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Iron homeostasis, complement, and coagulation cascade as CSF signature of cortical lesions in early multiple sclerosis.

Roberta Magliozzi | Simon Hametner | Francesco Facchiano | Damiano Marastoni | Stefania Rossi | Marco Castellaro | Alberto Poli | Federico Lattanzi | Andrea Visconti | Richard Nicholas | Richard Reynolds | Salvatore Monaco | Hans Lassmann | Massimiliano Calabrese
Annals of clinical and translational neurology | 2019

Intrathecal inflammation, compartmentalized in cerebrospinal fluid (CSF) and in meningeal infiltrates, has fundamental role in inflammation, demyelination, and neuronal injury in cerebral cortex in multiple sclerosis (MS). Since the exact link between intrathecal inflammation and mechanisms of cortical pathology remains unknown, we aimed to investigate a detailed proteomic CSF profiling which is able to reflect cortical damage in early MS.

Pubmed ID: 31675181

Research resources used in this publication

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Antibodies used in this publication

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Associated grants

  • Agency: Italian Ministry of Health, International
    Id: GR-2013-02-355322
  • Agency: Italian MS Foundation grant, International
    Id: FISM 16/17/F14

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This is a list of tools and resources that we have found mentioned in this publication.


DAVID (tool)

RRID:SCR_001881

Bioinformatics resource system including web server and web service for functional annotation and enrichment analyses of gene lists. Consists of comprehensive knowledgebase and set of functional analysis tools. Includes gene centered database integrating heterogeneous gene annotation resources to facilitate high throughput gene functional analysis.

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STRING (tool)

RRID:SCR_005223

Database of known and predicted protein interactions. The interactions include direct (physical) and indirect (functional) associations and are derived from four sources: Genomic Context, High-throughput experiments, (Conserved) Coexpression, and previous knowledge. STRING quantitatively integrates interaction data from these sources for a large number of organisms, and transfers information between these organisms where applicable. The database currently covers 5''214''234 proteins from 1133 organisms. (2013)

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BioPlex (tool)

RRID:SCR_016144

Database of cell lines with each expressing a tagged version of a protein from the ORFeome collection. The overarching project goal is to determine protein interactions for every member of the collection.

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