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Pneumonia clinical trials

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NCT ID: NCT04398303 Not yet recruiting - COVID-19 Pneumonia Clinical Trials

ACT-20 in Patients With Severe COVID-19 Pneumonia

Start date: May 2020
Phase: Phase 1/Phase 2
Study type: Interventional

The primary objective of this study is determine the safety and efficacy of ACT-20-MSC (allogenic human umbilical derived mesenchymal stem cells) and ACT-20-CM (allogenic human umbilical derived mesenchymal stem cells in conditioned media) in patients with moderate to severe COVID-19 pneumonia.

NCT ID: NCT04397497 Not yet recruiting - Covid-19 Clinical Trials

Mavrilimumab in Severe COVID-19 Pneumonia and Hyper-inflammation (COMBAT-19)

COMBAT-19
Start date: May 22, 2020
Phase: Phase 2
Study type: Interventional

This study is a prospective, phase II, multi-center, randomized, double-blind, placebo-controlled trial to evaluate the efficacy and safety of mavrilimumab in hospitalized patients with acute respiratory failure requiring oxygen supplementation in COVID- 19 pneumonia and a hyper-inflammatory status. The study will randomize patients to mavrilimumab or placebo, in addition to standard of care per local practice. The total trial duration will be 12 weeks after single mavrilimumab or placebo dose.

NCT ID: NCT04397471 Not yet recruiting - Clinical trials for Healthy Volunteers for Bone Marrow Donation

A Study to Collect Bone Marrow for Process Development and Production of BM-MSC to Treat Severe COVID19 Pneumonitis

COMET20d
Start date: May 2020
Phase:
Study type: Observational

The COVID-19 pandemic, commonly referred to as "coronavirus", first began in the city of Wuhan, China in December 2019. This virus has since spread globally, with infections reported in nearly every country. COVID-19 targets the body's respiratory system, where infections can be found in the nose, throat and lungs. The effect of COVID-19 infection is very variable, where many people might not know that they have been infected and have recovered from COVID-19. However, COVID-19 infection can cause people to have difficulty breathing. This can be severe enough to require hospitalisation and potentially intensive care treatment. While they are being treated in hospital, COVID-19 infected patients can be found to have inflamed tissue in their lungs (referred to medically as "pneumonitis"). This inflammation is thought to be caused by their body's immune systems overacting to the infection rather than the COVID-19 virus itself. By potentially dampening down this overreaction of their immune system, it is hoped that COVID-19 patients with inflamed lungs have better and quicker chance to survive. Mesenchymal stromal cells (MSCs) have been shown to have anti-inflammatory and healing properties on injured tissue. MSCs have been trialled in various diseases but have not yet been tested on patients with COVID-19. In this study, the investigators will obtain bone marrow from healthy volunteers to develop a cell-based treatment for COVID-19-related pneumonitis. The investigators will also determine whether it is feasible to recruit bone marrow donors in a clinically useful timeframe to treat COVID-19 patients. A future trial, COMET20, will use the bone marrow-derived MSCs (BM-MSCs) manufactured in COMET20d to treat COVID-19 patients suffering with pneumonitis, to determine whether the BMMSCs can reduce the likelihood for mechanical ventilation and reduce hospitalisation.

NCT ID: NCT04395066 Not yet recruiting - Diagnosis Clinical Trials

Molecular Diagnosis and Prognosis of Severe Pulmonary Infection Immunosuppressed Hosts

Start date: June 1, 2020
Phase:
Study type: Observational [Patient Registry]

Serious pneumonia is a serious inflammation of the lungs caused by various pathogens, resulting in severe bacteraemia or toxemia, which in turn causes blood pressure drop, shock, blurred consciousness, restlessness, delirium and coma, etc., and requires intensive care and treatment in intensive care unit (ICU) because of its seriousness. There is an upward trend in the number of clinically immunosuppressed host patients, including long-term use of glucocorticoids for rheumatoid immune diseases and kidney diseases, tumor chemotherapy, organ transplantation, etc. A huge risk for these patients is the diagnosis and treatment of infections, especially lung infections. We have previously observed a significant increase in mortality from severe pneumonia in immunosuppressed patients, and our recent analysis of 204 patients with novel coronavirus pneumonia found that low lymphatic counts, immunosuppression, etc. were independent risk factors for death in patients. Early diagnosis and timely treatment are the main means to reduce the mortality rate of severe pneumonia. CD55 is an important complement regulatory protein that inhibits C3 and C5 activation by blocking the formation and accelerating the decay of new C3 and C5 convertases, both of which mediate the downstream action of all three complement activation pathways, and CD55 protects host cells from complement attack. Our previous study found that CD55 was significantly elevated in patients with severe pneumonia. Therefore, this project proposes "Early diagnosis of severe pneumonia based on combination of biomarkers with new generation pathogenesis and early clinical manifestations". It is proposed to validate the predictive effects of recently discovered markers such as CD55, HBP and CD64 on severe pneumonia through prospective single-center clinical studies, explore the establishment of new predictive models for early diagnosis of severe pneumonia, and optimize the diagnosis and treatment strategy of severe pneumonia, and provide new ideas for accurate treatment of severe pneumonia.

NCT ID: NCT04393051 Not yet recruiting - Covid-19 Clinical Trials

Baricitinib Compared to Standard Therapy in Patients With COVID-19

BARICIVID-19
Start date: May 20, 2020
Phase: Phase 2
Study type: Interventional

There is urgent need of an effective therapy for Covid-19. To date, the best treatment of SARS-CoV-2 infection is unknown. Baricitinib has been identified as potential treatment for 2019-nCoV acute respiratory disease, because of its immunomodulating and hypothesized antiviral activity. This is a multicenter randomized clinical trial that aims to evaluate the efficacy and safety of baricitinib in patients with SARS-CoV2 pneumonia. Patients will be randomized to receive or not baricitinib as adjunctive therapy. All patients will continue to receive the ongoing standard therapy: chloroquine/idrossichloroquine and low-molecular weight heparin (LMWH) eventually associated with ritonavir/lopinavir or darunavir/ritonavir will be allowed for all included patients. The primary endpoint measure is the efficacy of baricitinib in reducing the number of patients requiring invasive ventilation after 7 and 14 days of treatment. Secondary endpoints will be mortality rates and toxicity of baricitinib.

NCT ID: NCT04390061 Not yet recruiting - COVID-19 Clinical Trials

TOFAcitinib Plus Hydroxycloroquine vs Hydroxycloroquine in Patients With COVID-19 Interstitial Pneumonia

TOFACoV-2
Start date: June 2020
Phase: Phase 2
Study type: Interventional

Multifocal interstitial pneumonia represents the most common cause of admission in intensive care units and death in SARS-CoV2 infections. In our Hospital, similarly to what reported in literature, up to 25% of admitted patients with pneumonitis requires mechanical ventilation or oro-tracheal intubation within 5-10 days. No established treatment is available for this condition. Preliminary evidence is accumulating about the efficacy of an aggressive treatment of the corona virus-induced inflammation and, in particular, investigators believe that blocking JAK1 is clinically rewarding in down-regulating IL-6 driven inflammation in patients with corona-virus infection. Thus, investigators designed a randomized controlled trial to test the hypothesis that adding Tofacitinib to the standard treatment in the early phase of COVID related pneumonitis could prevent the development of severe respiratory failure needing mechanical ventilation.

NCT ID: NCT04376359 Not yet recruiting - Stroke Clinical Trials

The Effectiveness of Hyperbaric Oxygen Therapy on Pneumonia Complicating Stroke

Start date: June 2021
Phase: N/A
Study type: Interventional

To investigate the evidence for the integration of hyperbaric oxygen therapy (HBOT) as part of interdisciplinary stroke rehabilitation.

NCT ID: NCT04370223 Not yet recruiting - COVID-19 Pneumonia Clinical Trials

Ozone Auto-hemotherapy for COVID-19 Pneumonia

COVID-OZONE
Start date: May 25, 2020
Phase: Phase 3
Study type: Interventional

This is a multicenter, randomized, controlled, open-label clinical trial testing the use of ozone auto-hemotherapy in hospitalized patients with Covid-19 pneumonia. Eligible patients will be randomly assigned to receive either ozone auto-hemotherapy plus standard treatment, or standard treatment alone. Patients in the ozone auto-hemotherapy group will receive treatment mixing 100-200ml of blood with ozone at a concentration of 40 μg / mL with a gas volume of 200 ml. Treatment will occur every 12h during 5 days. Standard treatment will be the one used in each hospital participating in the trial. All analyses will be done according to the intention-to-treat principle

NCT ID: NCT04363060 Not yet recruiting - COVID-19 Pneumonia Clinical Trials

Azithromycin+Amoxicillin/Clavulanate vs Amoxicillin/Clavulanate in COVID19 Patients With Pneumonia in Non-intensive Unit

AziA
Start date: April 30, 2020
Phase: Phase 3
Study type: Interventional

The global pandemic of novel coronavirus disease 2019 (COVID-19) caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) began in Wuhan, China, in December 2019, and has since spread worldwide.1 As of April 14, 2020, there have been more than 1.5 million reported cases and 124 000 deaths in more than 200 countries. A recent open-label nonrandomized French study reporte that addition of azithromycin to hydroxychloroquine in 6 patients resulted in numerically superior viral clearance (6/6, 100%) compared with hydroxychloroquine monotherapy (8/14, 57%) or control (2/16, 12.5%). Azithromycin alone has never been tested, whereas azithromycin has immunomodulating and anti-inflammatory properties that could theoretically prevent or limit secondary worsening. Our hypothesis is that azithromycin combined with amoxicillin/clavulanate will be superior to amoxicillin/clavulanate alone to obtain viral clearance at Day 6 in COVID-19 patients with pneumonia and hospitalized in a non-intensive care unit ward.

NCT ID: NCT04357522 Not yet recruiting - Clinical trials for Pneumonia, Pneumococcal

Immunogenicity and Safety Study of 15-Valent Pneumococcal Conjugate Vaccine in 2-month-old and 3-month-old Healthy Volunteers

Start date: July 2020
Phase: Phase 3
Study type: Interventional

The purpose of this study is to evaluate Immunogenicity and safety of 15-Valent Pneumococcal Conjugate Vaccine in healthy volunteers aged 2 and 3 months.