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Application of a Mouse Ligated Peyer’s Patch Intestinal Loop Assay to Evaluate Bacterial Uptake by M cells
Published on: December 17, 2011
The effect of phospholipids and mucin on bacterial internalization in an enterocyte-cell culture model
N Usui1, C J Ray, R A Drongowski
1Section of Pediatric Surgery, F3970 Mott Children's Hospital, 1500 East Medical Center Drive, Ann Arbor, Michigan 48109-0245, USA.
Abstract:
A primary component of the intestinal mucous layer that functions as a barrier to luminal bacteria is mucin, a high-molecular-weight glucoprotein. In addition, the mucous layer also contains other important elements such as phospholipids (PLs), which may effect bacterial translocation (BTL). It has been reported that mucin inhibits Escherichia coli translocation; however, the effect of PLs on intestinal permeability is still controversial. We have recently reported that the concentration of mucous PLs is higher in neonatal as compared to adult rabbits. The functional significance of these biochemical differences on BTL remains to be determined. The aim of this study was to evaluate the effect of PL and mucin composition on BTL in a human enterocyte-cell culture model. Human enterocyte Caco-2 cells were seeded in 24-well tissue-culture plates and grown for 14 days to confluence. The monolayers were pretreated with phosphate buffered saline as control, 10 mg/ml or 20 mg/ml mucin, 0. 5 mM or 1.0 mM PL mixture based on neonatal (NPL) and adult (APL) composition, and 10 mg/ml mucin with 0.5 mM either APL or NPL mixtures 30 min before a 120-min incubation period at 37 degrees C with 10(8) colony forming units (CFU) of E. coli C25. Non-internalized bacteria were killed by the addition of gentamicin. Internalized bacteria were quantified by counting CFU from enterocyte-cell lysates grown on MacConkey's agar. Mucin inhibited bacterial internalization, while both compositions of PLs promoted it. Mucin added to the PL solution also diminished the stimulatory effect of PLs on bacterial internalization. These results indicate that the increased concentration of PLs found in the intestinal mucous layer of neonates, and/or the alteration in the balance between PLs and mucin, may play a role in the increased BTL seen in neonates.
Insights
Phospholipids (PLs) promote bacterial translocation across the intestinal barrier, while mucin inhibits it. Neonatal PL concentrations may increase bacterial translocation in infants.
Area of Science:
- Gastroenterology
- Microbiology
- Biochemistry
Background:
- The intestinal mucous layer, primarily mucin, acts as a barrier against luminal bacteria.
- Phospholipids (PLs) are also present in mucus, but their role in bacterial translocation (BTL) is debated.
- Mucin inhibits Escherichia coli translocation, but PLs' effect on intestinal permeability is unclear.
Purpose of the Study:
- To investigate the impact of phospholipid and mucin composition on bacterial translocation.
- To determine the functional significance of differing PL concentrations in neonatal versus adult rabbits.
Main Methods:
- Human enterocyte Caco-2 cells were cultured to confluence.
- Monolayers were pretreated with mucin, neonatal (NPL) or adult (APL) PL mixtures, or combinations.
- Cells were incubated with E. coli, and internalized bacteria were quantified.
Main Results:
- Mucin demonstrated an inhibitory effect on bacterial internalization.
- Both neonatal and adult PL mixtures promoted bacterial internalization.
- Mucin mitigated the stimulatory effect of PLs on bacterial internalization.
Conclusions:
- Increased PL concentration and altered PL-to-mucin balance in neonates may contribute to higher bacterial translocation rates.
- These findings suggest a potential mechanism for increased BTL in neonates.

