Uptake of inert microparticles in normal and immune deficient mice

S H Smyth1, S Feldhaus, U Schumacher

  • 1The Queen's University of Belfast, 71 University Road, Belfast, UK. s.smyth@har.mrc.ac.uk

Insights

Oral microparticle uptake occurs primarily through the villous epithelium, not just specialized M cells. This finding is crucial for understanding drug delivery and toxicological exposure via the gut.

Area of Science:

  • Pharmacology
  • Toxicology
  • Gastroenterology

Background:

  • Intestinal microparticle uptake influences drug delivery, environmental exposure, and disease.
  • The primary route of microparticle absorption in the intestine remains debated.

Purpose of the Study:

  • To investigate whether intestinal microparticle uptake occurs via M cells in Peyer's patches or through the villous epithelium.
  • To compare uptake in mice with and without mucosa-associated lymphoid tissue (MALT).

Main Methods:

  • Oral gavage of fluorescent latex microparticles in normal (BALBc) and immunodeficient (SCID) mice.
  • Analysis of small intestine samples using fluorescence microscopy at 5 and 30 minutes post-gavage.

Main Results:

  • Microparticle uptake occurred rapidly (within 5 minutes) in both mouse models.
  • In normal mice, 96% of uptake was in non-MALT sites, predominantly villous epithelium.
  • SCID mice, lacking MALT, showed substantial uptake exclusively via the villous route.

Conclusions:

  • Intestinal villous epithelium is a significant route for microparticle uptake.
  • This uptake pathway must be considered in oral pharmaceutical and toxicological assessments.
  • Specialized M cells are not the sole or primary pathway for microparticle absorption.

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