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RISCA : Prospective Study of Individuals at Risk for SCA1, SCA2, SCA3, SCA6, SCA7

Prospective Study of Individuals at Risk for Spinocerebellar Ataxia Type 1, Type 2, Type 3, Type 6 and Type 7 (SCA1, SCA2, SCA3, SCA6, SCA7)

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01037777
Acronym
RISCA
Enrollment
37
Registered
2009-12-23
Start date
2009-05-07
Completion date
2017-12-14
Last updated
2026-08-19

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

Conditions

Spinocerebellar Ataxias

Keywords

individuals at risk for SCA1, SCA2, SCA3, SCA6 and SCA7

Brief summary

The spinocerebellar ataxias (SCAs) are a clinically and genetically heterogeneous group of autosomal dominantly inherited progressive ataxia disorders. It is estimated that there are 30,000 individuals in the European Community that directly descend from individuals affected by a SCA disorder and thus carry a 50% risk of having inherited an SCA mutation. These at risk individuals provide a unique research opportunity to prospectively study the presymptomatic phase of SCA disorders and to identify the earliest and most sensitive clinical signs and biological markers that herald the onset of the illness. This information is of critical importance for the development of future therapeutic interventions aimed at postponing the clinical onset of ataxia. We therefore propose to perform a prospective observational study of individuals at risk for the most common SCA disorders, SCA1, SCA2, SCA3 and SCA6 (RISCA). It is our aim to answer the following questions: (1) What is the incidence of disease manifestation in mutation carriers? (2) Which clinical signs precede the onset of manifest ataxia in SCA1, SCA2, SCA3 and SCA6? (3) What are the prevalence and incidence of preceding signs? (4) Are the prevalence and incidence of preceding signs affected by genotype, gender, age, estimated time until disease manifestation and repeat length? (5) Does the presence of certain preceding signs predict the manifestation of ataxia ? (6) Are there MRI alterations that precede the onset of ataxia? It is planned to enroll 480 study participants and to follow them at regular intervals over six years. At each visit, study participants are asked in a structured interview for a number of predefined clinical signs that potentially precede the onset of ataxia. In addition, the following self-assessment scales will be applied: Pittsburgh Sleep Quality Index (PSQI), Diagnostic Criteria for Restless Legs Syndrome, Patient´s Health Questionnaire (PHQ-9). All study participants will undergo a physical examination including the Scale for the Assessment and Rating of Ataxia (SARA). Study participants will further perform the SCA Functional Composite (SCA-FC) which is a comprehensive measure of functional capacity based on results in quantitative tests related to gait (8m timed walk), speech (PATA rate) and hand function (9 hole pegboard). In a subset of study participants, we will record eye movements and obtain volumetric MRIs. The study will also be used to collect and store blood and urine samples for proteomic and gene expression studies. RISCA is conducted by the Ataxia Study Group (ASG). It relies on the network structure created by the EUROSCA project.

Interventions

None listed

Sponsors

Institut National de la Santé Et de la Recherche Médicale, France
Lead SponsorOTHER_GOV

Study design

Observational model
FAMILY_BASED
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* individuals at risk for spinocerebellar ataxia type 1, type 2, type 3, type 6 and type 7 (SCA1, SCA2, SCA3, SCA6 and SCA7) * age between 18 and 50 years old for SCA1, SCA2, SCA3 or SCA7 * age between 35 and 70 years old for SCA6 * no clinical sign of ataxia (SARA \< 3)

Exclusion criteria

* no writing consent * no family members affected * presence of clinical sign of ataxia (SARA \> 3)

Design outcomes

Primary

MeasureTime frameDescription
Functional assessment of the severity of ataxiaDay 0, Month 24, Month 48, Month 72Using CCFS (Composite Cerebellar Functional Severity Score) method for assessing cerebellar ataxia across a wide range of severity. =0,85 : average value in an individual without ataxia. 0,90-1,00 : very mild or early-stage cerebellar impairment. 1,00-1,20 : Mild to moderate cerebellar impairment. \>1,2 : More pronounced cerebellar impairment.
Finger tapping assessmentDay 0, Month 24, Month 48, Month 72Number of taps within 10 seconds (higher = better)
GAITRite in an ataxia assessmentDay 0, Month 24, Month 48, Month 72The participant walks along a carpet equipped with sensors that record the time it takes to make a step as well as the position of the feet.
Assessmet of sleep quality in ataxia : PSQI (Pittsburg Sleep Quality Index)Day 0, Month 24, Month 48, Month 72The global PSQI score ranges from 0 to 21. 0-5 : good sleep quality. \>5 : Poor sleep quality / clinically significant slep disturbance. Higher scores : worse sleep quality
Restless Legs Syndrome (RLS) assessment in AtaxiaDay 0, Month 24, Month 48, Month 72Total Score : 0-40 0 : No RLS symptoms, 1-10 : Mild, 11-20 : Moderate, 21-30 : Severe, 31-40 : Very severe.
Assessment of depression by Patient's Health Questionnaire PHQ-9Day 0, Month 24, Month 48, Month 72Used to evaluatethe severity of depressive symptoms, giving a total score rangong from 0 to 27. 0-4 : minimal or no deprssive symptoms, 5-9 : mild depression, 10-14 : moderate depression, 15-19 : moderately severe depression, 20-27 : severe depression
Assessment of the disease's impact on quality of life based on EQ-5D index (EuroQoL-5 Dimensions)Day 0, Month 24, Month 48, Month 72It generally ranges from less than 0 to 1 (perfect health). Higher scores indicate a better quality of life
Assessment and Rating of AtaxiaDay 0, Month 24, Month 48, Month 72SARA (Scale of Assessment and Rating Ataxia) is an 8-item performance based scale, yielding a total score of 0 (no ataxia) to 40 (most severe ataxia).
Upper Limb motor coordination assessmentDay 0, Month 24, Month 48, Month 72A device equipped with a pre-calibrated force sensor that measures grip strength and lifting capacity, and a Polhemus 3D position sensor that measures position along the -x, -y, and -z axes and the object's orientation to assess movement. Grip force variability coefficient is calculated : Lowe % (more stable greap force control) - Higher % (greater variability and poorer motor coordination)
Determination of the incidence rate of ataxia onset among mutation carriersDay 0Blood sample for a genetic test. Identification of individuals carrying a mutation for SCA types 1, 2, 3, 6, and 7
Confidence Rating for Ataxia AssessmentDay 0, Month 24, Month 48, Month 72The invetigator must specify the degree of confidence in the presence of specific signs that may be associated with SCA ataxia . 90-100 % : investigator very confident in the diagnosis of ataxia, 70-89 % : high confidence, but with some uncertainty, 50-69 % : moderate confidence, \<50 % : significant uncertainty.
INAS scoring in ataxia (Inventory of Non-Ataxia Signs)Day 0, Month 24, Month 48, Month 72Score range 0-16. 0 : No nonataxia signsdetected. Higher score : more non-ataxia neurological signs are present

Secondary

MeasureTime frameDescription
Functional performance assessment by 8MW test (8 meters walking time)Day 0, Month 24, Month 48, Month 72Measure in seconds, the time needed to cover a distance of 8 meters as quickly and safely as possible
Functional performance assessment by 9HPT : Nine Hole Peg TestDay 0, Month 24, Month 48, Month 72The test consists of insertingand removing 9 wooden pegs from a board as quickly as possible, using only one hand. A healthy adult completes the test in about 10 to 20 seconds.
Functional performance assessment by by PATADay 0, Month 24, Month 48, Month 72It involves counting the number of clear répétitions of the syllable or sentence " pa-ta " that a patient can produce in 10 seconds
Assessment of retinal thicknessDay 0, Month 24, Month 48, Month 72By using Optical Coherence Tomography (OCT) scan
Identification of slow saccades during eye trackingDay 0, Month 24, Month 48, Month 72By recording of eye movements
Evaluation of the functional connectivityDay 0, Month 72Brain imaging will help determine whether functional connectivity between the cortex and the cerebellum is impaired

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 20, 2026