There are about 25435 clinical studies being (or have been) conducted in United Kingdom. The country of the clinical trial is determined by the location of where the clinical research is being studied. Most studies are often held in multiple locations & countries.
Interstitial lung disease (ILD) is characterised by inflammation and scarring of the lung and is the leading cause of death in patients with systemic sclerosis, and contributes significantly to morbidity and mortality in many other connective tissue diseases (CTDs) such as polymyositis/dermatomyositis and mixed connective tissue disease. When ILD is extensive and/or progressive, immunosuppressive medication is often required to stabilize lung disease and alleviate symptoms. Current standard care for CTD associated ILD is extrapolated from studies performed in individuals with systemic sclerosis and comprises low dose corticosteroids and intravenous cyclophosphamide followed by oral azathioprine. In some individuals even this intensive immunosuppression is insufficient to prevent deterioration, and in a significant minority of affected individuals this results in respiratory failure and death. Rituximab has recently been reported as an effective 'rescue therapy' for stabilizing and even improving ILD in this patient group. Based on observations gained from this experience, the investigators believe that rituximab is a potential important alternative to current best therapy for this patient group. This study has therefore been initiated to evaluate the efficacy of rituximab (compared with standard therapy) in patients with progressive CTD related ILD.
The most common forms of renal replacement therapy currently in use are high flux haemodialysis (HF-HD) and haemodiafiltration (HDF). Although these techniques appear similar to the patient, there are important differences in what happens to the blood as it travels through the dialysis machine. During HDF, the machine controls hydrostatic pressure across the dialyser to remove additional water together with toxins from the blood and this fluid volume is continually replaced with an ultra-pure solution. HDF has a theoretical advantage removing more waste substances, especially larger molecules, from the blood than HF-HD which may be of benefit to the patient in the medium to long term.Despite the theoretical advantages, trials have so far been unable to find any significant difference in death rates or the development of health problems among patients on HDF or HF-HD. It is therefore important to examine other factors which may help doctors and patients to decide which treatment to use. The investigators have designed a study which aims to answer three main questions: 1. Does HDF make patients feel better? 2. Is blood pressure more stable on HDF in comparison with HF-HD? 3. Are Phosphate levels and other blood parameters better controlled with HDF than HF-HD? The investigators will do this by randomly assigning patients on HF-HD to receive 2 months of either HF-HD or HDF with as equivalent treatment prescriptions as possible and without the patient knowing which treatment they are receiving. After two months the patients will switch to the alternative form of dialysis for a further two months. During the study the investigators will ask the patients how long it took them to recover from the preceding session of dialysis, assess the frequency of symptomatic low blood pressure and also perform blood tests at set intervals to measure specific blood parameters.
This research study is being done to see how well the JetTouch Needle-Free Endoscopic Injection System is able to deliver a solution safely into the bladder wall. The JetTouch Needle-Free Endoscopic Injection System is a jet injector that allows fluids to be injected into the bladder without using a needle. It is hoped that this method will provide a reliable and consistent method to deliver drugs into the bladder wall.
This study is conducted globally. The aim of this observational study is to investigate the incidence of specific adverse drug reactions associated with the use of recombinant factor XIII (NovoThirteen®) in patients with congenital FXIII A-subunit deficiency (congenital FXIII deficiency), comprising FXIII antibodies, allergic reactions, embolic and thrombotic events and lack of therapeutic effect. The study will aim at observing all patients exposed to NovoThirteen® in the EU, and additional patients from selected non-EU countries. Recombinant FXIII (rFXIII) is registered in EU and Switzerland as NovoThirteen® and in Canada as Tretten®.
Recruitment to phase I of the PANTHER trial is complete. Phase II, is to evaluate the best overall response rate for AZD8931 + FOLFIRI treatment.
More than 8000 babies born >8 weeks early or weighing less than 1500g at birth in the United Kingdom annually are at risk of a serious eye problem - retinopathy of prematurity (ROP). Less than 1 in 10 need treating, but to identify these all of them require eye examinations 1-2 weekly from 5 weeks. These tests are uncomfortable, upsetting for families, and cost considerable time and money. There is now a new urine test that might help identify babies with the highest risk of developing significant ROP. This cheap test appears to predict which babies need treatment and could avoid invasive eye examination in thousands of babies. The test has so far only been used in 136 babies. It accurately predicted ROP, but 136 babies cannot change practice. We need to test more babies including in the UK. This study is designed to test >300 UK babies to see how accurately urine levels of NTproBNP predict development of ROP needing treatment. We will also pool our data with other researchers across Europe testing the same test to identify the best 'cut'-off' value for this test. In the future babies with urine levels of this chemical lower than this cut-off level would not need invasive eye examinations. If this test works as we hope it will many babies will avoid repeated painful eye tests, and their families will be saved the stress of watching this being done, by replacing these with a simple easy cheap pain free urine test. There will be substantial savings in health care costs that could be used to improve other aspects of care. In resource poor settings without an expert ophthalmologist babies could be screened for ROP that currently cannot be screened. We hope to demonstrate this to be a family-friendly, achievable intervention that positively impacts on the lives of babies and families experiencing neonatal intensive care.
We are interested in developing new and better ways of diagnosing the cause of lower respiratory tract infections including pneumonia. Currently we find the causal bug (bacteria or virus) in less than 50% of patients with pneumonia. A potential way to better find the bug responsible may include checking for bugs in the nose by a nasal wash or swab. Better diagnostics would allow more targeted antibiotic therapy and in the future this technique may be used as a way of checking the efficiency of new vaccines. We are recruiting both patients with respiratory infections and also a 'control' group of patients admitted to hospital who do not have respiratory infection. We need to have access to your medical history information to make sure you are eligible and suitable for the study. If you participate in the study, it is important that the study doctors continue to have access to your personal Investigator Designation Contact telephone Dr Andrea Collins PhD student/research SpR xxxxxxxxxxxxx Carole Hancock Research nurse 0151 706 4856 Prof Stephen Gordon Principle Investigator 0151 705 3169 NW PIL V1.3: October 2012 REC ref: 12/NW/0713 information so you can be followed up properly and so we can contact you during the study if needed. Patients in both groups will have a nasal wash (or swab), blood (30mls = 6 teaspoons) and urine taken on the day of recruitment and a nasal wash (or swab) and blood (30mls = 6 teaspoons) taken 6 weeks later (this is likely to be as an out-patient at the Royal Liverpool, in extreme circumstances this will occur at the patient's home).
This multicenter, double-blind, placebo-controlled, randomized study will evaluate the efficacy and safety of the addition of bevacizumab treatment to lomustine (in 2nd-line [2L] treatment) and SOC (in 3rd-line [3L] and subsequent lines of treatment) following first-line disease progression (PD1) in participants with newly diagnosed glioblastoma. All enrolled participants will receive 1L treatment with radiotherapy, temozolomide, and bevacizumab. At PD1, eligible participants will be randomized (1:1) to receive 2L treatment with either bevacizumab plus lomustine or placebo plus lomustine. After second-line disease progression (PD2), participants will receive 3L treatment and will continue blinded bevacizumab or placebo with the addition of an SOC agent. Following third-line disease progression (PD3), participants will receive subsequent lines of treatment and will either continue blinded bevacizumab or placebo (at the discretion of the investigator), or switch to open-label bevacizumab (at the choice of the participant).
The University of Sheffield is one of the leading centres in the world for basic and translational research with inhaled gas MRI, which provides lung images with unprecedented spatial and temporal resolution. Our previous work demonstrated that inhaled gas MRI can provide significant clinical information for lung cancer radiotherapy planning and post-treatment evaluation. Building upon this unique experience, a multidisciplinary team will conduct an inhaled gas and proton lung MRI study that will address two of the major clinical problems faced by lung cancer patients treated with radiotherapy. 1. Normal lung tissue is often damaged by the curative radiation dose. The investigators hypothesise that regional ventilation-perfusion lung function imaging with inhaled gas and proton MRI before and after treatment will help to lower the risk of radiation-induced lung injury and help to detect such damage at an early stage. 2. Identification of the extent of cancerous tissue is error-prone when planning treatment from CT images alone. The investigators hypothesise that advanced proton MRI techniques will improve the identification of tumour volume, which is critical to successfully targeting the radiation dose. To achieve these goals, image acquisition and image processing methods will be tested with a study of 20 patients. Results from this study will make an important contribution to improving the treatment of lung disease which is one of the key research priorities of the NHS.
The rationale for this study is to facilitate future Phase II/III clinical trials and improve outcome for patients suffering residual disability after an ischaemic stroke. Main study objectives are to document and better define the prognostic characteristics of residual disability in patients following an ischaemic stroke, to inform the design of small efficient Phase II studies when screening potentially efficacious interventions for signals of activity which merit further development and to establish a pool of patients who may be approached to participate in future clinical trials in the ischaemic stroke setting.