ReviewFrontiers in immunology2026
Unraveling the autoimmune architecture of pemphigus: from B-cell depletion to network-based immune engineering.
Review in Frontiers in immunology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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8 authors.
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Abstract
Pemphigus encompasses autoimmune blistering diseases driven by autoantibodies to desmosomal proteins. Disruption of keratinocyte adhesion produces acantholysis and epidermal fragility. Anti-CD20 B-cell depletion and IgG lowering strategies have transformed care, but many patients relapse, some variants respond incompletely, and durable drug-independent tolerance remains uncommon across variants. These gaps highlight that pemphigus is not a simple linear B-cell disorder, but an autoantibody disease sustained by a network linking the innate immunity, the adaptive lymphocytes, and the stromal niches. In this review, we focus on pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus/paraneoplastic autoimmune multiorgan syndrome, and IgA pemphigus as representative variants within this network. We place these entities within a conceptual type 1, type 2, and type 3 immunity framework and summarize how central and peripheral B-cell tolerance can fail. We further consider current and emerging therapies as partial interventions within this network and outline next-generation strategies that modulate innate circuits, rewire survival pathways, restore antigen-specific regulation, and shift the adaptive autoimmune response toward a more tolerogenic state. Framing pemphigus in this way may help move the field from empiric immunosuppression toward precise immune engineering with the goal of durable immune reset and long-term drug-independent remission.
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