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Mast cells as a unique hematopoietic lineage and cell system: From Paul Ehrlich's visions to precision medicine concepts

Journal

THERANOSTICS
Volume 10, Issue 23, Pages 10743-10768

Publisher

IVYSPRING INT PUBL
DOI: 10.7150/thno.46719

Keywords

histamine; IgE receptor; KIT; mast cell activation; mastocytosis; tryptase

Funding

  1. Austrian Science Fund (FWF) [F4701-B28, F4704-B28, P32470-B]
  2. Division of Intramural Research, NIAID
  3. NIH, USA
  4. US-Israel Binational Foundation
  5. Department of Pathology at Stanford University, Stanford, CA
  6. Sean N. Parker Center for Allergy and Asthma Research at Stanford University, Stanford, CA

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The origin and functions of mast cells (MCs) have been debated since their description by Paul Ehrlich in 1879. MCs have long been considered 'reactive bystanders' and 'amplifiers' in inflammatory processes, allergic reactions, and host responses to infectious diseases. However, knowledge about the origin, phenotypes and functions of MCs has increased substantially over the past 50 years. MCs are now known to be derived from multipotent hematopoietic progenitors, which, through a process of differentiation and maturation, form a unique hematopoietic lineage residing in multiple organs. In particular, MCs are distinguishable from basophils and other hematopoietic cells by their unique phenotype, origin(s), and spectrum of functions, both in innate and adaptive immune responses and in other settings. The concept of a unique MC lineage is further supported by the development of a distinct group of neoplasms, collectively referred to as mastocytosis, in which MC precursors expand as clonal cells. The clinical consequences of the expansion and/or activation of MCs are best established in mastocytosis and in allergic inflammation. However, MCs have also been implicated as important participants in a number of additional pathologic conditions and physiological processes. In this article, we review concepts regarding MC development, factors controlling MC expansion and activation, and some of the fundamental roles MCs may play in both health and disease. We also discuss new concepts for suppressing MC expansion and/or activation using molecularly-targeted drugs.

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