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Published on: July 19, 2019
Gray Matter Damage and Long-Term Disability, Cognitive Outcome, and Survival in Patients With Multiple Sclerosis
Paolo Preziosa1,2,3, Alessandro Meani1, Nicolò Tedone1,3
1Neuroimaging Research Unit, Division of Neuroscience, IRCCS San Raffaele Scientific Institute, Milan, Italy.
Background And Objectives:
Gray matter (GM) damage is a key determinant of clinical disability in multiple sclerosis (MS), but its relevance to very long-term outcomes remains insufficiently characterized. We assessed associations between baseline and 12-month MRI measures of GM and white matter (WM) damage and long-term outcomes in relapse-onset MS.
Methods:
We conducted a prospective longitudinal single-center cohort study of relapse-onset MS patients enrolled between 1993 and 1998. Participants underwent clinical and 1.5T brain MRI assessments at baseline and after 12 months. MRI measures included T2-lesion and T1-lesion volumes, GM, WM, and thalamic volume fractions, magnetization transfer ratio (MTR) of GM, thalamus, normal-appearing WM, and WM lesions. Escalation to high-efficacy disease-modifying therapies (HE-DMTs) was recorded. Outcomes included Expanded Disability Status Scale (EDSS) worsening, evolution to a more severe disease stage, MS-related death, and cognitive deterioration. Associations were evaluated using LASSO-regularized logistic regression with internal bootstrap validation.
Results:
Seventy-three relapse-onset MS patients (mean age = 33.0 years; female = 69.9%) were followed for a median of 25.9 years (interquartile range = 18.1-27.1; patients lost during follow-up = 11). EDSS worsening occurred in 79.5% of patients, 72.6% evolved to a more severe disease stage, 24.7% died from MS-related causes, and 39.5% of patients with cognitive data (17/43) experienced cognitive deterioration. EDSS worsening was associated with lower baseline GM fraction (GMF) (standardized-β = -0.561), escalation to HE-DMTs (standardized-β = 0.059), lower baseline thalamic fraction (standardized-β = -0.115), lower baseline normal-appearing WM MTR histogram peak height (standardized-β = -0.010), and greater 12-month decline in GM MTR histogram peak height (standardized-β = -0.115) (area under the curve [AUC] = 0.843, 95% CI 0.744-0.941). Evolution to a more severe disease stage was associated with higher 12-month EDSS score change (standardized-β = 0.167) and lower baseline GMF (standardized-β = -0.151) (AUC = 0.793, 95% CI 0.670-0.916). MS-related death was associated with male sex (standardized-β = 0.063), higher baseline EDSS score (standardized-β = 0.182), lower baseline GMF (standardized-β = -0.304), lower baseline GM MTR histogram peak height (standardized-β = -0.050), and greater 12-month decline in mean thalamic MTR (standardized-β = -0.370) (AUC = 0.887, 95% CI 0.813-0.961). Cognitive deterioration was associated with older baseline age (standardized-β = 0.197), lower baseline brain parenchymal fraction (standardized-β = -0.039), and lower baseline mean GM MTR (standardized-β = -0.376) (AUC = 0.891, 95% CI 0.788-0.994).
Discussion:
Brain GM damage showed consistent associations with disability worsening and evolution, mortality, and cognitive deterioration over 26 years in relapse-onset MS, supporting the long-term clinical relevance of GM-focused MRI markers.
Insights
Gray matter damage in multiple sclerosis (MS) is linked to long-term disability, mortality, and cognitive decline. MRI markers of gray matter (GM) damage predict these outcomes, highlighting their clinical relevance.
Area of Science:
- Neuroimaging in Multiple Sclerosis
- Longitudinal Clinical Outcomes
- Gray Matter Pathology
Background:
- Gray matter (GM) damage is a key factor in multiple sclerosis (MS) disability.
- The long-term impact of GM damage on MS outcomes requires further investigation.
- This study examines early MRI markers of GM and white matter (WM) damage in relation to long-term outcomes in relapse-onset MS.
Purpose of the Study:
- To assess the association between baseline and 12-month MRI measures of GM and WM damage.
- To evaluate the relationship between these MRI markers and long-term clinical outcomes in relapse-onset MS patients.
Main Methods:
- Prospective longitudinal cohort study of 73 relapse-onset MS patients (1993-1998).
- Clinical and 1.5T brain MRI assessments at baseline and 12 months.
- MRI measures included lesion volumes, GM/WM/thalamic volume fractions, and magnetization transfer ratio (MTR). Outcomes assessed included EDSS worsening, disease stage evolution, MS-related death, and cognitive deterioration.
Main Results:
- Over a median of 25.9 years, 79.5% experienced EDSS worsening, 72.6% evolved disease stage, 24.7% died from MS, and 39.5% showed cognitive deterioration.
- Lower baseline GM fraction (GMF) and GM MTR were associated with EDSS worsening, disease stage evolution, and MS-related death.
- Cognitive deterioration linked to older age, lower baseline brain parenchymal fraction, and lower mean GM MTR.
Conclusions:
- Brain GM damage consistently correlates with disability worsening, mortality, and cognitive decline over 26 years in relapse-onset MS.
- MRI-based GM markers demonstrate significant long-term clinical relevance.
- These findings support the importance of monitoring GM integrity in MS management.
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