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Updated: Jul 12, 2026

Isolation and Characterization of Neutrophil-derived Microparticles for Functional Studies
Published on: March 2, 2018
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
Abstract:
Intestinal microparticle uptake is important for drug delivery, environmental pollution and multiple organ dysfunction syndrome. This paper explores further whether uptake occurs at mucosa associated lymphoid tissue (MALT) via the microfold (M) cells of Peyer's patch domes or through villous epithelium. It does this by comparing the results of exposure of either severe combined immunodeficient (SCID) mice (lacking MALT) or normal BALBc mice, to oral gavage with 2 microm fluorescent latex microparticles. At 5 and 30 min after gavage, full circumference samples along the small intestine were processed for fluorescence microscopy and microparticle numbers were collected for surface and tissue sites. Uptake occurred in both BALBc and SCID mice within 5 min of particle administration and increased further in the following 25 min. In BALBc mice, almost all particles (96%) are in non-MALT sites in MALT circumference samples, with very few at the domes: uptake was also substantial in entirely villous samples. In SCID mice, particle numbers were only slightly lower than those of the BALBc mice, and occurred exclusively by the villous route. These findings confirm that the villous uptake route must be considered when assessing the extent of the dose delivered following pharmaceutical or toxicological oral exposure to microparticles.
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.

