Impact of sex differences in brain response to infection with Plasmodium berghei
Male
0301 basic medicine
Erythrocytes
Epinephrine
Plasmodium berghei
Dopamine
Malaria, Cerebral
Brain
Gene Expression
Catalase
Nitric Oxide
Parasitemia
Glutathione
3. Good health
Mice, Inbred C57BL
Disease Models, Animal
Mice
Norepinephrine
03 medical and health sciences
Malondialdehyde
Animals
Female
10. No inequality
Oxidation-Reduction
DOI:
10.1007/s00436-015-4803-6
Publication Date:
2015-10-24T23:21:48Z
AUTHORS (4)
ABSTRACT
Malaria is considered to be one of the most prevalent diseases in the world. Severity of the disease between males and females is very important in clinical research areas. In this study, we investigated the impact of sex differences in brain response to infection with Plasmodium berghei. Male and female C57Bl/6 mice were infected with P. berghei-infected erythrocytes. The infection induced a significant change in weight loss in males (-7.2 % ± 0.5) than females (-4.9 % ± 0.6). The maximum parasitemia reached about 15 % at day 9 postinfection. Also, P. berghei infection caused histopathological changes in the brain of mice. These changes were in the form of inflammation, hemorrhage, and structural changes in Purkinje cells. In addition, P. berghei was able to induce a marked oxidative damage in mice brain. The infection induced a significant increase in male brain glutathione than females while the brain catalase level was significantly increased in infected females than infected males. Moreover, the change in brain neurotransmitters, dopamine, epinephrine, norepinephrine, and serotonin, was more in infected males than infected females. At the molecular level, P. berghei was able to induce upregulations of Adam23, Cabp1, Cacnb4, Glrb, and Vdac3-mRNA in the brain of mice. These genes were significantly upregulated in infected males than in infected females. In general, P. berghei could induce structural, biochemical, and molecular alterations in mice brain. Severity of these alterations was different according to sex of mice.
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