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Published on: November 1, 2015
Spermine induces precocious development of the spleen in mice
1Department of Human Histology, University of Liège, Rue de Pitteurs, 20, B-4020 Liège, Belgium. ojolois@ulg.ac.be
Insights
Spermine, a natural polyamine, promotes early gut and spleen development in young mice. This suggests spermine may enhance immune system maturation during the neonatal period.
Area of Science:
- Immunology
- Developmental Biology
- Gastroenterology
Background:
- Spermine is a low molecular weight polyamine.
- It is involved in postnatal gut maturation.
- Oral spermine induces intestinal tract maturation in rats.
Purpose of the Study:
- To investigate the effect of spermine on precocious intestinal and splenic development in suckling mice.
- To determine if spermine influences immune cell development and proliferation.
Main Methods:
- Suckling mice (15-day-old) received oral spermine twice daily for 3 days.
- Spleen sections were analyzed for white pulp to total surface area ratio.
- Macrophage subsets and B-cell populations were assessed.
- B-cell proliferation rates were measured.
Main Results:
- Spermine administration increased the white pulp to total spleen surface area ratio.
- Marginal zone macrophage subsets and B-cell populations showed advanced development, comparable to 5-10 week-old mice.
- Spermine increased the proliferation rate of B-cells in pups.
Conclusions:
- Spermine induces precocious intestinal and splenic development in suckling mice.
- Spermine enhances the development and proliferation of immune cells, particularly B-cells.
- These findings suggest a potential role for spermine in immune system development and enhancing neonatal defense.
Abstract:
Spermine is a low molecular weight polyamine involved in the postnatal maturation of the gut. When it is administered orally to suckling rats, it induces maturation of the intestinal tract (liver, pancreas and small intestine). Here we show that this polyamine is able to induce precocious intestinal and splenic development in suckling mice. In fact, in 15-day-old mice which had received spermine orally twice daily for 3 days we observed an increase in the ratio of white pulp surface to total spleen surface in comparison with untreated mice. The two macrophage subsets of the marginal zone and the B-cell population were more developed and reached the development level of 5- or 10-week-old mice. The proliferation rate of B-cells was increased by spermine administration to pups. These observations suggest that spermine might play a role in immune system development; further investigation of its effects are intended, namely the evaluation of its capacity to enhance defence during the neonatal period.

