多发性硬化
蛋白质组学
生物
生物标志物
生物标志物发现
脑脊液
定量蛋白质组学
生物信息学
计算生物学
微阵列
聚糖
神经学
蛋白质组
免疫学
糖组学
神经免疫学
质谱法
作者
Jakob M. Bader,Christine Makarov,Sabrina Richter,Maximilian Thomas Strauss,Friederike Held,Maria Wahle,Michal Lorenz,Lara Pöschl,Patricia Skowronek,Marvin Thielert,Achim Berthele,Wen-Feng Zeng,Constantin Ammar,Isabell Bludau,Benjamin Schubert,Fabian J. Theis,Christiane Gasperi,Bernhard Hemmer,Matthias Mann
出处
期刊:Cell
[Cell Press]
日期:2026-02-25
卷期号:189 (7): 2128-2147.e25
标识
DOI:10.1016/j.cell.2026.01.017
摘要
Cerebrospinal fluid (CSF) is central to neurological diagnostics, yet biomarkers are lacking for many clinical needs. To enable its large-scale proteomic characterization, we developed a high-throughput mass spectrometry workflow quantifying approximately 1,500 proteins per CSF sample across 5,000 individuals, covering a spectrum of neurological disorders. This revealed proteomic alterations associated with blood-CSF barrier impairment, age, and sex, enabling deconvolution of shared and disease-specific signatures. We then focused on multiple sclerosis (MS), using an improved analytical technology that quantified 2,100 proteins per sample. From these data, we derived a 22-protein panel that distinguished MS from related inflammatory diseases and outperformed established markers in challenging cases. A targeted mass spectrometry assay using isotope-labeled standards validated this panel in an independent cohort, offering a clinically compatible format. Additionally, we highlight proteins of therapeutic interest and demonstrate proteome-based staging of individuals along the relapsing-progressive MS spectrum, which correlates with clinical outcomes.
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