Genetic pathway analysis reveals a major role for extracellular matrix organization in inflammatory and neuropathic pain

Jeffrey S. Mogil, Loren J. Martin, Marc Parisien, Marjo Piltonen, Luda Diatchenko, Shannon Tansley, Arkady Khoutorsky, Alexander Samoshkin, Nehmé El-Hachem, Concetta Dagostino, Massimo Allegri
2019-01-03

SCID:  54.1/zv63qcxk
Chronic pain is a debilitating and poorly treated condition whose underlying mechanisms are poorly understood. Nerve injury and inflammation cause alterations in gene expression in tissues associated with pain processing, supporting molecular and cellular mechanisms that maintain painful states. However, it is not known whether transcriptome changes can be used to reconstruct a molecular pathophysiology of pain. In the current study, we identify molecular pathways contributing to chronic pain states through the analysis of global changes in the transcriptome of dorsal root ganglia, spinal cord, brain, and blood in mouse assays of nerve injury- and inflammation-induced pain. Comparative analyses of differentially expressed genes identified substantial similarities between 2 animal pain assays and with human low-back pain. Furthermore, the extracellular matrix (ECM) organization has been found the most commonly regulated pathway across all tested tissues in the 2 animal assays. Examination of human genome-wide association study data sets revealed an overrepresentation of differentially expressed genes within the ECM organization pathway in single nucleotide polymorphisms most strongly associated with human back pain. In summary, our comprehensive transcriptomics analysis in mouse and human identified ECM organization as a central molecular pathway in the development of chronic pain.
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2019-01-03
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Jeffrey S. Mogil
Loren J. Martin
Marc Parisien
Marjo Piltonen
Luda Diatchenko
Shannon Tansley
Arkady Khoutorsky
Alexander Samoshkin
Nehmé El-Hachem
Concetta Dagostino
Massimo Allegri
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