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Published on: June 30, 2014
Intestinal microvascular exchange in the rat during luminal perfusion with formyl-methionyl-leucyl-phenylalanine
D N Granger1, B J Zimmerman, E Sekizuka
1Department of Physiology and Biophysics, Louisiana State University Medical Center, Shreveport.
Abstract:
Formyl-methionyl-leucyl-phenylalanine (FMLP), a peptide released from bacteria in the gut lumen, is known to both attract and activate neutrophils. The aim of this study was to determine whether luminal perfusion with 1 microM FMLP alters microvascular permeability, blood flow, and neutrophil migration in the small intestine of control rats and rats treated with antineutrophil serum. Microvascular permeability to total plasma proteins was determined from an analysis of lymphatic protein fluxes. Myeloperoxidase activity was used as an index of tissue neutrophil count. Intestinal blood flow was measured using radiolabeled microspheres and the reference blood sample method. In control rats, luminal perfusion with FMLP caused significant increases in blood flow, lymph flow, lymph protein clearance, and microvascular permeability, but it did not alter tissue myeloperoxidase activity. In rats treated with antineutrophil serum, tissue myeloperoxidase levels were reduced by approximately 55%, and the FMLP-induced changes in lymph flow, lymph protein clearance, and microvascular permeability were significantly attenuated. In vitro experiments with isolated rat neutrophils revealed that 1 microM FMLP elicits significant chemotaxis and degranulation yet minimally enhances superoxide production. The results of this study indicate that peptides produced by microorganisms in the gut lumen can increase intestinal microvascular permeability. The FMLP-induced alterations in microvascular exchange appear to be mediated by activated neutrophils.
Insights
Gut bacteria peptides, like formyl-methionyl-leucyl-phenylalanine (FMLP), increase intestinal microvascular permeability. This effect is mediated by activated neutrophils, impacting gut health.
Area of Science:
- Gastroenterology
- Immunology
- Microbiology
Background:
- Formyl-methionyl-leucyl-phenylalanine (FMLP) is a bacterial peptide known to activate neutrophils.
- Neutrophil activation plays a role in inflammatory processes within the gut.
Purpose of the Study:
- To investigate the effect of luminal FMLP perfusion on intestinal microvascular permeability, blood flow, and neutrophil migration.
- To determine if antineutrophil serum treatment affects FMLP-induced changes in the small intestine.
Main Methods:
- Luminal perfusion with 1 microM FMLP in control and antineutrophil serum-treated rats.
- Measurement of microvascular permeability via lymphatic protein fluxes.
- Assessment of neutrophil infiltration using myeloperoxidase activity.
- Intestinal blood flow measurement using radiolabeled microspheres.
Main Results:
- FMLP perfusion increased intestinal blood flow, lymph flow, lymph protein clearance, and microvascular permeability in control rats.
- In antineutrophil serum-treated rats, FMLP-induced microvascular changes were significantly attenuated, with reduced neutrophil counts.
- In vitro, FMLP induced neutrophil chemotaxis and degranulation.
Conclusions:
- Bacterial peptides in the gut lumen can enhance intestinal microvascular permeability.
- FMLP-induced increases in microvascular exchange are mediated by activated neutrophils.

