Proteomic analysis of the spatio-temporal based molecular kinetics of acute spinal cord injury identifies a Time-and segment-specific window for effective tissue repair

Abstract

Spinal cord injury (SCI) represents a major debilitating health issue with a direct socioeconomic burden on the public and private sectors worldwide. Although several studies have been conducted to identify the molecular progression of injury sequel due from the lesion site, still the exact underlying mechanisms and pathways of injury development have not been fully elucidated. In this work, based on OMICs, 3D matrix-assisted laser desorption ionization (MALDI) imaging, cytokines arrays, confocal imaging we established for the first time that molecular and cellular processes occurring after SCI are altered between the lesion proximity, i.e. rostral and caudal segments nearby the lesion (R1-C1) whereas segments distant from R1-C1, i.e. R2-C2 and R3-C3 levels coexpressed factors implicated in neurogenesis. Delay in T regulators recruitment between R1 and C1 favor discrepancies between the two segments. This is also reinforced by presence of neurites outgrowth inhibitors in C1, absent in R1. Moreover, the presence of immunoglobulins (IgGs) in neurons at the lesion site at 3 days, validated by mass spectrometry, may present additional factor that contributes to limited regeneration. Treatment in vivo with anti-CD20 one hour after SCI did not improve locomotor function and decrease IgG expression. These results open the door of a novel view of the SCI treatment by considering the C1 as the therapeutic target. © 2016 by The American Society for Biochemistry and Molecular Biology, Inc.

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Animals, Biomarkers, Cytokines, Disease models, animal, Humans, Protein array analysis, Protein interaction maps, Proteomics, Rats, Spectrometry, mass, matrix-assisted laser desorption-ionization, Spinal cord injuries, Time factors, Alpha 1 antitrypsin, Alpha 2 macroglobulin, Apolipoprotein a1, Apolipoprotein e, Calmodulin, Carbonate dehydratase i, Cd20 antibody, Fatty acid binding protein, Fetuin b, Fibrinogen, Filamin, Galectin 1, Galectin 3, Haptoglobin, Hemoglobin beta chain, Hemopexin, Immunoglobulin g, Khellin, Kininogen, Lamin a, N(g),n(g) dimethylarginine, Phosphoprotein phosphatase, Plectin, Prosaposin, Protein disulfide isomerase, Transgelin, Tropomyosin, Unindexed drug, Vimentin, Vinculin, Biological marker, Cytokine, Animal experiment, Animal model, Animal tissue, Article, Bioinformatics, Chemical industry, Controlled study, Cytokine release, Enzyme metabolism, Glia cell, Immune response, Immunohistochemistry, In vivo study, Kinetics, Matrix assisted laser desorption ionization time of flight mass spectrometry, Microglia, Molecular dynamics, Nerve cell, Nerve fiber growth, Nervous system development, Neutrophil, Nonhuman, Priority journal, Protein expression, Protein secretion, Rat, Regulatory t lymphocyte, Spatiotemporal analysis, Spinal cord, Spinal cord injury, Time, Tissue repair, White matter, Animal, Disease model, Human, Matrix-assisted laser desorption-ionization mass spectrometry, Metabolism, Procedures, Protein microarray, Protein protein interaction, Time factor

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