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September 27, 2025Antioxidants24 citationsOpen Access

Oxidative Stress, Inflammation, and Cellular Senescence in Neuropathic Pain: Mechanistic Crosstalk

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BSBojan StojanovićIBIvana Milivojcević BevcMSMilica Dimitrijevic Stojanovic

Key Points

  • Chronic neuropathic pain is sustained by a cycle of oxidative stress and inflammation triggered by systemic nerve injury.
  • Elevated reactive oxygen species lead to mitochondrial dysfunction and activate pathways stabilizing p53 and inducing senescence.
  • Redox imbalance engages neuroimmune signaling pathways, promoting production of cytokines that exacerbate pain sensation.
  • The interplay between cellular senescence and neuroinflammation establishes a self-sustaining cycle contributing to chronic pain.

Abstract

Neuropathic pain is a chronic condition driven by intertwined mechanisms of oxidative stress, inflammation, and cellular senescence. Nerve injury and metabolic stress elevate reactive oxygen and nitrogen species, disrupt mitochondrial function, and activate the DNA-damage response, which stabilizes p53 and induces p16/p21-mediated cell-cycle arrest. These events promote a senescence-associated secretory phenotype (SASP) rich in cytokines, chemokines, and prostanoids that amplify neuroimmune signaling. In the spinal dorsal horn and dorsal root ganglia, microglia and astroglia respond to redox imbalance and danger cues by engaging NF-κB and MAPK pathways, increasing COX-2–dependent prostaglandin synthesis, and releasing mediators such as IL-1β and BDNF that enhance synaptic transmission and reduce inhibitory tone through KCC2 dysfunction. At the periphery, persistent immune-glial cross-talk lowers activation thresholds of nociceptors and sustains ectopic firing, while impaired autophagy and mitophagy further exacerbate mitochondrial dysfunction and ROS production. Collectively, these processes establish a feed-forward loop in which redox imbalance triggers senescence programs and SASP, SASP perpetuates neuroinflammation, and neuroinflammation maintains central sensitization—thereby consolidating a self-sustaining redox–senescence–inflammatory circuit underlying neuropathic pain chronicity.

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Cite This Study

Stojanović et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc5236ca5https://doi.org/10.3390/antiox14101166
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