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PMID: 16809411 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Functional KCa3.1 K+ channels are required for human lung mast cell migration.

Thorax ·Vol. 61 ·No. 10 ·2006-10-00 ·Pages 880-5

Cruse G, Duffy SM, Brightling CE, Bradding P

Abstract

Mast cell recruitment and activation are critical for the initiation and progression of inflammation and fibrosis. Mast cells infiltrate specific structures in many diseased tissues such as the airway smooth muscle (ASM) in asthma. This microlocalisation of mast cells is likely to be key to disease pathogenesis. Human lung mast cells (HLMC) express the Ca2+ activated K+ channel K(Ca)3.1 which modulates mediator release, and is proposed to facilitate the retraction of the cell body during migration of several cell types. A study was undertaken to test the hypothesis that blockade of K(Ca)3.1 would attenuate HLMC proliferation and migration. HLMC were isolated and purified from lung material resected for bronchial carcinoma. HLMC proliferation was assessed by cell counts at various time points following drug exposure. HLMC chemotaxis was assayed using standard Transwell chambers (8 microm pore size). Ion currents were measured using the single cell patch clamp technique. K(Ca)3.1 blockade with triarylmethane-34 (TRAM-34) did not inhibit HLMC proliferation and clotrimazole had cytotoxic effects. In contrast, HLMC migration towards the chemokine CXCL10, the chemoattractant stem cell factor, and the supernatants from tumour necrosis factor alpha stimulated asthmatic ASM was markedly inhibited with both the non-selective K(Ca)3.1 blocker charybdotoxin and the highly specific K(Ca)3.1 blocker TRAM-34 in a dose dependent manner. Although K(Ca)3.1 blockade inhibits HLMC migration, K(Ca)3.1 is not opened by the chemotactic stimulus, suggesting that it must be involved downstream of the initial receptor-ligand interactions. Since modulation of K(Ca)3.1 can inhibit HLMC chemotaxis to diverse chemoattractants, the use of K(Ca)3.1 blockers such as TRAM-34 could provide new therapeutic strategies for mast cell mediated diseases such as asthma.

MeSH Terms
Asthma/metabolism,pathology Calcium Channel Blockers/pharmacology Carcinoma, Bronchogenic/pathology Cell Proliferation Cells, Cultured Chemotaxis/physiology Clotrimazole/pharmacology Cytokines/pharmacology Humans Lung/cytology,metabolism Mast Cells/cytology,metabolism Potassium Channels, Calcium-Activated/metabolism
Chemicals
Calcium Channel Blockers Cytokines Potassium Channels, Calcium-Activated Clotrimazole
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Cruse G
Institute for Lung Health, Department of Infection, Immunity and Inflammation, University of Leicester, Glenfield Hospital, Groby Road, Leicester LE3 9QP, UK. glenncruse@hotmail.com
Duffy S M
Brightling C E
Bradding P
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Article Info
Journal
Thorax
Abbr.
Thorax
ISSN
0040-6376
Published
2006-10-00
Epub
2006-00-29
Pages
880-5
Language
English
Region
England
NLM ID
0417353
PMCID
PMC2104766
Subset
IM
Grants
Wellcome Trust · 076264 · United Kingdom
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