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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.
Abstract:
We adapted the Weiser method, previously used to fractionate enterocytes of rat and rabbit intestine, to the much smaller intestine of mice. By histological, morphometric, enzymatic, histochemical, and immunocytochemical evidence, the method succeeded in removing mouse enterocytes sequentially along the crypt-villus axis while preserving cell viability and minimizing mixing among cell fractions. Activities of three brush-border enzymes [alkaline phosphatase (AP), sucrase, and gamma-glutamyl transpeptidase (GGP)] varied simultaneously with dietary substrate level, intestinal region, and position along the crypt-villus axis. All three enzymes proved to be stimulated by dietary substrate: sucrase by dietary sucrose, AP and GGP by dietary protein. We also studied cell migration rates and life-times by autoradiography and by our modified Weiser method. By both methods, injected [3H]thymidine after short times was virtually confined to crypt cells, whereas after 40-48 h it was distributed from the crypt over the whole villus except for the villus tip. Villus height decreased twofold from duodenum to ileum, parallel to the regional decrease in cell migration rates because the cell lifetime of 68 h was independent of region. When we varied dietary carbohydrate and protein levels reciprocally while maintaining protein above the maintenance level, both cell migration rate and cell lifetime proved independent of diet.
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.