Skip to main content

Lund University Publications

LUND UNIVERSITY LIBRARIES

Multimodal quantitative MRI finds early brain changes in asymptomatic X-linked adrenoleukodystrophy

Meyer, Kolja ; Sahoo, Prativa ; Marten, Lara ; Gkalimani, Irini ; Helms, Gunther LU orcid ; Dechent, Peter ; Rosewich, Henrirk ; Dreha-Kulaczewski, Steffi F. and Gärtner, Jutta (2026) In Brain Communications 8(5). p.1-13
Abstract
Adrenoleukodystrophy (ALD) is an X-linked recessive disease caused by defects in the ABCD1 gene, leading to the accumulation of very long-chain fatty acids in the nervous system, adrenalglands, blood and other tissues. Male ALD patients may present with either the severe neurologicalphenotype of cerebral ALD, characterized by inflammatory demyelination in the white matter and rapid neurological deterioration, or milder forms, such as adrenomyeloneuropathy. We aimed to identify early brain changes in asymptomatic ALD patients prior to the clinicalonsetof cerebral ALD or adrenomyeloneuropathy by exploratory analysis of multimodal MRI data.

Multimodal MRI data—including structural images, diffusion tensor imaging, magnetization... (More)
Adrenoleukodystrophy (ALD) is an X-linked recessive disease caused by defects in the ABCD1 gene, leading to the accumulation of very long-chain fatty acids in the nervous system, adrenalglands, blood and other tissues. Male ALD patients may present with either the severe neurologicalphenotype of cerebral ALD, characterized by inflammatory demyelination in the white matter and rapid neurological deterioration, or milder forms, such as adrenomyeloneuropathy. We aimed to identify early brain changes in asymptomatic ALD patients prior to the clinicalonsetof cerebral ALD or adrenomyeloneuropathy by exploratory analysis of multimodal MRI data.

Multimodal MRI data—including structural images, diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy—were obtained from
asymptomatic ALD patients during regular follow-up MRIs. Longitudinal MRI data were analysed from 12 asymptomatic ALD patients aged 10–18 years who did not develop a cerebral ALD phenotype during our surveillance and from 12 healthy age-matched male controls. Volumetric analyses of brain structures were performed using structural MRI data, as well as region-of-interest measurements on diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy data. Statistical analysis was performed using linear mixed-effects models.

Volumetry indicated increased white matter volume in asymptomatic ALD patients. Diffusion tensor imaging analysis revealed increased values of radial and mean diffusivity in the supratentorial white matter. Magnetization transfer saturation valuesderived from magnetization transfer imaging metrics were increased in the cortical and subcorticalgrey matter, butnot in the white
matter. MR spectroscopy showed increased inositol levels in the frontal white matter. Ourdiffusion tensor imaging and MR spectroscopy data indicate early white matter pathology in adolescent asymptomatic ALD patients.

Among these findings, increased white matter volume and, in addition, elevated magnetization transfer saturation values in the grey matter are novel MRI phenotypes associated with asymptomatic ALD. These results suggest that not only white matter but also grey matter can be pathologically altered even before the onset of neurological phenotypes. Multimodal MRI parameters therefore constitute promising biomarkers for the assessment of presymptomatic brain tissue alterations in ALD and may be useful in future clinical studies targeting early therapeutic intervention.
(Less)
Please use this url to cite or link to this publication:
author
; ; ; ; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
Brain Communications
volume
8
issue
5
article number
fcag311
pages
1 - 13
publisher
Oxford University Press
external identifiers
  • scopus:105049382475
ISSN
2632-1297
DOI
10.1093/braincomms/fcag311
language
English
LU publication?
yes
id
7c1870d8-047a-4c0e-8fe9-9311d948a81d
date added to LUP
2026-08-22 13:03:44
date last changed
2026-10-05 04:00:26
@article{7c1870d8-047a-4c0e-8fe9-9311d948a81d,
  abstract     = {{Adrenoleukodystrophy (ALD) is an X-linked recessive disease caused by defects in the ABCD1 gene, leading to the accumulation of very long-chain fatty acids in the nervous system, adrenalglands, blood and other tissues. Male ALD patients may present with either the severe neurologicalphenotype of cerebral ALD, characterized by inflammatory demyelination in the white matter and rapid neurological deterioration, or milder forms, such as adrenomyeloneuropathy. We aimed to identify early brain changes in asymptomatic ALD patients prior to the clinicalonsetof cerebral ALD or adrenomyeloneuropathy by exploratory analysis of multimodal MRI data. <br/><br/>Multimodal MRI data—including structural images, diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy—were obtained from<br/>asymptomatic ALD patients during regular follow-up MRIs. Longitudinal MRI data were analysed from 12 asymptomatic ALD patients aged 10–18 years who did not develop a cerebral ALD phenotype during our surveillance and from 12 healthy age-matched male controls. Volumetric analyses of brain structures were performed using structural MRI data, as well as region-of-interest measurements on diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy data. Statistical analysis was performed using linear mixed-effects models. <br/><br/>Volumetry indicated increased white matter volume in asymptomatic ALD patients. Diffusion tensor imaging analysis revealed increased values of radial and mean diffusivity in the supratentorial white matter. Magnetization transfer saturation valuesderived from magnetization transfer imaging metrics were increased in the cortical and subcorticalgrey matter, butnot in the white<br/>matter. MR spectroscopy showed increased inositol levels in the frontal white matter. Ourdiffusion tensor imaging and MR spectroscopy data indicate early white matter pathology in adolescent asymptomatic ALD patients. <br/><br/>Among these findings, increased white matter volume and, in addition, elevated magnetization transfer saturation values in the grey matter are novel MRI phenotypes associated with  asymptomatic ALD. These results suggest that not only white matter but also grey matter can be pathologically altered even before the onset of neurological phenotypes. Multimodal MRI parameters therefore constitute promising biomarkers for the assessment of presymptomatic brain tissue alterations in ALD and may be useful in future clinical studies targeting early therapeutic intervention.<br/>}},
  author       = {{Meyer, Kolja and Sahoo, Prativa and Marten, Lara and Gkalimani, Irini and Helms, Gunther and Dechent, Peter and Rosewich, Henrirk and Dreha-Kulaczewski, Steffi F. and Gärtner, Jutta}},
  issn         = {{2632-1297}},
  language     = {{eng}},
  month        = {{08}},
  number       = {{5}},
  pages        = {{1--13}},
  publisher    = {{Oxford University Press}},
  series       = {{Brain Communications}},
  title        = {{Multimodal quantitative MRI finds early brain changes in asymptomatic X-linked adrenoleukodystrophy}},
  url          = {{http://dx.doi.org/10.1093/braincomms/fcag311}},
  doi          = {{10.1093/braincomms/fcag311}},
  volume       = {{8}},
  year         = {{2026}},
}