Clinical and Laboratory Study of Methylmalonic Acidemia
NCT00078078 · Status: RECRUITING · Type: OBSERVATIONAL · Enrollment: 2275
Last updated 2026-04-08
Summary
Methylmalonic acidemia (MMA), one of the most common inborn errors of organic acid metabolism, is heterogeneous in etiology and clinical manifestations. Affected patients with cblA, cblB and mut classes of MMA are medically fragile and can suffer from complications such as metabolic stroke or infarction of the basal ganglia, pancreatitis, end stage renal failure, growth impairment, osteoporosis, and developmental delay. The frequency of these complications and their precipitants remain undefined. Furthermore, current treatment protocol outcomes have continued to demonstrate substantial morbidity and mortality in the patient population. Increasingly, solid organ transplantation (liver, and/or kidney) has been used to treat patients. Disordered transport and intracellular metabolism of vitamin B12 produces a distinct group of disorders that feature methylmalonic acidemia as well as (hyper)homocysteinemia. These conditions are named after the corresponding cellular complementation class - (cblC, cblD, cblF, cblJ and cblX) - and are also heterogenous, clinically and biochemically. The genetic disorders underlying cblE and cblG feature an isolated impairment of the activity of methionine synthase, a critical enzyme involved in the conversion of homocysteine to methionine and these disorders feature (hyper)homocysteinemia. Lastly, a group of patients can have increased methylmalonic acid and/or homocysteine in the blood or urine caused by variant(s) in recently identified (ACSF3) and unknown genes.
In this protocol, we will clinically evaluate patients with methylmalonic acidemia and cobalamin metabolic defects. Routine inpatient admissions will last up to 4-5 days and involve urine collection, blood drawing, ophthalmological examination, radiological procedures, MRI/MRS, skin biopsies in some, and developmental testing. In a subset of patients who have or will receive renal, hepato- or hepato-renal transplants or have an unusual variant or clinical course and have MMA, a lumbar puncture to examine CSF metabolites will be performed. In this small group of patients, CSF metabolite monitoring may be used to adjust therapy.
The study objectives will be to further delineate the spectrum of phenotypes and characterize the natural history of these enzymopathies, query for genotype/enzymatic/phenotype correlations, search for new genetic causes of methylmalonic acidemia and/or homocysteinemia, identify new disease biomarkers and define clinical outcome parameters for future clinical trials.
The population will consist of participants previously evaluated at NIH, physician referrals, and families directed to the study from clinicaltrials.gov as well as the Organic Acidemia Association, Homocystinuria Network America and other national and international support groups. Most participants will be evaluated only at the NIH Clinical Center. However, if the NIH team decides that a patient under the age of 2 years is a candidate subject for this research protocol, that patient may enroll at the Children's National Medical Center (CNMC) site, pending approval by Dr Chapman, the Principal Investigator of the CNMC location Individuals may also enroll in the tissue collection only part of the study at the UPMC Children's Hospital of Pittsburgh or share medical history and clinical data via telemedicine visits remotely. Outcome measures will largely be descriptive and encompass correlations between clinical, biochemical and molecular parameters.
Conditions
- Organic Acidemia
- Methylmalonic Acidemia
- Inborn Errors of Metabolism
Sponsors & Collaborators
-
National Human Genome Research Institute (NHGRI)
lead NIH
Principal Investigators
-
Charles P Venditti, M.D. · National Human Genome Research Institute (NHGRI)
Eligibility
- Min Age
- 1 Month
- Max Age
- 115 Years
- Sex
- ALL
- Healthy Volunteers
- Yes
Timeline & Regulatory
- Start
- 2004-06-07
Countries
- United States
Study Locations
More Related Trials
-
Natural History, Physiology, Microbiome and Biochemistry Studies of Propionic Acidemia
NCT02890342 ·Status: RECRUITING
-
Genetic and Blood Biomarkers in Neurological and Neuromuscular Diseases
NCT02780531 ·Status: COMPLETED
-
Natural History Study - Mitochondrial Disease
NCT01532791 ·Status: RECRUITING
-
Study of Inherited Neurological Disorders
NCT00004568 ·Status: RECRUITING
-
Natural History of Glycosphingolipid Storage Disorders and Glycoprotein Disorders
NCT00029965 ·Status: RECRUITING
-
Genetic and Family Studies of Inherited Muscle Diseases
NCT00001331 ·Status: COMPLETED
-
Genetic Studies of Lysosomal Storage Disorders
NCT00001215 ·Status: ENROLLING_BY_INVITATION
-
The Natural History Study of Mitochondrial NeuroGastroIntestinal Encephalopathy (MNGIE)
NCT01694953 ·Status: RECRUITING
-
Study of Inborn Errors of Cholesterol Synthesis and Related Disorders
NCT00046202 ·Status: COMPLETED
-
Genetic Characterization of Individuals With Limb Girdle Muscular Dystrophy
NCT00457912 ·Status: COMPLETED
-
A Natural History Study of the Gangliosidoses
NCT00668187 ·Status: RECRUITING
-
Natural History Study of GEMIN-5 Related Neurodevelopmental Disorder
NCT06776341 ·Status: RECRUITING
-
Phenotype/Genotype Correlations in Neuromuscular Disorders
NCT00017745 ·Status: COMPLETED
-
Clinical and Genetic Evaluation of Individuals With Undiagnosed Disorders Through the Undiagnosed Diseases Network
NCT02450851 ·Status: RECRUITING
-
Genetic Analysis of Familial Brain Aneurysms
NCT00011856 ·Status: COMPLETED
-
Genetics of Neonatal Encephalopathy and Related Disorders
NCT07165938 ·Status: RECRUITING
-
Longitudinal Study of Neurodegenerative Disorders
NCT03333200 ·Status: RECRUITING
-
Study of the Genetic and Epigenetic Causes of Recurrent Hydatidiform Moles
NCT01008501 ·Status: ACTIVE_NOT_RECRUITING
-
Genetic Studies in Patients and Families With Infantile Spasms
NCT01723787 ·Status: COMPLETED
-
MRI and Muscle Involvement in Patients With Mutations in GMPPB
NCT02635321 ·Status: COMPLETED
-
Genome-wide Analysis of Single Nucleotide Polymorphisms of Brain Arteriovenous Malformations and Cerebral Aneurysm
NCT01801488 ·Status: TERMINATED
-
Maternal KIR and Fetal HLA-C Genes in Recurrent Miscarriages
NCT00180804 ·Status: COMPLETED
-
A Natural History Study Seeks to Understand the Clinical, Genomic, Pharmacological, Laboratory, and Dietary Determinates of Pyrimidine and Purine Metabolism Disorders
NCT06092346 ·Status: RECRUITING
-
Investigation of the Genetics of Hematologic Diseases
NCT02720679 ·Status: RECRUITING
-
Multinational Glanzmann Study
NCT06204042 ·Status: NOT_YET_RECRUITING