View clinical trials related to Phenylketonurias.
Filter by:Patients with phenylketonuria (PKU) have an inborn error in the metabolism of the amino acid phenylalanine (Phe) and thus must follow a strictly controlled protein-restricted diet from early infancy. This protein-restricted diet is devoid of natural dietary sources of n-3 long chain polyunsaturated fatty acids (LC-PUFA), such as eggs, meat, milk or fish. Therefore, blood concentrations of n-3 LC-PUFA, especially of docosahexaenoic acid (DHA) are reduced in PKU children compared to healthy controls. DHA availability is considered important for optimal neurological function. Previous studies have shown that neural function of PKU children is improved by high dose supplementation of fish oil providing DHA, as shown by significant improvements of both visual evoked potential latencies and of fine motor skills and coordination, but no dose response relationship has been established so far. This multicentric double-blind randomized trial aims at determining quantitative DHA requirements for optimal neural function in PKU children. Patients with classical PKU from several major treatment centers in Europe will be randomized to receive between 0 and 8 mg of DHA per kg body weight daily for a duration of 6 months. Biochemical (fatty acid composition of plasma phospholipids, lipoprotein metabolism and metabolic profiles), and functional testing (visual evoked potentials, fine motor skills, cognitive function and markers of immune function) will be performed at baseline and after 6 months. Intake per kg body weight will be related to outcome parameters and thus a possible dose response relationship will be defined. The results from this study are expected to contribute to the improvement of the diet of PKU patients, but they also have the potential to help defining quantitative DHA needs of healthy children. The primary hypothesis is that supplementation with DHA improves visual function in children with PKU.
The purpose of this study is to determine if taking supplemental DHA improves measures of processing speed and executive function in teen and adult women with PKU.
The investigators will investigate the effect of blood phenylalanine on Kuvan responsiveness in the same patients with PKU when their blood phenylalanine concentrations are altered by diet. Lowering blood phenylalanine concentrations in Kuvan non-responsive patients with PKU will increase the frequency of Kuvan responsiveness.
This multicenter, open label study is designed to evaluate the safety of Kuvan® and its effect on neurocognitive function, blood Phe concentration, and growth in children with PKU who are 0-6 years old.
Sapropterin dihydrochloride (subsequently referred to as sapropterin) (Kuvan®) was approved by the FDA for the treatment of hyperphenylalaninemia in 2007. Preclinical and clinical studies and post-marketing surveillance have not demonstrated any specific cardiovascular concerns with sapropterin (Kuvan®). Nonetheless, nonantiarrhythmic drugs may have the potential to prolong QT interval, leading to potentially fatal ventricular tachycardias, including torsades de pointes. As part of the post-marketing commitment, a thorough QT/QTc study will be conducted according to ICH guidelines.
The objective of this study is to evaluate the safety of long-term treatment with Kuvan.
Investigators at Washington University will examine the effects of sapropterin (Kuvan) on brain and cognition in individuals with phenylketonuria (PKU) using neuropsychological and neuroimaging procedures. Sapropterin is a medication developed by BioMarin Pharmaceutical Inc. that is approved by the FDA for treatment of patients with PKU to reduce phenylalanine (Phe) levels. Patients beginning treatment with sapropterin as standard clinical care will be enrolled in the study. As a first step, patients with PKU will receive baseline neuropsychological and neuroimaging evaluations 1 day prior to beginning treatment with sapropterin. Screening for response to sapropterin will occur over 4 weeks. At the end of 4 weeks, response to sapropterin will be reviewed. Patients with a reduction of ≥ 20% in blood Phe (i.e., responders) will receive follow-up neuropsychological and neuroimaging evaluations after 6 months of treatment with sapropterin. Patients (both responders and nonresponders) will receive long-term follow-up neuropsychological and neuroimaging evaluations 3 to 5 years after initial enrollment in the study. The focus of neuropsychological testing will be executive abilities, as these abilities are particularly susceptible to disruption in individuals with PKU. We hypothesize that improvements in these abilities will occur following treatment with sapropterin. For neuroimaging assessments, structural magnetic resonance imaging (MRI) will permit evaluation of changes in the structure and volume of the gray and white matter of the brain, whereas diffusion tensor imaging (DTI) will permit evaluation of microstructural white matter integrity.
To validate the outcome measures and the tolerability of Kuvan treatment in the improvement of behavioral symptoms in 10 selected adults with Phenylketonuria (PKU) with or without mental retardation.
HYPOTHESIS: The investigators hypothesize that KuvanTM therapy could influence nutritional and body composition parameters and neurotransmitter concentrations in pediatric and adult PKU subjects. SUMMARY: Though the investigators know that KuvanTM lowers blood Phe levels and improves tolerance for natural protein in at least half of the PKU (Phenylketonuria) patient population, investigators do not know the full effects this medicine will have on the patient's diet, or what impact the medicine or diet changes will have on the body composition or nutrient status of PKU patients. Since KuvanTM may also help the body produce neurotransmitters, investigators also want to find out if taking KuvanTM changes neurotransmitter levels in PKU patients, and if PKU patients who are benefitting from KuvanTM feel less stigmatized and have a better outlook on life as a result of the treatment. Therefore, the research study has several objectives. These are to investigate the impact KuvanTM therapy has on (1) body composition parameters of PKU patients: such as lean body mass, percent body fat, bone density, weight gain, and growth (2) dietary changes, and the effect of those changes, on intake of calories and essential nutrients (3) changes in blood biomarkers of certain nutrients (4) blood and urine neurotransmitter levels, since these changes could indicate improved neurological functioning, (5) and quality of life of PKU patients, who may feel less burdened due to the dietary freedom KuvanTM provides.
The purpose of this study is to assess the safety and tolerability of injections of rAvPAL-PEG in subjects with PKU.