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Completed

NCT Number: NCT01325025

Imaging Study of the White Matter Lesions in Children With Metachromatic Leucodystrophy

High-field MRI and diffusion tensor imaging with 3D reconstruction of the myelin tracks, in combination with multivoxel proton spectroscopy, will allow to precise more accurately the evolution of the white matter lesions in patients affected with Metachromatic Leukodystrophy (particularly in the initial phase of the disease). This will increase the knowledge of the disease and provide new indicators for the selection and evaluation of patients eligible for new therapeutic approaches.

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Key information

About this study

Metachromatic Leukodystrophy (MLD) is a rare autosomal recessive disorder caused by the deficiency of the Arylsulfatase A enzyme (ARSA), resulting in accumulation of galactosyl sulfatide (cerebroside sulfate), a major constituent of the myelin sheath. Accumulation of sulfatides leads to a progressive degeneration of the white matter in the central and peripheral nervous systems (CNS, PNS) and to a neuronal degeneration. The late-infantile form of MLD, which is usually diagnosed in the second year of life, is the most frequent and severe form of the disease. The prognosis is severe, leading to vegetative stage or death within few years after the diagnosis. There is no treatment for patients affected with this early-onset form of the disease.

Conventional MRI (1.5 Tesla) shows extensive involvement of the cerebral white matter (hypo-T1, hyper- T2 and FLAIR signals) indicative of rapidly progressing leukodystrophy. Early cortical atrophy reflects associated neuronal involvement. Proton MR spectroscopy demonstrates abnormalities of choline and N-acetyl-aspartate (demyelination, neuronal loss), which are non-specific but can serve as indicators to monitor the effects of any therapeutic intervention.

In early-onset forms of MLD, conventional MRI becomes abnormal at a relatively advanced stage of the disease and the neuroradiological diagnosis may be difficult before the age of 2 - 2 1/2 years of age. Moreover, topography and extent of detectable lesions are poorly correlated with the disease severity.

In order to improve information provided by neuroimaging, this study aims to investigate prospectively and longitudinally (over a period of 6 months) white and grey matter lesions in 10 MLD children aged 1 to 6 years, using high-field MRI (3 Teslas) and diffusion tensor imaging (DTI) with 3D reconstruction of the myelin tracks. The time interval between diagnosis and inclusion will not exceed 18 months, thus patients will be included at an early stage of their disease. Each time-point (T0 and 6 months) will also include neurological evaluation to correlate the imaging, cognitive and motor functions. Children will be included over a period of 5 years. The total duration of the study will be 5.5 years. Controls will include 25 age-matched children with cryptogenic partial epilepsy who should have a high-field MRI to detect structural abnormalities. Controls will have a MRI and cognitive evaluation at T0 and 12 months if necessary. This study will increase our knowledge of the natural history of MLD and provide new indicators for the selection and evaluation of patients eligible for new therapeutic approaches.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

(patients):

  • Children with proven metachromatic leukodystrophy (MLD) with decreased activity of arylsulfatase A enzyme in leukocytes and abnormal excretion of urinary sulfatides
  • Age ≥ 1 year and ≤ 6 years
  • Recently diagnosed (within < 18 months)

Inclusion criteria

(control):

  • Children with partial cryptogenic epilepsy or with a suspected brain lesion on conventional MRI, who should have high-field MRI to detect structural abnormalities that could benefit from surgical resection
  • Age ≥ 1 year and ≤ 6 years

Exclusion criteria

  • Evolutive heart, pulmonary, renal or gastrointestinal disease
  • Contra-indication to sedation
  • Contra-indication to MRI (implanted magnetic material)

Treatment and study plan

high-field MRI (3 Teslas)

Other
  • anatomical location
  • conventional anatomical sequence T1, T2, FLAIR
  • diffusion tensor sequence (21 directions)
  • high angular resolution diffusion (HARDI) sequence
  • field map
  • reflexology T1, T2
  • spectroscopic imaging sequence

Primary outcomes

  1. Assess the natural history of the white matter and cortex lesions in MLD using diffusion tensor imaging (DTI)and relaxometry/ high field MRI.

    Time frame: At inclusion (T0) and 12 months for control. At T0 then at 6 months for patients

    The following parameters will be studied: quantitative measurements of mean diffusivity, longitudinal and transverse fractional anisotropy in ROIs (regions of interest), 3D-tractographic reconstruction of the myelin tracks.

Secondary outcomes

  1. Assess the natural history of the white matter and cortex lesions in MLD using using multi-voxel spectroscopic imaging.

    Time frame: At inclusion (T0) and 12 months for control. At T0 then at 6 months for patients

  2. Assess the evolution of cortical atrophy,

    Time frame: At inclusion (T0) and 12 months for control. At T0 then at 6 months for patients

  3. Correlate the neuroimaging parameters with motor function measure (Gross Motor Function Measure) and cognitive tests (BSID, WPPSI).

    Time frame: At inclusion (T0) and 12 months for control. At T0 then at 6 months for patients

Sponsors and collaborators

Lead sponsor

Assistance Publique - Hôpitaux de Paris

Other

Collaborators

  • European Leukodystrophy Association
  • URC-CIC Paris Descartes Necker Cochin

Registry information

Official study title

Study of the Natural History of Cerebral White Matter Involvement in Metachromatic Leukodystrophy, Using High-field MRI and Diffusion Tensor Imaging

Acronym: HCIT-MLD

Important dates

Study start
2010
Primary completion
2016
Study completion
2016
First posted
Mar 29, 2011
Registry last updated
Nov 20, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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