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Measuring Progressive Neurological Disability in a Mouse Model of Multiple Sclerosis
Published on: November 14, 2016
Cerebrospinal fluid immunoglobulin light chain ratios predict disease progression in multiple sclerosis
Emma Rathbone1, Lindsay Durant1, James Kinsella1
1Centre for Translational Inflammation Research Institute of Inflammation and Ageing, College of Medical and Dental Sciences University of Birmingham, Birmingham, UK.
Insights
The ratio of cerebrospinal fluid (CSF) immunoglobulin kappa to lambda light chains (κ:λ FLC) at multiple sclerosis (MS) diagnosis predicts disease progression. This CSF κ:λ FLC ratio may serve as a prognostic marker for early treatment decisions in MS.
Area of Science:
- Neurology
- Immunology
- Biochemistry
Background:
- Multiple sclerosis (MS) is a chronic inflammatory disease of the central nervous system.
- Predicting MS disease progression is crucial for timely therapeutic intervention.
- Cerebrospinal fluid (CSF) analysis offers insights into the intrathecal immune response in MS.
Purpose of the Study:
- To investigate if the ratio of CSF immunoglobulin kappa to lambda light chains (κ:λ FLC) at diagnosis predicts MS disease progression.
- To determine if this ratio is associated with CSF plasmablasts.
Main Methods:
- CSF and peripheral blood samples were collected from patients with clinically isolated syndrome (CIS), relapsing-remitting MS (RRMS), primary progressive MS (PPMS), and controls.
- CSF κ:λ FLC and CSF IgG1 κ:λ were measured.
- CSF B cells and plasmablasts were analyzed.
- Patients were followed for 5 years to assess disease progression (Expanded Disability Status Scale - EDSS).
Main Results:
- An elevated median CSF κ:λ FLC ratio was observed in all MS groups compared to controls (p<0.001).
- The CSF κ:λ FLC ratio predicted EDSS progression at 5 years (p=0.049).
- Higher CSF κ:λ FLC ratios correlated with lower median EDSS scores at follow-up.
- The CSF κ:λ FLC ratio was intrinsically linked to CSF plasmablasts (r=0.65; p=0.026) and CSF IgG1 κ:λ (r=0.776; p<0.0001).
Conclusions:
- CSF immunoglobulin κ:λ ratios at the time of MS diagnosis are predictive of disease progression.
- These ratios may serve as valuable prognostic biomarkers for early therapeutic stratification in MS patients.
Objective:
To determine whether the ratio of cerebrospinal fluid (CSF) immunoglobulin kappa to lambda light chains at time of multiple sclerosis (MS) diagnosis predicts disease progression and whether this was intrinsic to CSF plasmablasts.
Methods:
CSF and peripheral blood were obtained from patients undergoing elective diagnostic lumbar puncture and included clinically isolated syndrome (CIS) (n=43), relapsing remitting MS (RRMS; n=50), primary progressive MS (PPMS; n=20) and other neurological disease controls, both inflammatory (ONID; n=23) and non-inflammatory (OND; n=114). CSF samples were assayed for free and immunoglobulin-associated light chains and on B cells and plasmablasts. Clinical follow-up data were collected during a 5-year follow-up period where available.
Results:
There was an increased median CSF κ:λ free light chain (FLC) in all MS groups (CIS: 18.2, 95% CI 6.8 to 30.3; RRMS: 4.4, 95% CI 2.7 to 11.4; PPMS: 12.0, 95% CI 3.6 to 37.1) but not controls (OND: 1.61, 95% CI 1.4 to 1.9; ONID: 1.7, 95% CI 1.3 to 2.2; p<0.001). This ratio predicted Expanded Disability Status Scores (EDSS) progression at 5 years, with a lower median EDSS in the group with high (>10) CSF κ:λ FLC (0.0, 95% CI 0 to 2.5 vs 2.5, 95% CI 0 to 4, high vs low; p=0.049). CSF κ:λ FLC correlated with CSF IgG1 κ:λ (r=0.776; p<0.0001) and was intrinsic to CSF plasmablasts (r=0.65; p=0.026).
Conclusions:
These data demonstrate that CSF immunoglobulin κ:λ ratios, determined at the time of diagnostic lumbar puncture, predict MS disease progression and may therefore be useful prognostic markers for early therapeutic stratification.
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