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April 8, 2026Biomolecules0 citationsOpen Access

Mast Cells and Substance P: Neuroinflammatory Loops at the Molecular and Translational Clinical Levels

EAErnesto AitellaMBMarilena BrunoGAGianluca Azzellino

Key Points

  • This review aims to explore the crosstalk between mast cells and substance P and its implications in neuro-inflammation.
  • Conducted a narrative review of existing literature
  • Focused on molecular mechanisms and receptor-mediated signaling
  • Interpreted clinical models in the context of pseudoallergic conditions
  • Discussed future directions and translational models for therapy
  • Identified significant roles of mast cells and substance P in neuro-immune interactions
  • Highlighted potential for innovative therapies targeting these pathways
  • Emphasized the need for better translational models in clinical research

Abstract

Mast cells, characterized by a broad repertoire of surface receptors, are increasingly recognized for activation pathways extending beyond the classical IgE/FcεRI axis, particularly in the context of neurogenic inflammation. Substance P (SP), a neuropeptide of the tachykinin family, is a potent activator of mast cells, inducing the release of histamine, cytokines, and other inflammatory mediators. Through complex bidirectional communication, mast cells and SP play a pivotal role in neuro–immune interactions. This narrative review provides an updated overview of mast cell–SP crosstalk, with a focus on underlying molecular mechanisms, receptor-mediated signaling pathways, and their contribution to pathophysiological processes. In addition, we aim to reinterpret established clinical models within the spectrum of pseudoallergic conditions and to explore innovative, etiology-driven therapeutic strategies. Finally, we discuss future perspectives and highlight the need for robust translational models to support clinical and pharmacological research.

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Cite This Study

Aitella et al. (2026) studied this question.

synapsesocial.com/papers/69d5f00974eaea4b11a79826https://doi.org/10.3390/biom16040539
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