Non-immunoglobulin E-mediated mechanisms of anaphylaxis
Victoria Cardona, Anna Sala-CunillPurpose of review
Anaphylaxis attributable to non-immunoglobulin E (IgE)-mediated mechanisms represents an increasingly recognized and clinically challenging subset of severe hypersensitivity reactions. This review synthesizes recent advances in the understanding of IgE-independent pathways, with emphasis on literature published in the last 18 months, and highlights their implications for precision diagnostics and therapeutic targeting.
Recent findings
Major IgE-independent mechanisms have attracted substantial recent attention. First, the Mas-related G protein-coupled receptor X2 (MRGPRX2) has been consolidated as a central mediator of IgE-independent drug reactions, with new humanized knock-in mouse models revealing its capacity to amplify both IgE-dependent and IgE-independent systemic anaphylaxis. Second, clonal mast cell disorders—including systemic mastocytosis and monoclonal mast cell activation syndrome—are now recognized as major risk amplifiers for severe and fatal anaphylaxis, particularly following Hymenoptera venom exposure, reinforcing the role of the KIT D816V mutation in lowering the mast cell activation threshold. Third, a comprehensive biomarker meta-analysis confirms that tryptase, platelet-activating factor (PAF), and urinary prostaglandin D2 each contribute differentially to non-IgE reactions, with PAF and PAF-acetylhydrolase emerging as particularly relevant in IgE-independent severity pathways.
Summary
Non-IgE-mediated anaphylaxis encompasses mechanistically distinct entities that demand tailored diagnostic algorithms. Recognizing MRGPRX2 activation, complement and IgG-dependent pathways, and clonal mast cell disease in the clinical work-up of unexplained or recurrent anaphylaxis is relevant. Emerging biomarkers and therapeutic targets – including MRGPRX2 antagonists – hold promise for transforming the management of this underdiagnosed condition.