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Updated: May 30, 2026

Quantitative Assessment of Human Neutrophil Migration Across a Cultured Bladder Epithelium
Published on: November 7, 2013
Neutrophil transintestinal epithelial migration to CXCR2 ligands is regulated by adenosine
Andrew W Stadnyk1, Svetlana O Carrigan, Anthony R Otley
1Department of Pediatrics, Dalhousie University, Dalhousie, Canada. astadnyk@dal.ca
Objectives:
Polymorphonuclear leukocytes (PMN) feature prominently in the mucosa, including in crypt abscesses, of patients with inflammatory bowel disease, yet the mediators that are responsible for this migration are unknown. We discovered that CXCR2 chemokines (reportedly elevated in the mucosa) have reduced potency recruiting PMN across epithelial cell monolayers versus acellular filters, so the objective was to determine what molecules modify transepithelial PMN migration to CXCR2 chemokines.
Methods:
Transwells with T84 colon carcinoma monolayers or no epithelium were used with adolescent patient peripheral blood PMN and CXCL8 (interleukin-8 [IL-8], binds CXCR1 and CXCR2), CXCL5 (epithelial-derived neutrophil chemoattractant-78 [ENA-78]), or CXCL1 (Gro-α, both bind CXCR2) as chemoattractants.
Results:
IL-8 was equally potent at recruiting PMN across filters and T84 monolayers growing on the filters. In contrast, ENA-78 and Gro-α were significantly less potent at recruiting PMN across monolayers than across bare filters. Blocking CXCR1 reduced PMN migration across monolayers to IL-8. We ruled out superoxide radicals possibly enhancing migration to IL-8 by using PMN from a patient with chronic granulomatous disease. PMN constitutively produce adenosine, so we added adenosine deaminase to the transwell assays and observed increased migration to ENA-78 across T84 monolayers. The level of migration was further enhanced by pretreating PMN with adenosine before adding the cells to the assay in the presence of the deaminase.
Conclusions:
PMN migration mediated by CXCR2 through the epithelium is regulated by adenosine. Adenosine appears to reduce transepithelial migration by influencing β2 integrin use on the PMN.
Insights
Adenosine regulates polymorphonuclear leukocyte (PMN) migration through the epithelium to CXCR2 chemokines. This molecule reduces transepithelial PMN migration by affecting β2 integrin function.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Polymorphonuclear leukocytes (PMN) are abundant in inflammatory bowel disease (IBD) mucosa.
- Mediators driving PMN migration across the epithelium in IBD are largely unknown.
- CXCR2 chemokines show reduced potency in recruiting PMN across epithelial monolayers.
Purpose of the Study:
- To identify molecules that modulate transepithelial PMN migration.
- To investigate the role of adenosine in CXCR2-mediated PMN transmigration.
- To understand the mechanisms of PMN infiltration in IBD.
Main Methods:
- Utilized Transwell systems with T84 colon carcinoma monolayers and acellular filters.
- Employed peripheral blood PMN from adolescent patients.
- Tested chemoattractants CXCL8 (IL-8), CXCL5 (ENA-78), and CXCL1 (Gro-α) targeting CXCR1/CXCR2.
Main Results:
- IL-8 equally recruited PMN across filters and monolayers.
- ENA-78 and Gro-α showed reduced potency across monolayers compared to filters.
- Adenosine deaminase increased ENA-78-mediated migration across monolayers, further enhanced by PMN pre-treatment with adenosine.
Conclusions:
- Adenosine regulates CXCR2-mediated PMN migration across the epithelium.
- Adenosine appears to inhibit transepithelial PMN migration.
- This regulation may involve modulation of PMN β2 integrin function.
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