Skip to content

Natural History Study of ATP1A3-related Disease

Natural History of ATP1A3-related Disease: a Deep Phenotyping-genotyping Project

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03857607
Enrollment
100
Registered
2019-02-28
Start date
2018-09-01
Completion date
2023-08-31
Last updated
2022-06-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Alternating Hemiplegia of Childhood, ATP1A3-related Disease, CAPOS, Rapid Onset Dystonia Parkinsonism

Brief summary

An observational study aiming to study the natural history of a UK-wide patient cohort with ATP1A3-related disease.

Detailed description

Alternating hemiplegia of childhood (AHC) is a rare very disabling neurodevelopmental syndrome caused by mutations in the gene ATP1A3. AHC is characterized by paroxysmal events including attacks of hemiplegia (weakness), dystonia (painful stiffening), oculomotor abnormalities and epileptic seizures. As the condition progresses permanent neurological symptoms, including unsteadiness and learning problems, emerge. Mutations in ATP1A3 also cause other related syndromes: rapid-onset dystonia-parkinsonism (RDP), less severe and usually presenting in adulthood, as well as cerebellar ataxia, areflexia, pes cavus, optic atrophy, and sensorineural hearing loss (CAPOS) syndrome, a severe syndrome of early childhood. Currently therapeutic options are very limited aiming at symptomatic relief with limited success. As ATP1A3-related syndromes are very rare diseases, with an estimated prevalence of about 1/1000000, randomised clinical trials of available therapies are not possible due to lack of a large enough patient cohort. However, the revolution in genetic diagnostics has made the identification of these patients and the correlation between their phenotypes possible. At the same time further novel technologies in neuromonitoring and neuroimaging, as well as videography and sleep monitoring have become available that could help us further examine and understand the underlying mechanisms especially of the paroxysmal episodes that characterise all ATP1A3-related syndromes. The investigators believe that based on these scientific advances they will be able to recruit a UK-wide patient cohort to conduct an in depth study of the progression of this disease. This is particularly relevant at the moment as rapid progress in genetic therapies and other novel therapeutics makes the availability of new treatment options in the near future a realistic prospect and, even though we will most probably still not be able to identify a large enough cohort for randomised clinical trials, our natural history study will act as a much needed benchmark to which the success of novel treatments can be evaluated.

Interventions

GENETICWhole exome sequencing

Whole exome sequencing will be used to identify causative genes in ATP1A3 mutation negative patients, to confirm causality in ambiguous phenotypes and to identify modifier genes.

Sponsors

Great Ormond Street Hospital for Children NHS Foundation Trust
CollaboratorOTHER
University College, London
CollaboratorOTHER
Institute of Child Health
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
6 Months to 60 Years
Healthy volunteers
No

Inclusion criteria

* Children and adults of any age carrying a mutation in the ATP1A3-gene. * Children and adults of any age matching an ATP1A3-related disease phenotype without a mutation in the gene. * Written informed consent given by patient and/or parent/guardian.

Exclusion criteria

• Patients with a phenotype not fitting ATP1A3-related disease and no mutation in the ATP1A3 gene.

Design outcomes

Primary

MeasureTime frame
Disease progression1 year

Countries

United Kingdom

Contacts

Primary ContactKaterina Vezyroglou, MD
k.vezyroglou@ucl.ac.uk+44(0)20 7905 2980
Backup ContactHelen Cross, PhD
h.cross@ucl.ac.uk

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026