PubMed HealthSearch

PubMed · 2449998

Mast cell polymorphisms. Present concepts, future directions.

Abstract

Although mast cells are widely distributed in the body, their functions are poorly known. The elucidation of mast cell function is complicated by growing evidence that mast cells are heterogeneous. Recent studies of mast cell ontogeny suggest that microenvironmental stimuli control the phenotypic expression of parts of the genome leading to subtype differences in a common lineage. Mast cells influence cell proliferation, differentiation, and activation in a range of target cells, although until recently they were considered important only in immediate hypersensitivity. However, they function in delayed-type hypersensitivity, potentiate cytotoxicity of eosinophils and macrophages, and are cytotoxic for certain targets themselves. Mast cell mediators influence blood flow and vascular permeability and facilitate angiogenesis. Numerous mast cell mediators are immunoregulatory. In vitro experiments have begun to investigate the role of mast cells in fibrotic diseases. Further knowledge of mast cell heterogeneity will provide the basis for new therapies in inflammatory diseases of the intestine and other organs.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D Befus, H Fujimaki, T D Lee, M Swieter. 1988. Mast cell polymorphisms. Present concepts, future directions.. https://doi.org/10.1007/bf01538127

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Localized deficiencies of folic acid in aerodigestive tissues.

The notion that requirements for folic acid may be higher in some tissues than others, resulting in localized deficiencies in spite of blood levels in the normal range was first suggested by the observation of megaloblastic changes in the cervical epithelium that responded to folate supplementation. Theoretically, such deficiencies may arise from elevated folate turnover in response to rapid tissue proliferation or repair; inactivation or alteration of its function by external agents such as tobacco, alcohol, or drugs; or altered metabolism or tissue uptake caused by an inborn error. Marginal dietary intake could aggravate these effects on cells at risk. Evidence for the possible existence of localized folate deficiencies in the aerodigestive tract includes lower circulating folate levels in smokers as compared with nonsmokers; yet lower circulating levels in smokers with bronchial metaplasia; lower folate levels in scrapings of the buccal mucosa of smokers than non-smokers; apparent improvement in bronchial atypical metaplasia in smokers supplemented with folic acid; lower erythrocyte folate levels and higher prevalence of cellular features compatible with folate deficiency in geographic areas and individuals in South Africa at high risk for esophageal cancer; and a trend toward a lower prevalence of colonic dysplasia in ulcerative colitis patients who use folic acid supplements. These observations, as well as animal and in vitro studies, also suggest that folate deficiency may be co-carcinogenic. Further research in this area will be aided by the development of animal models of localized folate deficiency and of methodologies capable of measuring folate levels in minute quantities of tissues and exfoliated cells.

Colitis, Ulcerative