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Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Disease correlates of rim lesions on quantitative susceptibility mapping in multiple sclerosis
Melanie Marcille1, Sandra Hurtado Rúa2, Charles Tyshkov3
1Department of Neurology, Weill Cornell Medicine, New York, NY, USA.
Abstract:
Quantitative susceptibility mapping (QSM), an imaging technique sensitive to brain iron, has been used to detect paramagnetic rims of iron-laden active microglia and macrophages in a subset of multiple sclerosis (MS) lesions, known as rim+ lesions, that are consistent with chronic active lesions. Because of the potential impact of rim+ lesions on disease progression and tissue damage, investigating their influence on disability and neurodegeneration is critical to establish the impact of these lesions on the disease course. This study aimed to explore the relationship between chronic active rim+ lesions, identified as having a hyperintense rim on QSM, and both clinical disability and imaging measures of neurodegeneration in patients with MS. The patient cohort was composed of 159 relapsing-remitting multiple sclerosis patients. The Expanded Disability Status Scale (EDSS) and Brief International Cognitive Assessment for Multiple Sclerosis, which includes both the Symbol Digit Modalities Test and California Verbal Learning Test-II, were used to assess clinical disability. Cortical thickness and thalamic volume were evaluated as imaging measures of neurodegeneration. A total of 4469 MS lesions were identified, of which 171 QSM rim+ (3.8%) lesions were identified among 57 patients (35.8%). In a multivariate regression model, as the overall total lesion burden increased, patients with at least one rim+ lesion on QSM performed worse on both physical disability and cognitive assessments, specifically the Symbol Digit Modalities Test (p = 0.010), California Verbal Learning Test-II (p = 0.030), and EDSS (p = 0.001). In a separate univariate regression model, controlling for age (p < 0.001) and having at least one rim+ lesion was related to more cortical thinning (p = 0.03) in younger patients (< 45 years). Lower thalamic volume was associated with older patients (p = 0.038) and larger total lesion burden (p < 0.001); however, the association did not remain significant with rim+ lesions (p = 0.10). Our findings demonstrate a novel observation that chronic active lesions, as identified on QSM, modify the impact of lesion burden on clinical disability in MS patients. These results support further exploration of rim+ lesions for therapeutic targeting in MS to reduce disability and subsequent neurodegeneration.
Insights
Chronic active lesions in multiple sclerosis (MS), identified by Quantitative Susceptibility Mapping (QSM) as rim+ lesions, are linked to increased disability and cognitive decline. These findings suggest rim+ lesions may be a key target for MS therapies to reduce disease progression.
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Multiple sclerosis (MS) is a chronic inflammatory disease affecting the central nervous system.
- Quantitative Susceptibility Mapping (QSM) detects iron in active microglia and macrophages within MS lesions.
- Chronic active lesions, termed rim+ lesions, are associated with disease progression and neurodegeneration.
Purpose of the Study:
- To investigate the relationship between QSM-identified chronic active rim+ lesions and clinical disability in MS patients.
- To explore the association of rim+ lesions with neurodegeneration using imaging measures like cortical thickness and thalamic volume.
- To determine if rim+ lesions modify the impact of overall lesion burden on disability and neurodegeneration.
Main Methods:
- A cohort of 159 relapsing-remitting MS patients was studied.
- Clinical disability was assessed using the Expanded Disability Status Scale (EDSS) and cognitive tests (Symbol Digit Modalities Test, California Verbal Learning Test-II).
- Neurodegeneration was evaluated via cortical thickness and thalamic volume measurements on MRI scans, with QSM used to identify rim+ lesions.
Main Results:
- Out of 4469 MS lesions, 171 (3.8%) were identified as rim+ lesions in 57 patients (35.8%).
- Increased total lesion burden combined with the presence of rim+ lesions correlated with worse physical disability and cognitive function (SDMT, CVLT-II, EDSS).
- Rim+ lesions were associated with greater cortical thinning in younger patients (<45 years), but not with thalamic volume changes.
Conclusions:
- Chronic active rim+ lesions significantly impact clinical disability and cognitive function in MS patients, especially when combined with high lesion burden.
- The presence of rim+ lesions is linked to neurodegeneration, specifically cortical thinning in younger individuals.
- Targeting rim+ lesions in MS could be a promising therapeutic strategy to mitigate disability and neurodegeneration.

