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NCT ID: NCT04320329 Not yet recruiting - Morquio B Disease Clinical Trials

Natural History of Morquio B and Late-Onset of GM1 Gangliosidosis

Start date: June 1, 2020
Phase:
Study type: Observational

Mucopolysaccharidosis type IVB (Morquio-B disease, MBD) is an autosomal-recessive lysosomal disease caused by mutations in a gene called GLB1. Clinically, Morquio B presents with progressive skeletal deformities involving mostly long bones and spine. While the information on GLB1 mutations associated with MBD is limited, there is a significant overlap in clinical presentation between Morquio B and late-onset GM1 gangliosidosis with both conditions being caused by mutations in the same GLB1 gene. In this study, the investigators plan to collect retrospective data from patients' medical charts, as well as, information from the prospective follow up clinic visits. There will be two study visits with the interval of one year. The study procedures will include a detailed physical exam, bone scans, heart and lung function, physical endurance tests, hearing test, laboratory tests and quality of life surveys. The purpose of this study is to collect data on the natural history of Morquio B and to create a biobank of laboratory samples (blood, urine and skin cells) for future research. This information will improve the understanding of the natural progression of Morquio B disease.

NCT ID: NCT04305990 Not yet recruiting - Feasibility Clinical Trials

Demand-Driven Method for Gas Delivery in a Dental Setting

Start date: March 2020
Phase: N/A
Study type: Interventional

This study compares two methods of gas delivery in a dental setting: 1) demand-driven (DD) and 2) free-flow (FF). Nitrous oxide and oxygen sedation (NOS) is a common form of minimal sedation for adult and paediatric patients undergoing dental procedures. In order for NOS devices to be utilized during dental treatment, dentists must be able to provide gas flow to the patient, and subsequently scavenge used and unused gasses. Gas delivery is via a nasal mask, since the oral cavity must be accessible to the dentist throughout treatment. Current devices for NOS in the dental setting utilize a free-flow gas method, where nitrous oxide and oxygen are released continuously from their tanks. The flow rate is set by the dentist according to the patient's minute ventilation needs, and unused and exhaled gasses are scavenged via the nasal mask. The demand-driven gas flow method, where inspiration triggers gas flow, has been used successfully in other medical settings, such as in obstetrics, medical emergencies, and for patients with chronic obstructive pulmonary disease. However, in these settings the mask used covers both the nose and mouth, and patients can trigger the demand-driven method through inspiration of the nose or mouth. The demand-driven gas flow method has a significant gas-sparing advantage over the free-flow method. With a demand-driven method, the patient dictates the flow rate and gas is only delivered when they are inspiring, compared to the free-flow method which provide gas flow throughout inspiration and expiration. However, the demand-driven method have not been studied in a dental setting where flow can only be triggered through the nose. It is therefore unknown whether it is feasible or comfortable for patients to trigger a demand-driven method nasally when their mouth is open during dental treatment. This study will aim to assess the feasibility and comfort of a nasal demand-driven gas delivery method utilizing 100% oxygen in healthy, adult participants in a simulated dental setting. If the device is feasible and comfortable with 100% oxygen in a simulated dental setting, future research can be conducted to assess its use for NOS for dental treatment.

NCT ID: NCT04291235 Not yet recruiting - Acute Brain Injury Clinical Trials

The NEUROlogically-impaired Extubation Timing Trial (NEURO-ETT)

Start date: April 1, 2020
Phase: N/A
Study type: Interventional

This trial in brain-injured patients will test which of the following will lead to better patient outcomes: (1) an airway management pathway consisting of daily assessments and removal of the breathing tube as soon as patients can breathe on their own and appear able to protect their airway; versus (2) the usual treatment patients would have received if they were not enrolled in this trial.

NCT ID: NCT04288596 Not yet recruiting - Clinical trials for Patent Foramen Ovale

Canadian Adult Congenital Heart Disease Intervention Registry

C-ACHDiR
Start date: April 1, 2020
Phase:
Study type: Observational [Patient Registry]

The ACHDi Registry study will create a foundational database for adult congenital heart disease interventions. This Pan-Canadian Registry will collect clinical and patient-reported information that will enable the evaluation of care processes and outcomes in five most common ACHDi interventions by enabling prospective and retrospective registry-based studies to answer important clinical practice and policy-relevant questions.

NCT ID: NCT04279743 Not yet recruiting - Healthy Clinical Trials

Fatty Acid Metabolism in Carriers of Apolipoprotein E Epsilon 4 Allele: Determining the Blood-to-brain Link

Start date: August 1, 2020
Phase: N/A
Study type: Interventional

In Canada, ~17 millions of adults between 30-64 y old could benefit from a prevention strategy to lower the risk of Alzheimer's disease (AD). Although a lot of epidemiological studies reported positive cognitive outcomes in populations eating fish, there is skepticism about the link between docosahexaenoic acid (DHA), an omega-3 (OM3) fatty acid in fish and prevention of cognitive decline. This is largely because there is a disconnect between epidemiological, molecular and animal studies which generally favor a link between higher DHA intake and cognition whereas clinical DHA and fish oil trial seem not to support such as link. There are several knowledge gaps in this field that might explain why clinical trials were not successful. This project will focus on two major gaps : OM3 fatty acid metabolism and the blood-to-brain DHA link. OM3 supplements in cardiovascular disease have faced the same issues for decades but the more recent trials have now generated the clinical evidence supporting primary and secondary cardiovascular events reduction and a better risk to benefit balance of OM3 drugs compared to statins, for instance. What if, for cognitive decline, the target was missed because the supplement/drug formulations were not appropriately designed to target the brain? The investigators hypothesize that (i) E4 carriers display a faulty packaging of circulating OM3, leading to reduced bioavailability for brain cells, (ii) The use of new OM3 formulation can direct plasma DHA into brain compartments more readily available for the brain, thereby increasing brain DHA concentrations and improving cognition. Studies in mice and humans will be performed to test OM3 metabolism and the blood-to-brain DHA link. Ultimately the information generated in this research project will help to better design clinical trials in term of fatty acid formulation, expected level to reach in the plasma and the brain.

NCT ID: NCT04268836 Not yet recruiting - Clinical trials for Age-related Macular Degeneration

Vision Improvement for Patients With Age-Related Macular Degeneration

AMD
Start date: January 9, 2024
Phase: N/A
Study type: Interventional

The purpose of this study is to determine whether the Optimal Acuity Clear-K® Low Vision Aid System provides a safe and effective treatment to improve vision for patients with age-related macular degeneration.

NCT ID: NCT04241497 Not yet recruiting - Clinical trials for Pulmonary Arterial Hypertension

Home-based Exercise Training in Patients With Pulmonary Arterial Hypertension: Effect on Skeletal Muscular Function and Metabolism

Start date: March 2020
Phase: N/A
Study type: Interventional

Pulmonary Arterial Hypertension has gone from a disease that causes rapid death to a more chronic condition. Yet, improved survival is associated with major challenges for clinicians as most patients remain with poor quality of life and limited exercise capacity. The effects of exercise training on exercise capacity have been largely evaluated and showed an improvement in 6-minutes walking distance (6MWD), peak V'O2. It is also known that exercise program improves quality of life. Maximal volitional and nonvolitional strength of the quadriceps are reduced in patients with Pulmonary Arterial Hypertension and correlated to exercise capacity. Moreover, on the cellular level, alterations are observed in both the respiratory as well as the peripheral muscles. Muscle fiber size has been reported to be decreased in some studies or conversely unaltered in human and animal models. Reduction in type I fibers and a more anaerobic energy metabolism has also been reported, but not in all studies. Likewise, a loss in capillary density in quadriceps of patients with Pulmonary Arterial Hypertension and rats has been reported, but could not be confirmed in other studies. While the impact of exercise training on clinical outcomes such as exercise capacity or quality of life is well known, this data highlight the fact that the underlying causes of peripheral muscle weakness as well as the mechanisms underlying the clinical improvements observed with exercise programs are not completely understood. Improvement of muscle cell metabolism in part via the enhancement of oxidative cellular metabolism and decrease in intracellular lipid accumulation may play a role in improving muscle function and exercise capacity. In this study, we intend to evaluate the impact of a 12 weeks home-based rehabilitation program on peripheral muscle function and metabolism, focusing on lipid infiltration, oxidative metabolism and epigenetic factors that can be involved in metabolic syndrome, in patients with Pulmonary Arterial Hypertension.

NCT ID: NCT04235361 Not yet recruiting - Malaria Clinical Trials

Mobile Point of Care Diagnostic Testing for Ebola Virus Disease in DRC

MobEboDRC
Start date: January 15, 2021
Phase:
Study type: Observational

A mobile suitcase laboratory for EBOV point-of-care (POC) detection at Ebola treatment centers was successfully implemented in Guinea during the large Ebola virus disease (EVD) outbreak in West-Africa 2014-2015. It was shown that isothermal amplification (Recombinase Polymerase Amplification (RPA)) could be efficiently used to test suspect EVD cases and local teams were trained in and successfully deployed with this fast method. In the frame of this project we want to train teams in DRC and expand RPA testing capacity to the differentials recommended by the WHO. Existing RPA assays for all parameters will be included into a multistrip for simultaneous use. This will be integrated with a simple biosafe extraction method. Implementing this approach and testing in the ongoing EVD outbreak will provide teams in DRC with response capacity for future EVD outbreaks.

NCT ID: NCT04228081 Not yet recruiting - Clinical trials for Bacterial Urinary Tract Infection

MicroUDxTM: a Rapid Diagnostic Tool That Will Prevent Death and Disability From Common Infections

MicroUDxTM
Start date: August 1, 2022
Phase:
Study type: Observational

Background & Rational: Antibiotics are a major underpinning of modern medicine. The global rise of antimicrobial resistant (AMR) organisms is a serious world health problem. With few new antimicrobial drugs on the horizon, it is imperative that we develop novel approaches to extend the service life of our existing drugs. AMR is a complex problem that is being driven by a wide range of factors. More than half of the antibiotics prescribed have no medical benefit, and outpatient visits for uncomplicated urinary tract infections (UTIs) are a major contributor to this problem. Recent studies have shown that nearly half of people treated for UTIs receive the wrong frontline drug and in 75% of patients, the duration of therapy is inappropriate. Limitations in the current diagnostic technology make it impossible to identify UTI pathogens and measure their antibiotic sensitivities during the short out-patient clinical visits that are typical for most UTI patients. These circumstances result in the inappropriate use of stronger than necessary or inappropriate antimicrobials. The aim of this study is to develop and evaluate a system that can detect bacteria in urine and find the best antibiotic in under 4 hours, thus enabling a rapid diagnosis and use of the most appropriate and cost-effective antimicrobial agent for the agent detected.

NCT ID: NCT04209062 Not yet recruiting - Medical Devices Clinical Trials

Validation of a High-Quality Low-Cost Open-Source Electrocardiograph

Start date: January 1, 2023
Phase: N/A
Study type: Interventional

The high price of electrocardiograph (ECG) devices - with most hospital-grade devices costing thousands of dollars - is one of the barriers to access of this vital technology. There is a shortage of ECG devices in underserved areas and the devices available on the market currently are not adequate to solve this problem. Our solution is a low-cost high-quality open-access ECG device. This study intends to validate the study ECG device in human patients by demonstrating equivalence between the study ECG device and a gold standard device.