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April 19, 2026Brain Communications0 citationsOpen Access

A novel multiplexed biomarker panel reveals key molecular pathways in progressive multiple sclerosis

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CHChristina N. HeissLNLenka NovakovaMAMarkus Axelsson

Key Points

  • The aim is to identify biomarkers and molecular pathways linked to progression in multiple sclerosis, particularly the PIRMA phenomenon.
  • Utilized NUcleic acid Linked Immuno-Sandwich Assay (NULISA) for quantifying immune-related proteins.
  • Analyzed CSF and plasma samples from individuals with different MS subtypes and healthy controls.
  • Defined PIRMA and conversion to secondary progressive MS using longitudinal clinical data.
  • Distinct proteomic signatures identified in CSF of RRMS and iPMS patients compared to controls.
  • Low CSF concentrations of KIT ligand (KITLG) predicted conversion to SPMS and future PIRMA events.
  • Interleukin 1 beta and Interleukin 36 gamma levels were elevated in RRMS patients who developed SPMS.

Abstract

Abstract Progressive multiple sclerosis is characterized by gradual neurological decline, often occurring independently of relapses or MRI activity - a phenomenon known as progression independent of relapse and MRI activity (PIRMA). Despite the effectiveness of disease-modifying therapies in controlling inflammatory activity, identifying individuals at risk of PIRMA remains an unmet clinical need. The objective of this exploratory study was to identify biomarkers and underlying molecular pathways associated with multiple sclerosis progression and especially PIRMA. Using the NUcleic acid Linked Immuno-Sandwich Assay (NULISA) inflammatory panel, we quantified 250 immune-related proteins in CSF and plasma from 49 controls, 49 patients with early active relapsing-remitting multiple sclerosis (RRMS), and 33 patients with inactive progressive multiple sclerosis (iPMS). Longitudinal clinical data were used to define PIRMA and conversion to secondary progressive multiple sclerosis (SPMS). We identified distinct proteomic signatures in CSF of both RRMS and iPMS patients compared with controls, with no significant differences in plasma. Both were associated with elevated markers of adaptive immunity, while iPMS showed shift towards innate immune markers. Among RRMS patients, low baseline CSF concentrations of KIT ligand (KITLG) predicted both conversion to SPMS and future PIRMA events. Receiver operating characteristic analysis demonstrated KITLG’s potential as a prognostic biomarker. Additionally, plasma concentrations of Interleukin 1 beta and 36 gamma were elevated in RRMS patients who later developed SPMS. A model selection analysis identified a two-protein logistic regression model including Interleukin 1 beta and Interleukin 36 gamma as the best-performing combination (area under the curve = 0.990). Our findings reveal distinct immunological profiles across multiple sclerosis subtypes and identify KITLG as a promising biomarker for predicting disease progression and PIRMA. These results highlight potential targets for therapeutic intervention and demonstrate the utility of NULISA in uncovering novel molecular signatures in multiple sclerosis.

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Cite This Study

Heiss et al. (2026) studied this question.

synapsesocial.com/papers/69e4741c010ef96374d8fe9ahttps://doi.org/10.1093/braincomms/fcag142
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