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Updated: Jul 16, 2025

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Brain Atrophy as an Outcome of Disease-Modifying Therapy for Remitting-Relapsing Multiple Sclerosis
Magdalena Chylińska1, Jakub Komendziński1, Adam Wyszomirski1
1Department of Adult Neurology, Gdańsk Medical University, Gdańsk, Poland.
Introduction:
Currently, clinical trials of DMTs strive to determine their effect on neuroinflammation and neurodegeneration. We aimed to determine the impact of currently used DMTs on brain atrophy and disability in RRMS. The main goal of this review is to evaluate the neuroprotective potential of MS therapy and assess its impact on disability.
Methods:
We performed a systematic analysis of clinical trials that used brain atrophy as an outcome or performed post hoc analysis of volumetric MRI parameters to assess the neuroprotective potential of applied therapies. Trials between 2008 and 2019 that included published results of brain parenchymal fraction (BPF) change and brain volume loss (BVL) in the period from baseline to week 96 or longer were considered.
Results:
Twelve from 146 clinical trials met the inclusion criteria and were incorporated into the analysis. DMTs that presented a large reduction in BVL also exhibited robust effects on clinical disability worsening, e.g., alemtuzumab with a 42% risk reduction in 6-month confirmed disability accumulation (p = 0.0084), ocrelizumab with a 40% risk reduction in 6-month confirmed disability progression (p = 0.003), and other DMTs (cladribine and teriflunomide) with moderate influence on brain atrophy were also associated with a marked impact on disability worsening. Dimethyl fumarate (DEFINE) and fingolimod (FREEDOMS I) initially exhibited significant effect on BVL; however, this effect was not confirmed in further clinical trials: CONFIRM and FREEDOMS II, respectively. Peg-IFN-β1a shows a modest effect on BVL and disability worsening.
Conclusion:
Our results show that BVL in one of the components of clinical disability worsening, together with other variables (lesion volume and annualized relapse rate). Standardization of atrophy measurement technique as well as harmonization of disability worsening and progression criteria in further clinical trials are of utmost importance as they enable a reliable comparison of neuroprotective potential of DMTs.
Insights
Disease-modifying therapies (DMTs) impact brain atrophy and disability in relapsing-remitting multiple sclerosis (RRMS). Stronger reductions in brain volume loss correlate with better clinical outcomes, highlighting DMTs
Area of Science:
- Neuroscience
- Immunology
- Radiology
Background:
- Clinical trials for disease-modifying therapies (DMTs) in multiple sclerosis (MS) focus on neuroinflammation and neurodegeneration.
- Brain atrophy and disability progression are key outcomes in assessing MS treatment efficacy.
Purpose of the Study:
- To evaluate the neuroprotective potential of current DMTs for MS.
- To assess the impact of DMTs on brain atrophy and clinical disability in relapsing-remitting MS (RRMS).
Main Methods:
- Systematic analysis of clinical trials (2008-2019) using brain atrophy outcomes (brain parenchymal fraction, brain volume loss).
- Inclusion of trials with published volumetric MRI data from baseline to at least 96 weeks.
Main Results:
- Twelve trials met inclusion criteria. DMTs like alemtuzumab and ocrelizumab showed significant reductions in brain volume loss (BVL) and disability worsening.
- Other DMTs (cladribine, teriflunomide) demonstrated moderate effects on brain atrophy and disability. Dimethyl fumarate and fingolimod showed inconsistent effects on BVL across trials.
- Peg-interferon-beta-1a had a modest effect on BVL and disability worsening.
Conclusions:
- Brain volume loss is a component of clinical disability worsening in RRMS.
- Standardizing atrophy measurement and disability criteria is crucial for comparing the neuroprotective potential of DMTs.
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