Evidence map›Paper›PMID 41223072›Full record

ArticlePhysiological genomics2026

Transcriptome profiling suggests molecular sexual dimorphism in lumbosacral dorsal root ganglia and sex-specific mechanisms underlying visceral pain.

Sathish Kumar Yesupatham, Anna P Malykhina, Alison Xiaoqiao Xie

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Article in Physiological genomics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

3 authors.

Sathish Kumar YesupathamDivision of Urology, Department of Surgery, School of MedicineUniversity of Colorado Anschutz Medical Campus, Aurora, Colorado, United States.
Anna P MalykhinaDivision of Urology, Department of Surgery, School of MedicineUniversity of Colorado Anschutz Medical Campus, Aurora, Colorado, United States.
Alison Xiaoqiao XieDivision of Urology, Department of Surgery, School of MedicineUniversity of Colorado Anschutz Medical Campus, Aurora, Colorado, United States.ORCID 0000-0003-4395-8510

Funding

University of Colorado Cancer Center Support Grant - Lung Cancer Patient-Derived Xenografts with Autologous Human Immune SystemsP30CA046934 · NCI · UNIVERSITY OF COLORADO DENVER · PI James V Degregori · 1988 to 2026
$117.0M
Activating Peripheral Glia to Relieve Visceral Pain in Animal Models of Urological Chronic Pelvic Pain Syndrome (UCPPS)R01DK129260 · NIDDK · UNIVERSITY OF COLORADO DENVER · PI XIE, XIAOQIAO · 2021 to 2025
$1.7M
HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) R01DK129260NCI NIH HHS P30 CA046934NIDDK NIH HHS R01 DK129260
6 · The paper itself

Abstract

Dorsal root ganglia (DRG) are essential for transmitting sensory information from visceral organs to the central nervous system. Sensory neuronal hyperactivity and glial reactivity have been reported in DRG in animal models of chronic pain, yet the molecular mechanisms contributing to the pathogenesis of visceral pain remain unclear. In this study, we performed transcriptome profiling of lumbosacral DRG in a mouse model of chronic pelvic pain, focusing on mapping the gene and signaling pathway changes associated with visceral hypersensitivity in lumbosacral DRG transmitting bladder afferent signals. Using the bulk RNA-sequencing method, we identified differentially expressed genes in the lumbosacral DRG between control mice and mice exhibiting visceral pain symptoms, with striking sex differences in identified genes. Hierarchical gene clustering analysis and Ingenuity Pathways Analysis both revealed sex-specific signaling pathway activation associated with visceral pain conditions, including glial activation and nociceptive sensitization in males and heightened immune activation in females. Interestingly, our data also showed enriched gene expression linked to extracellular matrix and immune functions in female control animals compared with male control animals, suggesting molecular sexual dimorphism in sensory ganglia. Finally, our data identified common genes and signaling pathway changes involved in visceral hypersensitivity in both sexes. This study is the first molecular and signaling pathway characterization in the lumbosacral DRG in the context of bladder-origin visceral pain. The sex differences in the molecular profile of lumbosacral DRG in healthy animals and in animals exhibiting visceral pain symptoms suggest sex-specific visceral pain etiology, despite similar symptoms.

Indexed as

Ganglia, SpinalGene Expression ProfilingSex CharacteristicsTranscriptomeVisceral PainAnimalsDisease Models, AnimalFemaleLumbosacral RegionMaleMiceMice, Inbred C57BLSignal Transductiondorsal root gangliamolecular sexual dimorphismneuroimmune functiontranscriptome profilingvisceral pain

Identifiers

PMID41223072
PMCPMC12704462

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.