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.

Experimental Physiology
|September 1, 1995
PubMed

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.

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