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Updated: Sep 23, 2026

Analyzing the Functions of Mast Cells In Vivo Using 'Mast Cell Knock-in' Mice
Published on: May 27, 2015
Developments in Mast Cell Research
Adrian M Piliponsky1, Teal S Hallstrand2
1Center for Immunity and Immunotherapies, Seattle Children's Research Institute, Seattle, Washington, United States of America; Departments of Pediatrics,; Pathology and; Global Health, University of Washington School of Medicine, Seattle, Washington, United States of America.
Abstract:
This review summarizes major advances in mast cell (MC) research published between January 2024 and December 2025. Recent discoveries have reshaped our understanding of MC biology, revealing previously unrecognized roles in brain development, mucosal immunity, neuroimmune communication, and cancer. High-resolution structural studies have provided new insights into high affinity receptor for immunoglobulin (Ig)E (FcεRI) signaling, while emerging evidence has expanded the functional repertoire of inflammasome components and established Mas-related G-protein coupled receptor member (MRGPRX)2 as a central receptor mediating IgE-independent MC activation. Single-cell transcriptomic and spatial profiling studies have uncovered remarkable MC heterogeneity, identifying specialized populations with distinct homeostatic and pathogenic functions across tissues. These findings have also redefined the contribution of MCs to early-life allergic disease, anaphylaxis, pain, infection, and tumor immunity, highlighting their context-dependent functions. In parallel, major therapeutic advances-including antibodies targeting the KIT-stem cell factor (SCF) axis, next-generation anti-IgE therapies, Bruton's tyrosine kinase (BTK) inhibitors, and strategies targeting type 2 inflammatory pathways-are accelerating the development of more selective treatments for MC-driven disorders. Advances in experimental platforms, including human skin MC cultures, receptor-humanized and humanized mouse models, and computational pathology, are further expanding the tools available to investigate MC biology and accelerate translational research. Together, these conceptual, technological, and therapeutic advances are shaping the next generation of MC-targeted therapies.
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