Transection injury differentially alters the proteome of the human sural nerve

Author:

Chau Monica J.ORCID,Quintero Jorge E.ORCID,Blalock Eric,Byrum Stephanie,Mackintosh Samuel G.,Samaan Christopher,Gerhardt Greg A.,van Horne Craig G.

Abstract

Regeneration after severe peripheral nerve injury is often poor. Knowledge of human nerve regeneration and the growth microenvironment is greatly lacking. We aimed to identify the regenerative proteins in human peripheral nerve by comparing the proteome before and after a transection injury. In a unique study design, we collected closely matched samples of naïve and injured sural nerve. Naïve and injured (two weeks after injury) samples were analyzed using mass spectrometry and immunoassays. We found significantly altered levels following the nerve injury. Mass spectrometry revealed that injury samples had 568 proteins significantly upregulated and 471 significantly downregulated compared to naïve samples (q-value ≤ 0.05 and Z ≥ |2| (log2)). We used Gene Ontology (GO) pathway overrepresentation analysis to highlight groups of proteins that were significantly upregulated or downregulated with injury-induced degeneration and regeneration. Significant protein changes in key pathways were identified including growth factor levels, Schwann cell de-differentiation, myelination downregulation, epithelial-mesenchymal transition (EMT), and axonal regeneration pathways. The proteomes of the uninjured nerve compared to the degenerating/regenerating nerve may reveal biomarkers to aid in the development of repair strategies such as infusing supplemental trophic factors and in monitoring neural tissue regeneration.

Funder

Neuroscience Research Priority Area Award- University of Kentucky

Ann Hanley Parkinson’s Research Fund

University of Kentucky College of Medicine BRAIN Alliance grant

National Institutes of Health

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

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