in patients with severe COVID-19 it could help to reduce the need for respiratory support for thousands of patients, saving valuable lives and decrease the burden of healthcare system in countries with limited resources.
This is a Pilot study for evaluating the feasibility, security and efficacy of the use of Cypropheptadine, an antihistaminic and antiserotonin drug, as an adjunct of the standardized treatment in a population of patient who are hospitalized and requiring oxygen therapy for COVID-19.
Objective of the study is to evaluate the effect of Taxifolin Aqua therapy on the indicators of respiratory function, the state of the arterial wall, the contractile function of the myocardium, as well as to assess the effect of Taxifolin Aqua therapy on markers of biological age, quality of patients life.
Pneumocystis jirovecii pneumonia (PJP) is an opportunistic fungal infection of immunocompromised hosts which causes in significant morbidity and mortality. The current standard of care, trimethoprim-sulfamethoxazole (TMP-SMX) at a dose of 15-20 mg/kg/day of TMP, is associated with serious adverse events, including hypersensitivity reactions, drug-induced liver injury, cytopenia, and renal failure occurring among 20-60% of patients. The frequency of adverse events increases in a dose dependent manner and commonly limits the use of TMP-SMX. Reduced treatment doses of TMP-SMX for PJP reduced ADEs without mortality differences in a recent meta-analysis of observational studies. We therefore propose a Phase III randomized, placebo-controlled trial to directly compare the efficacy and safety of low dose (10 mg/kg/day of TMP) compared to the standard-of-care (15 mg/kg/day) among patients with PJP for the primary outcome of death, new mechanical ventilation, and change of treatment.
Prone position in non-intubated patient has shown some respiratory physiological benefits. Prone positioning in patient intubated with ARDS has shown hemodynamic benefits. We aim to compare hemodynamic assessment before and after prone positioning in non-intubated patient with COVID 19 pneumonia. The study hypothesis is that prone positioning in non-intubated patient improve right ventricular preload, reduce afterload and increase Cardiac index compared to supine position.
This randomized controled open label clinical trial is to evaluate the effect of Cyproheptadine on the clinical course of patients presenting a severe SARS-COV 2 pneumonia.
Inflammatory diseases favour the onset of venous thromboembolic events in hospitalized patients. Thromboprophylaxis with a fixed dose of heparin/low molecular weight heparin (LMWH) is recommended if concomitant inflammatory disease. In severe acute respiratory syndrome coronavirus 2 (SARS-CoV2) pneumonia an inflammation-dependent thrombotic process occurs and platelet activation may promote thrombosis and amplify inflammation, as indicated by previous experimental evidence, and the similarities with atherothrombosis and thrombotic microangiopathies. Antiplatelet agents represent the cornerstone in the prevention and treatment of atherosclerotic arterial thromboembolism, with limited efficacy in the context of venous thromboembolism. The use of acetylsalicylic acid may improve inflammation and respiratory function in humans as indicated by the results of observational studies. There are no validated protocols for thrombosis prevention in Covid-19. There is scientific rationale to consider acetylsalicylic acid for the prevention of thrombosis in the pulmonary circulation and attenuation of inflammation. This is supported by numerous demonstrations of the anti-inflammatory activity of antiplatelet agents and the evidence of improvement in respiratory function both in human and experimental pathology. The hypothesis underlying the present study project is that in Covid-19 platelet activation occurs through an inflammation-dependent mechanism and that early antithrombotic prophylaxis in non-critical patients could reduce the incidence of pulmonary thrombosis and respiratory and multi-organ failure improving clinical outcome in patients with SARS-CoV2 pneumonia. The prevention of thrombogenic platelet activity with acetylsalicylic acid could be superior to fixed dose enoxaparin alone. The proposed treatment is feasible in all coronavirus disease 2019 (COVID-19) patients, regardless of the treatment regimen (antivirals, anti-inflammatory drugs), except for specific contraindications. To this aim, the investigators a randomised, placebo-controlled, double blind, parallel arms study to investigate the potential protection of acetylsalicylic acid towards the progression of lung failure in patients admitted to a medical ward for SARS-CoV-2 pneumonia. A 15-day treatment period is considered. Primary endpoint is the occurrence of one of the following events: admission to an intensive care unit, requirement of mechanical ventilation, PaO2/FiO2 less than 150 mm Hg.