Immunoinflammatory mechanisms and emerging therapies for postherpetic neuralgia

This review examines the immunoinflammatory mechanisms underlying postherpetic neuralgia (PHN) and emerging mechanism-based therapies. PHN is increasingly recognized as a neuroimmune disorder driven by varicella-zoster virus reactivation, peripheral nerve injury, cytokine-mediated inflammation, oxidative stress, glial activation, and central sensitization. Although conventional treatments, including antidepressants, anticonvulsants, topical agents, opioids, and neuromodulation, provide symptomatic relief, they rarely modify the underlying disease process. A key scientific gap is the lack of consensus on the optimal timing, patient selection, and targets for immunomodulatory, gene-based, or RNA-based interventions to prevent the transition from acute neuroinflammation to chronic pain. Therefore, this review briefly summarizes standard-of-care therapies and focuses on emerging strategies targeting upstream mechanisms, including cytokine modulation, NLRP3 inflammasome inhibition, oxidative stress regulation, viral vector-based gene therapy, RNA interference, non-coding RNA approaches, and phenotype-guided precision medicine. We propose a stage-specific, mechanism-oriented framework for future PHN management.

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Publication Details

Journal
Neurological Sciences
Published
2026-08-27
DOI
https://doi.org/10.1007/s10072-026-09354-0
Primary Topic
Herpesvirus Infections and Treatments
Type
article
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Immunoinflammatory mechanisms and emerging therapies for postherpetic neuralgia

Dan Deng, Wen-fei Luo, Shunv He
Neurological Sciences
Herpesvirus Infections and Treatments
article

Immunoinflammatory mechanisms and emerging therapies for postherpetic neuralgia

Dan Deng, Wen-fei Luo, Shunv He
article en

Abstract

This review examines the immunoinflammatory mechanisms underlying postherpetic neuralgia (PHN) and emerging mechanism-based therapies. PHN is increasingly recognized as a neuroimmune disorder driven by varicella-zoster virus reactivation, peripheral nerve injury, cytokine-mediated inflammation, oxidative stress, glial activation, and central sensitization. Although conventional treatments, including antidepressants, anticonvulsants, topical agents, opioids, and neuromodulation, provide symptomatic relief, they rarely modify the underlying disease process. A key scientific gap is the lack of consensus on the optimal timing, patient selection, and targets for immunomodulatory, gene-based, or RNA-based interventions to prevent the transition from acute neuroinflammation to chronic pain. Therefore, this review briefly summarizes standard-of-care therapies and focuses on emerging strategies targeting upstream mechanisms, including cytokine modulation, NLRP3 inflammasome inhibition, oxidative stress regulation, viral vector-based gene therapy, RNA interference, non-coding RNA approaches, and phenotype-guided precision medicine. We propose a stage-specific, mechanism-oriented framework for future PHN management.

Neurological SciencesVol. 47(9)
Integrated Chinese Medicine (China) (CN), Ningxia Seismological Bureau (CN), Ningxia Medical University (CN), Hangzhou Hospital of Traditional Chinese Medicine (CN), Ningxia Medical University General Hospital (CN)
Good health and well-being
Openalex Percentile: Top 10%
Herpesvirus Infections and Treatments
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