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Effects of Toxoplasma Gondii Infection on the Brain

Overview
Journal Schizophr Bull
Specialty Psychiatry
Date 2007 Feb 27
PMID 17322557
Citations 107
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Abstract

Toxoplasma gondii, an intracellular protozoan parasite, can infect humans in 3 different ways: ingestion of tissue cysts, ingestion of oocysts, or congenital infection with tachyzoites. After proliferation of tachyzoites in various organs during the acute stage, the parasite forms cysts preferentially in the brain and establishes a chronic infection, which is a balance between host immunity and the parasite's evasion of the immune response. A variety of brain cells, including astrocytes and neurons, can be infected. In vitro studies using non-brain cells have demonstrated profound effects of the infection on gene expression of host cells, including molecules that promote the immune response and those involved in signal transduction pathways, suggesting that similar effects could occur in infected brain cells. Interferon-gamma is the essential mediator of the immune response to control T. gondii in the brain and to maintain the latency of chronic infection. Infection also induces the production of a variety of cytokines by microglia, astrocytes, and neurons, which promote or suppress inflammatory responses. The strain (genotype) of T. gondii, genetic factors of the host, and probably the route of infection and the stage (tachyzoite, cyst, or oocyst) of the parasite initiating infection all contribute to the establishment of a balance between the host and the parasite and affect the outcome of the infection.

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References
1.
Suzuki Y, Orellana M, Schreiber R, Remington J . Interferon-gamma: the major mediator of resistance against Toxoplasma gondii. Science. 1988; 240(4851):516-8. DOI: 10.1126/science.3128869. View

2.
Sims T, Hay J, Talbot I . An electron microscope and immunohistochemical study of the intracellular location of Toxoplasma tissue cysts within the brains of mice with congenital toxoplasmosis. Br J Exp Pathol. 1989; 70(3):317-25. PMC: 2040570. View

3.
Ferguson D, HUTCHISON W, Pettersen E . Tissue cyst rupture in mice chronically infected with Toxoplasma gondii. An immunocytochemical and ultrastructural study. Parasitol Res. 1989; 75(8):599-603. DOI: 10.1007/BF00930955. View

4.
Suzuki Y, Conley F, Remington J . Importance of endogenous IFN-gamma for prevention of toxoplasmic encephalitis in mice. J Immunol. 1989; 143(6):2045-50. View

5.
Suzuki Y, Remington J . The effect of anti-IFN-gamma antibody on the protective effect of Lyt-2+ immune T cells against toxoplasmosis in mice. J Immunol. 1990; 144(5):1954-6. View