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Homocystinuria clinical trials

View clinical trials related to Homocystinuria.

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NCT ID: NCT06247085 Recruiting - Homocystinuria Clinical Trials

A Study to Investigate Efficacy and Safety of Pegtibatinase Compared With Placebo in Participants ≥12 to ≤65 Years of Age With Classical Homocystinuria (HCU) Due to Cystathionine Beta Synthase Deficiency Receiving Standard of Care Treatment

HARMONY
Start date: December 28, 2023
Phase: Phase 3
Study type: Interventional

The purpose of this study is to measure efficacy and safety of pegtibatinase treatment compared with placebo in participants with classical HCU receiving standard of care who have not achieved tHcy target levels. Study details include: - Total Study duration: up to 38 weeks - Screening: - Initial Screening duration: up to 4 weeks - Pre-treatment Diet Standardization Period duration: up to 6 weeks - Blinded Treatment Duration: 24 weeks - 2-week blinded dose titration period - 22-week blinded assessment period - Safety Follow-Up: 4 weeks after last dose (as applicable for those not enrolling in the long term extension study, ENSEMBLE)

NCT ID: NCT05910151 Recruiting - Clinical trials for Ornithine Transcarbamylase Deficiency

Selective Screening of Children for Hereditary Metabolic Diseases by Tandem Mass Spectrometry in Kazakhstan

Start date: October 3, 2022
Phase:
Study type: Observational [Patient Registry]

Inborn errors of metabolism (IEM) are not have specific clinical signs, they masquerade as other diseases, and are difficult to diagnose using only clinical manifestations or routine laboratory tests. IEM most commonly manifest in early infancy and childhood. Despite the fact that most IEM are rare in the population, they occupy one of the first places in the structure of childhood pathology, early infant mortality and disability. IEM often remains undiagnosed, while timely diagnosis and timely treatment started can prevent severe systemic damage leading to death and disability. The appointment of a special treatment (diet therapy, cofactors, enzyme replacement therapy) prevents or significantly inhibits the development of the pathological process, especially if the diagnosis is made in the early stages of the disease. To start pathogenetic treatment as early as possible, it is necessary to diagnose IEM as accurately and as early as possible. Among the diseases included in mass screening programs IEM are especially important due to the development of disability and early mortality in the absence of timely diagnosis and treatment, as well as a high risk of recurrence in burdened families. In this connection, the main goals of mass screening - the prevention of disability in children and the reduction of early infant mortality - dictate the need to introduce modern technologies for preclinical diagnosis of IEM. Based on the results of the study, it is planned to scientifically substantiate the need for the introduction of selective screening of children for hereditary metabolic diseases using the technology of tandem mass spectrometry in the Republic of Kazakhstan for timely diagnosis, therapy of IEM and prevention of disability. The introduction of a selective newborn screening program for IEM should always be preceded by a study aimed at studying the prevalence of the disease in a certain region, determining regional reference values of the studied metabolites. Local incidence and outcome data can be used to persuade health officials to prioritize screening in health care spending. The main scientific question and hypothesis of the project is whether it is necessary to introduce tandem mass spectrometry technology in the neonatal screening program for IEM.

NCT ID: NCT05687474 Recruiting - Cystic Fibrosis Clinical Trials

Baby Detect : Genomic Newborn Screening

Start date: September 1, 2022
Phase:
Study type: Observational

Newborn screening (NBS) is a global initiative of systematic testing at birth to identify babies with pre-defined severe but treatable conditions. With a simple blood test, rare genetic conditions can be easily detected, and the early start of transformative treatment will help avoid severe disabilities and increase the quality of life. Baby Detect Project is an innovative NBS program using a panel of target sequencing that aims to identify 126 treatable severe early onset genetic diseases at birth caused by 361 genes. The list of diseases has been established in close collaboration with the Paediatricians of the University Hospital in Liege. The investigators use dedicated dried blood spots collected between the first day and 28 days of life of babies, after a consent sign by parents.

NCT ID: NCT05051657 Recruiting - Phenylketonurias Clinical Trials

Evaluation of the Express Plus Range

express plus
Start date: June 14, 2021
Phase: N/A
Study type: Interventional

A prospective, open label, acceptability study to evaluate PKU, MSUD, HCU, TYR and GA express plus in the dietary management of 40 patients with IEM. The following parameters will be assessed: adherence to prescribed dietary intakes, palatability, usability, gastrointestinal tolerance, clinically relevant routine biochemical parameters, timeframe to transition and contribution of the express plus range to overall protein substitute intake over a 28 day period.

NCT ID: NCT02998710 Recruiting - Clinical trials for Homocystinuria Due to CBS Deficiency

Natural History Study of Homocystinuria Caused by Cystathionine Beta-Synthase Deficiency (ACAPPELLA)

Start date: January 2017
Phase:
Study type: Observational

The purpose of the study is to characterize the clinical course of homocystinuria in pediatric and adult patients aged 1 to 65 years under current clinical management practices