4.5 Article

Electrical Stimulation of C6 Glia-Precursor Cells In Vitro Differentially Modulates Gene Expression Related to Chronic Pain Pathways

期刊

BRAIN SCIENCES
卷 9, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/brainsci9110303

关键词

electrical stimulation; oxidative stress; glial cells; gene expression; cell culture

资金

  1. Millennium Pain Center, Bloomington, Illinois, USA
  2. Department of Chemistry at Illinois State University, Normal, Illinois, USA
  3. Lumbrera Research at Illinois State University
  4. Department of Chemistry at Illinois State University

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Glial cells comprise the majority of cells in the central nervous system and exhibit diverse functions including the development of persistent neuropathic pain. While earlier theories have proposed that the applied electric field specifically affects neurons, it has been demonstrated that electrical stimulation (ES) of neural tissue modulates gene expression of the glial cells. This study examines the effect of ES on the expression of eight genes related to oxidative stress and neuroprotection in cultured rodent glioma cells. Concentric bipolar electrodes under seven different ES types were used to stimulate cells for 30 min in the presence and absence of extracellular glutamate. ES consisted of rectangular pulses at 50 Hz in varying proportions of anodic and cathodic phases. Real-time reverse-transcribed quantitative polymerase chain reaction was used to determine gene expression using the Delta Delta C-q method. The results demonstrate that glutamate has a significant effect on gene expression in both stimulated and non-stimulated groups. Furthermore, stimulation parameters have differential effects on gene expression, both in the presence and absence of glutamate. ES has an effect on glial cell gene expression that is dependent on waveform composition. Optimization of ES therapy for chronic pain applications can be enhanced by this understanding.

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