RNA profiling of human dorsal root ganglia reveals sex differences in mechanisms promoting neuropathic pain

Author:

Ray Pradipta R1ORCID,Shiers Stephanie1,Caruso James P12,Tavares-Ferreira Diana1,Sankaranarayanan Ishwarya1,Uhelski Megan L3ORCID,Li Yan3ORCID,North Robert Y4,Tatsui Claudio4,Dussor Gregory1,Burton Michael D1ORCID,Dougherty Patrick M3ORCID,Price Theodore J1ORCID

Affiliation:

1. Department of Neuroscience and Center for Advanced Pain Studies, University of Texas at Dallas , Richardson, TX , USA

2. Department of Neurological Surgery, University of Texas Southwestern Medical Center , Dallas, TX , USA

3. Department of Pain Medicine, Division of Anesthesiology, MD Anderson Cancer Center , Houston, TX , USA

4. Department of Neurosurgery, MD Anderson Cancer Center , Houston, TX , USA

Abstract

Abstract Neuropathic pain is a leading cause of high-impact pain, is often disabling and is poorly managed by current therapeutics. Here we focused on a unique group of neuropathic pain patients undergoing thoracic vertebrectomy where the dorsal root ganglia is removed as part of the surgery allowing for molecular characterization and identification of mechanistic drivers of neuropathic pain independently of preclinical models. Our goal was to quantify whole transcriptome RNA abundances using RNA-seq in pain-associated human dorsal root ganglia from these patients, allowing comprehensive identification of molecular changes in these samples by contrasting them with non-pain-associated dorsal root ganglia. We sequenced 70 human dorsal root ganglia, and among these 50 met inclusion criteria for sufficient neuronal mRNA signal for downstream analysis. Our expression analysis revealed profound sex differences in differentially expressed genes including increase of IL1B, TNF, CXCL14 and OSM in male and CCL1, CCL21, PENK and TLR3 in female dorsal root ganglia associated with neuropathic pain. Coexpression modules revealed enrichment in members of JUN-FOS signalling in males and centromere protein coding genes in females. Neuro-immune signalling pathways revealed distinct cytokine signalling pathways associated with neuropathic pain in males (OSM, LIF, SOCS1) and females (CCL1, CCL19, CCL21). We validated cellular expression profiles of a subset of these findings using RNAscope in situ hybridization. Our findings give direct support for sex differences in underlying mechanisms of neuropathic pain in patient populations.

Funder

NIH

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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