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May 17, 2026Parasite Immunology3 citations

Infection‐Driven Autoimmune Amplification Versus Molecule‐Specific Immune Modulation: The Dual Role of Toxocara canis in Autoimmunity

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IAIman F. Abou-El-Naga

Key Points

  • This review analyzes the immune response to Toxocara canis, emphasizing its complex roles in autoimmunity.
  • Reviewed the effects of Toxocara canis on autoimmune pathways and immune responses.
  • Examined roles of live infection versus parasite-derived molecules.
  • Assessed implications for immunomodulatory therapies using experimental models.
  • Live T. canis infection increases Th1/Th17 inflammation, exacerbating autoimmune conditions.
  • Parasite molecules modulate immune responses to enhance regulatory T-cells and anti-inflammatory effects.
  • Highlighting potential therapeutic avenues using T. canis-derived immunomodulatory agents.

Abstract

ABSTRACT Loss of immune tolerance and sustained inflammatory signalling are central features in the pathogenesis of autoimmune diseases. Although helminth infections are often associated with immunoregulatory protection, accumulating evidence suggests that Toxocara canis may represent an important exception. This review highlights the dual and context‐dependent effects of Toxocara canis on autoimmune pathways, where live infection can amplify autoreactivity while parasite‐derived molecules exert selective immunomodulatory effects. During acute infection, larval migration induces strong Th1/Th17‐skewed inflammation accompanied by tissue injury, autoantigen release, and enhanced antigen presentation, lowering immune tolerance thresholds. Molecular mimicry, polyclonal B‐cell activation, and persistent antigenic stimulation may further promote autoantibody production and chronic immune dysregulation. Neuroinvasion and inflammation sustain cytokine networks implicated in disorders such as multiple sclerosis, systemic lupus erythematosus, rheumatoid arthritis, and autoimmune‐associated epilepsy. Experimental models of autoimmune encephalomyelitis show that live T. canis infection exacerbates disease severity through amplification of pathogenic Th17 responses. In contrast, parasite excretory/secretory molecules including mucins, C‐type lectins, cystatins, serpins and extracellular vesicle cargo, modulate pattern recognition receptor signalling and downstream PI3K/Akt, MAPK and NF‐κB pathways. These effects promote regulatory T‐cell expansion, alternatively activated macrophage polarization, and anti‐inflammatory cytokine production, highlighting parasite‐derived molecules as potential templates for targeted immunomodulatory therapies.

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Iman F. Abou-El-Naga (2026) studied this question.

synapsesocial.com/papers/6a095c2c7880e6d24efe243chttps://doi.org/10.1111/pim.70085
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