Transcriptomic profiling of sciatic nerves and dorsal root ganglia reveals site-specific effects of prediabetic neuropathy

糖尿病前期 转录组 炎症 坐骨神经 周围神经病变 外周神经系统 生物 医学 免疫系统 中枢神经系统 内科学 内分泌学 糖尿病 免疫学 2型糖尿病 基因表达 基因 遗传学
作者
Stéphanie Eid,Sarah E. Elzinga,Kai Guo,Lucy M. Hinder,John M. Hayes,Crystal Pacut,Emily J. Koubek,Junguk Hur,Eva L. Feldman
出处
期刊:Translational Research [Elsevier BV]
卷期号:270: 24-41
标识
DOI:10.1016/j.trsl.2024.03.009
摘要

Abstract

Peripheral neuropathy (PN) is a severe and frequent complication of obesity, prediabetes, and type 2 diabetes characterized by progressive distal-to-proximal peripheral nerve degeneration. However, a comprehensive understanding of the mechanisms underlying PN, and whether these mechanisms change during PN progression, is currently lacking. Here, gene expression data were obtained from distal (sciatic nerve; SCN) and proximal (dorsal root ganglia; DRG) injury sites of a high-fat diet (HFD)-induced mouse model of obesity/prediabetes at early and late disease stages. Self-organizing map and differentially expressed gene analyses followed by pathway enrichment analysis identified genes and pathways altered across disease stage and injury site. Pathways related to immune response, inflammation, and glucose and lipid metabolism were consistently dysregulated with HFD-induced PN, irrespective of injury site. However, regulation of oxidative stress was unique to the SCN while dysregulated Hippo and Notch signaling were only observed in the DRG. The role of the immune system and inflammation in disease progression was supported by an increase in the percentage of immune cells in the SCN with PN progression. Finally, when comparing these data to transcriptomic signatures from human patients with PN, we observed conserved pathways related to metabolic dysregulation across species, highlighting the translational relevance of our mouse data. Our findings demonstrate that PN is associated with distinct site-specific molecular re-programming in the peripheral nervous system, identifying novel, clinically relevant therapeutic targets.
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