4.5 Article

Cerebellar pathology in Friedreich's ataxia: Atrophied dentate nuclei with normal iron content

Journal

NEUROIMAGE-CLINICAL
Volume 6, Issue -, Pages 93-99

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.nicl.2014.08.018

Keywords

Friedreich's ataxia; Dentate nuclei; Dentate iron content; Relaxometry; Volumetry; Ultra-high-field MRI

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Funding

  1. IFORES grant of the University of Duisburg-Essen [D/D/107-40130/IFORES]

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Background: In Friedreich's ataxia (FA) the genetically decreased expression of the mitochondrial protein frataxin leads to disturbance of the mitochondrial iron metabolism. Within the cerebellum the dentate nuclei (DN) are primarily affected. Histopathological studies show atrophy and accumulation of mitochondrial iron in DN. Dentate iron content has been suggested as a biomarker to measure the effects of siderophores/antioxidant treatment of FA. We assessed the iron content and the volume of DN in FA patients and controls based on ultra-high-field MRI (7 Tesla) images. Methods: Fourteen FA patients (mean age 38.1 yrs) and 14 age-and gender-matched controls participated. Multi-echo gradient echo and susceptibility weighted imaging (SWI) sequences were acquired on a 7 T whole-body scanner. For comparison SWI images were acquired on a 1.5 T MR scanner. Volumes of the DN and cerebellum were assessed at 7 and 1.5 T, respectively. Parametric maps of T2 and T2* sequences were created and proton transverse relaxation rates were estimated as a measure of iron content. Results: In FA, the DN and the cerebellum were significantly smaller compared to controls. However, proton transverse relaxation rates of the DN were not significantly different between both groups. Conclusions: Applying in vivo MRI methods we could demonstrate significant atrophy of the DN in the presence of normal iron content. The findings suggest that relaxation rates are not reliable biomarkers in clinical trials evaluating the potential effect of FA therapy. (C) 2014 The Authors. Published by Elsevier Inc.

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