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Updated: Aug 14, 2026

Application of a Mouse Ligated Peyer’s Patch Intestinal Loop Assay to Evaluate Bacterial Uptake by M cells
Published on: December 17, 2011
Selective transport of microparticles across Peyer's patch follicle-associated M cells from mice and rats
M W Smith1, N W Thomas, P G Jenkins
1Department of Cellular Physiology, Babraham Institute, Cambridge, UK.
Abstract:
M cells are specialized structures in the Peyer's patch follicle-associated epithelium capable of taking up bacteria, viruses and other pathogens for later presentation to the gut-associated lymphoid tissue. The present work studies how coating microspheres with different proteins affects their ability to be taken up by M cells under near physiological conditions in vivo. The later appearance of microspheres in intestinal lymph has also been measured by flow cytometry. The protein preparations used in these experiments included bovine serum albumin (bSA), human immunoglobulin G (hIgG), secretory immunoglobulin A (hIgA), bovine growth hormone (bGH) and bGH complexed with an IgG antibody raised against bGH (bGH-Ab). Selectivity in binding of these microspheres to M cells, determined by confocal microscopy, was bGH < bSA < hIgG (mice) and bGH < bGH-Ab (rats and mice). A similar selectivity was seen for microsphere entry into M cells (bGH < bSA < hIgG; bGH < bGH-Ab). The appearance of protein-coated microspheres in rat mesenteric lymph showed a similar selectivity to that found for binding and entry into M cells (bGH < bGH-Ab). This latter selectivity was also found for hIgA-coated microspheres (bSA < hIgA). Preservation of transport selectivity throughout transcytosis highlights the unique importance of the M cell surface as being the primary site determining which type of antigen can be presented subsequently to the gut immune system. The possibility that this is a transient or phasic property of the M cell surface and that this could have physiological relevance is also discussed.
Insights
M cells in the gut selectively uptake protein-coated microspheres based on surface proteins. This selectivity is maintained during transport, highlighting the M cell surface
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- M cells are specialized epithelial cells in Peyer's patches.
- They are crucial for initiating immune responses by sampling gut contents.
- Understanding M cell uptake mechanisms is key to developing oral vaccines and therapies.
Purpose of the Study:
- To investigate how protein coatings on microspheres influence their uptake by M cells in vivo.
- To determine if M cell uptake selectivity is preserved during transcytosis into the intestinal lymph.
Main Methods:
- Coating microspheres with various proteins: bovine serum albumin (bSA), human immunoglobulin G (hIgG), secretory immunoglobulin A (hIgA), bovine growth hormone (bGH), and bGH-Ab complex.
- Assessing microsphere binding and entry into M cells using confocal microscopy.
- Quantifying microsphere appearance in intestinal lymph via flow cytometry.
Main Results:
- M cell binding and entry selectivity varied by protein coating: bGH < bSA < hIgG (mice) and bGH < bGH-Ab (rats and mice).
- Transport selectivity into mesenteric lymph mirrored binding and entry selectivity.
- hIgA-coated microspheres showed selectivity (bSA < hIgA).
Conclusions:
- The M cell surface plays a primary role in determining antigen presentation to the gut immune system.
- Protein coating significantly impacts M cell uptake and subsequent immune surveillance.
- This selectivity may be a transient or phasic property of M cells with physiological relevance.

