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Brain MRI in neurodegeneration with brain iron accumulation with and without PANK2 mutations
S J Hayflick1, M Hartman, J Coryell
1Department of Molecular and Medical Genetics, School of Medicine, Oregon Health & Science University, Portland, OR 97239, USA.
Background And Objective:
Patients with a clinical diagnosis of neurodegeneration with brain iron accumulation (NBIA, formerly called Hallervorden-Spatz syndrome) often have mutations in PANK2, the gene encoding pantothenate kinase 2. We investigated correlations between brain MR imaging changes, mutation status, and clinical disease features.
Methods:
Brain MRIs from patients with NBIA were reviewed by 2 neuroradiologists for technical factors, including signal intensity abnormalities in specific brain regions, presence and location of atrophy, presence of white matter abnormality, contrast enhancement, and other comments. PANK2 genotyping was performed by polymerase chain reaction amplification of patient genomic DNA followed by automated nucleotide sequencing.
Results:
Sixty-six MR imaging examinations from 49 NBIA patients were analyzed, including those from 29 patients with mutations in PANK2. All patients with mutations had the specific pattern of globus pallidus central hyperintensity with surrounding hypointensity on T2-weighted images, known as the eye-of-the-tiger sign. This sign was not seen in any studies from patients without mutations. Even before the globus pallidus hypointensity developed, patients with mutations could be distinguished by the presence of isolated globus pallidus hyperintensity on T2-weighted images. Radiographic evidence for iron deposition in the substantia nigra was absent early in disease associated with PANK2 mutations. MR imaging abnormalities outside the globus pallidus, including cerebral or cerebellar atrophy, were more common and more severe in mutation-negative patients. No specific MR imaging changes could be distinguished among the mutation-negative patients.
Conclusion:
MR imaging signal intensity abnormalities in the globus pallidus can distinguish patients with mutations in PANK2 from those lacking a mutation, even in the early stages of disease.
Insights
Neurodegeneration with brain iron accumulation (NBIA) patients with PANK2 mutations show specific brain MRI findings, including the eye-of-the-tiger sign, aiding early diagnosis even before hypointensity develops.
Area of Science:
- Neurology
- Radiology
- Genetics
Background:
- Neurodegeneration with brain iron accumulation (NBIA) is a group of disorders often linked to mutations in the PANK2 gene.
- Pantothenate kinase 2 (PANK2) encodes an enzyme crucial for coenzyme A biosynthesis.
Purpose of the Study:
- To investigate the correlation between brain Magnetic Resonance Imaging (MRI) findings and PANK2 mutation status in NBIA patients.
- To determine if specific MRI features can differentiate NBIA patients with and without PANK2 mutations.
Main Methods:
- Review of brain MRIs from 49 NBIA patients (66 examinations) by two neuroradiologists.
- Analysis of signal intensity abnormalities, atrophy, white matter changes, and contrast enhancement on T2-weighted images.
- PANK2 genotyping using polymerase chain reaction and automated nucleotide sequencing.
Main Results:
- The 'eye-of-the-tiger' sign (central globus pallidus hyperintensity with surrounding hypointensity on T2-weighted images) was present in all PANK2 mutation-positive patients.
- Isolated globus pallidus hyperintensity on T2-weighted images could distinguish mutation-positive patients even before hypointensity developed.
- Mutation-negative patients showed more frequent and severe extra-globus pallidus abnormalities, including atrophy, with no distinct MRI pattern.
Conclusions:
- Specific MRI signal abnormalities in the globus pallidus can reliably distinguish NBIA patients with PANK2 mutations from those without.
- These MRI findings are valuable for early diagnosis of PANK2-associated NBIA, even in early disease stages.
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