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April 4, 2026Cells0 citationsOpen Access

Peroxiredoxins in Stroke: Friends and Foes

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YWYingfeng WanJZJingwei ZhangLBLiheng Bian

Key Points

  • To synthesize knowledge on the roles of peroxiredoxins in ischemic and hemorrhagic stroke and their impact on brain injury.
  • Review of literature on peroxiredoxin functions in stroke.
  • Analysis of isoform-specific roles and mechanisms of action.
  • Discussion on the potential of peroxiredoxins as biomarkers and therapeutic targets.
  • Intracellular peroxiredoxins protect neurons and maintain blood-brain barrier integrity.
  • Extracellular peroxiredoxins activate inflammation through toll-like receptor signaling.
  • Certain isoforms provide mitochondrial and endothelial protection while others influence inflammation.

Abstract

Stroke, a leading cause of mortality and long-term disability, induces complex cascades of oxidative stress and neuroinflammation that exacerbate brain injury. The peroxiredoxin (Prx; Prdx) family, composed of six thiol-dependent antioxidant enzymes (Prx1–6), plays a pivotal role in regulating redox homeostasis and immune responses in the brain. This review synthesizes current knowledge on the isoform-specific roles of Prxs in both ischemic and hemorrhagic stroke, highlighting their dual and context-dependent functions. Intracellular Prxs generally protect neurons and maintain blood–brain barrier (BBB) integrity, while extracellular Prxs—particularly Prx1 and Prx2—act as damage-associated molecular patterns (DAMPs), activating toll-like receptor signaling and amplifying inflammation. Isoforms such as Prx3 and Prx4 exhibit mitochondrial and endothelial protective effects, respectively, whereas Prx6 demonstrates complex roles influenced by its acidic, Ca2+-independent, phospholipase A2 (aiPLA2) activity and cellular localization. We also discuss emerging tools for studying Prx biology and explore the translational potential of Prxs as biomarkers and therapeutic targets. Ultimately, a nuanced understanding of Prx dynamics offers new avenues for stroke diagnosis, prognosis, and treatment.

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Cite This Study

Wan et al. (2026) studied this question.

synapsesocial.com/papers/69d0af52659487ece0fa52f8https://doi.org/10.3390/cells15070640
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