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Updated: Feb 5, 2026

Assessment of Nerve Injury-Induced Mechanical Hypersensitivity in Rats Using an Orofacial Operant Pain Assay
Published on: July 26, 2022
Histone deacetylase inhibitors prevent persistent hypersensitivity in an orofacial neuropathic pain model
Robert J Danaher1, Liping Zhang1,2, Connor J Donley2
11 Department of Oral Health Practice, College of Dentistry, University of Kentucky, Lexington, KY, USA.
Abstract:
Chronic orofacial pain is a significant health problem requiring identification of regulating processes. Involvement of epigenetic modifications that is reported for hindlimb neuropathic pain experimental models, however, is less well studied in cranial nerve pain models. Three independent observations reported here are the (1) epigenetic profile in mouse trigeminal ganglia (TG) after trigeminal inflammatory compression (TIC) nerve injury mouse model determined by gene expression microarray, (2) H3K9 acetylation pattern in TG by immunohistochemistry, and (3) efficacy of histone deacetylase (HDAC) inhibitors to attenuate development of hypersensitivity. After TIC injury, ipsilateral whisker pad mechanical sensitization develops by day 3 and persists well beyond day 21 in contrast to sham surgery. Global acetylation of H3K9 decreases at day 21 in ipsilateral TG . Thirty-four genes are significantly ( p < 0.05) overexpressed in the ipsilateral TG by at least two-fold at either 3 or 21 days post-trigeminal inflammatory compression injury. The three genes most overexpressed three days post-trigeminal inflammatory compression nerve injury are nerve regeneration-associated gene ATF3, up 6.8-fold, and two of its regeneration-associated gene effector genes, Sprr1a and Gal, up 174- and 25-fold, respectively. Although transcription levels of 25 of 32 genes significantly overexpressed three days post-trigeminal inflammatory compression return to constitutive levels by day 21, these three regeneration-associated genes remain significantly overexpressed at the later time point. On day 21, when tissues are healed, other differentially expressed genes include 39 of the top 50 upregulated and downregulated genes. Remarkably, preemptive manipulation of gene expression with two HDAC inhibitors (HDACi's), suberanilohydroxamic acid (SAHA) and MS-275, reduces the magnitude and duration of whisker pad mechanical hypersensitivity and prevents the development of a persistent pain state. These findings suggest that trigeminal nerve injury leads to epigenetic modifications favoring overexpression of genes involved in nerve regeneration and that maintaining transcriptional homeostasis with epigenetic modifying drugs could help prevent the development of persistent pain.
Insights
Epigenetic changes in trigeminal ganglia after nerve injury promote nerve regeneration gene expression. Histone deacetylase inhibitors may prevent chronic orofacial pain development.
Area of Science:
- Neuroscience
- Epigenetics
- Pain Research
Background:
- Chronic orofacial pain is a significant health issue.
- Epigenetic modifications are implicated in neuropathic pain but less studied in cranial nerve pain.
- Trigeminal inflammatory compression (TIC) injury models orofacial pain.
Purpose of the Study:
- Investigate epigenetic profiles in trigeminal ganglia (TG) following TIC injury.
- Determine the role of H3K9 acetylation in trigeminal nerve injury.
- Evaluate the efficacy of histone deacetylase (HDAC) inhibitors in managing hypersensitivity.
Main Methods:
- Gene expression microarray analysis of mouse TG post-TIC injury.
- Immunohistochemistry to assess H3K9 acetylation patterns.
- Administration of HDAC inhibitors (SAHA, MS-275) to assess pain development.
Main Results:
- TIC injury induced mechanical sensitization in the whisker pad, persisting beyond 21 days.
- Global H3K9 acetylation decreased in ipsilateral TG by day 21.
- Significant overexpression of nerve regeneration genes (ATF3, Sprr1a, Gal) was observed.
- HDAC inhibitors preemptively reduced hypersensitivity and prevented persistent pain.
Conclusions:
- Trigeminal nerve injury induces epigenetic modifications favoring nerve regeneration gene overexpression.
- Maintaining transcriptional homeostasis with epigenetic drugs may prevent chronic orofacial pain.
- Epigenetic mechanisms are crucial in the development of persistent cranial nerve pain.
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