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Regulation of brush-border enzyme activities and enterocyte migration rates in mouse small intestine

R P Ferraris1, S A Villenas, J Diamond

  • 1Department of Physiology, University of California Medical School, Los Angeles 90024-1751.

Insights

Researchers adapted the Weiser method to isolate mouse enterocytes along the crypt-villus axis. Enzyme activity and cell migration rates were analyzed, revealing diet and region-specific variations.

Area of Science:

  • Gastroenterology
  • Cell Biology
  • Animal Models

Background:

  • The Weiser method for enterocyte fractionation was established for rats and rabbits.
  • Mouse intestinal studies require methods adapted to their smaller size.

Purpose of the Study:

  • To adapt the Weiser method for fractionating mouse enterocytes.
  • To analyze brush-border enzyme activity and cell migration along the mouse crypt-villus axis.
  • To investigate the influence of diet and intestinal region on enterocyte properties.

Main Methods:

  • Adaptation of the Weiser enterocyte fractionation method for mice.
  • Histological, morphometric, enzymatic, histochemical, and immunocytochemical analyses.
  • Autoradiography using [3H]thymidine to study cell migration and lifetime.

Main Results:

  • Successful sequential fractionation of mouse enterocytes preserving viability.
  • Brush-border enzyme activities (alkaline phosphatase, sucrase, gamma-glutamyl transpeptidase) varied with diet and location.
  • Cell migration rates decreased from duodenum to ileum, while cell lifetime remained constant.
  • Dietary substrate levels (sucrose, protein) stimulated specific enzymes.

Conclusions:

  • The adapted Weiser method effectively isolates mouse enterocytes.
  • Enterocyte enzyme activity and migration are influenced by diet and intestinal region.
  • Cell lifetime is independent of intestinal region and reciprocal dietary changes.

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