Multiple Sclerosis: From the Application of Oligoclonal Bands to Novel Potential Biomarkers
Рассеянный склероз: от применения олигоноклональных полос к новым потенциальным биомаркерам
2024-05-15
SCID: 54.1/q8rvsdh4
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biomarkers for multiple sclerosiscerebrospinal fluidisoelectric focusing and immunoblottingkappa free light chainsoligoclonal bands
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Abstract (AI)
Multiple sclerosis is a chronic immune-mediated disorder of the central nervous system with a high heterogeneity among patients. In the clinical setting, one of the main challenges is a proper and early diagnosis for the prediction of disease activity. Current diagnosis is based on the integration of clinical, imaging, and laboratory results, with the latter based on the presence of intrathecal IgG oligoclonal bands in the cerebrospinal fluid whose detection via isoelectric focusing followed by immunoblotting represents the gold standard. Intrathecal synthesis can also be evidenced by the measurement of kappa free light chains in the cerebrospinal fluid, which has reached similar diagnostic accuracy compared to that of oligoclonal bands in the identification of patients with multiple sclerosis; moreover, recent studies have also highlighted its value for early disease activity prediction. This strategy has significant advantages as compared to using oligoclonal band detection, even though some issues remain open. Here, we discuss the current methods applied for cerebrospinal fluid analysis to achieve the most accurate diagnosis and for follow-up and prognosis evaluation. In addition, we describe new promising biomarkers, currently under investigation, that could contribute both to a better diagnosis of multiple sclerosis and to its monitoring of the therapeutic treatment response.
Key Findings
1
Intrathecal IgG oligoclonal bands (detected by isoelectric focusing and immunoblotting) remain the laboratory gold standard for MS diagnosis.
2
Kappa free light chains (kFLC) in cerebrospinal fluid have diagnostic accuracy similar to oligoclonal bands for identifying multiple sclerosis patients.
3
Measurement of kappa free light chains also shows value for predicting early disease activity in multiple sclerosis.
4
New promising cerebrospinal fluid biomarkers are under investigation that could improve MS diagnosis and monitoring of therapeutic response.
5
kFLC testing offers significant practical advantages over oligoclonal band detection, although some methodological or clinical issues remain unresolved.
Research Object
Cerebrospinal fluid biomarkers for multiple sclerosis (including intrathecal IgG oligoclonal bands and kappa free light chains)
Research Subject
Diagnostic and prognostic performance and clinical utility of CSF biomarkers for early diagnosis, disease-activity prediction, monitoring and treatment-response evaluation in multiple sclerosis
Publication Details
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2024-05-15
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