ReviewFrontiers in immunology2024
Mast cell degranulation and bradykinin-induced angioedema - searching for the missing link.
Review in Frontiers in immunology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Mast cell mediators in hereditary angioedema.Orphanet journal of rare diseases · 2026Article
- Chronic Spontaneous Urticaria with Biochemical C1 Inhibitor Deficiency: A Case Report of Suspected Overlap with Hereditary Angioedema.Clinical, cosmetic and investigational dermatology · 2026Article
- The immunomodulatory potential of bradykinin signaling in autoimmune conditions.Frontiers in immunology · 2026Review
- Activation of the Complement/Lectin Pathway, Angiopoietin/Tie-2/VEGF-System, Cytokines and Chemokines in Different Angioedema Subtypes.European journal of immunology · 2025Article
- Mast cells: key players in digestive system tumors and their interactions with immune cells.Cell death discovery · 2025Review
- A Review of Acupuncture for Allergic Disorders: Modulation of Mast Cell Regulation via Inflammatory Pathway Suppression and Cytokine Balance.International journal of general medicine · 2025Review
Corrections and comments
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Authors and funding
5 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Initiation of the bradykinin generation cascade is responsible for the occurrence of attacks in some types of angioedema without wheals. Hereditary angioedema due to C1 inhibitor deficiency (HAE-C1-INH) is one such clinical entity. In this paper, we explore the existing evidence that mast cells (MCs) degranulation may contribute to the activation of the kallikrein-kinin system cascade, followed by bradykinin formation and angioedema. We present the multidirectional effects of MC-derived heparin and other polyanions on the major components of the kinin-kallikrein system, particularly on the factor XII activation. Although, bradykinin- and histamine-mediated symptoms are distinct clinical phenomena, they share some common features, such as some similar triggers and a predilection to occur at sites where mast cells reside, namely the skin and mucous membranes. In addition, recent observations indicate a high incidence of hypersensitivity reactions associated with MC degranulation in the HAE-C1-INH patient population. However, not all of these can be explained by IgE-dependent mechanisms. Mast cell-related G protein-coupled receptor-X2 (MRGPRX2), which has recently attracted scientific interest, may be involved in the activation of MCs through a different pathway. Therefore, we reviewed MRGPRX2 ligands that HAE-C1-INH patients may be exposed to in their daily lives and that may affect MCs degranulation. We also discussed the known inter- and intra-individual variability in the course of HAE-C1-INH in relation to factors responsible for possible variability in the strength of the response to MRGPRX2 receptor stimulation. The above issues raise several questions for future research. It is not known to what extent a prophylactic or therapeutic intervention targeting the pathways of one mechanism (mast cell degranulation) may affect the other (bradykinin production), or whether the number of mast cells at a specific body site and their reactivity to triggers such as pressure, allergens or MRGPRX2 agonists may influence the occurrence of HAE-C1-INH attacks at that site.
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