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Updated: Jul 15, 2026

Toxoplasma gondii Cyst Wall Formation in Activated Bone Marrow-derived Macrophages and Bradyzoite Conditions
Published on: August 12, 2010
Cellular defenses against Toxoplasma gondii in newborns
Insights
Newborns are susceptible to Toxoplasma infection because their mononuclear phagocytes (M phi) show impaired production and response to macrophage-activating factors (MAF). Gamma-interferon may be the primary MAF involved in this immune deficiency.
Area of Science:
- Immunology
- Cell Biology
- Neonatal Research
Background:
- Macrophages (M phi) activated by lymphokines are crucial for fighting intracellular pathogens like Toxoplasma gondii.
- Newborns exhibit increased susceptibility to infections, necessitating an understanding of their immune system's limitations.
Purpose of the Study:
- To investigate the reasons behind newborns' vulnerability to Toxoplasma gondii infection.
- To compare the interaction of Toxoplasma with newborn and adult mononuclear phagocytes.
- To assess the production of macrophage-activating factors (MAF) by newborn and adult immune cells.
Main Methods:
- Compared newborn and adult blood monocytes and M phi interactions with Toxoplasma gondii.
- Assessed MAF production by Concanavalin A (ConA)-stimulated newborn and adult blood mononuclear cells (MC).
- Evaluated the effects of MAF-containing supernatants on M phi anti-Toxoplasma activity.
Main Results:
- Newborn and adult monocytes killed Toxoplasma equally; Toxoplasma survival was similar in control M phi.
- Adult MAF significantly reduced Toxoplasma survival and replication in both adult and newborn M phi.
- Newborn MAF failed to inhibit Toxoplasma in newborn M phi and only partially affected it in adult M phi.
- MAF generation and response were impaired in newborn blood MC and M phi, with gamma-interferon identified as a potential key MAF.
Conclusions:
- Human newborns exhibit diminished generation and response to MAF, contributing to their susceptibility to intracellular pathogens.
- Gamma-interferon appears to be the primary MAF involved in the anti-Toxoplasma activity of M phi in this context.
Abstract:
Mononuclear phagocytes, particularly macrophages (M phi) that have been activated by lymphokines, are the principal defense against intracellular pathogens such as Toxoplasma gondii. To determine reasons for the newborns' susceptibility to Toxoplasma infection, we compared: the interaction of Toxoplasma with newborns' mononuclear phagocytes (blood monocytes and two types of newborn M phi, those derived from blood monocytes or from placental tissue) with adults' blood monocytes and monocyte-derived M phi and the production of M phi-activating lymphokines (MAF) by Concanavalin A (ConA)-stimulated newborn and adult blood mononuclear cells (MC). Newborn and adult monocytes killed Toxoplasma with equal efficiency. Similarly, survival and replication of Toxoplasma were comparable in control newborn and adult M phi. Exposure to adult ConA supernatants significantly decreased the survival and replication of Toxoplasma both in adult and newborn M phi. In contrast, exposure to cord blood ConA supernatants failed to affect the survival or the replication of Toxoplasma in newborn M phi and decreased the replication but not the survival of Toxoplasma in adult M phi. Exposure to ConA supernatants of peripheral blood MC from 2-5-d old newborns failed to affect survival or replication of Toxoplasma in newborn or adult M phi. Thus, both generation of MAF by newborn blood MC and response to newborn MAF by newborn M phi were impaired. Generation of MAF by adult blood mononuclear cells was not inhibited by cord blood MC nor was generation of MAF by cord blood MC increased by depletion of OKT8 antibody-binding cells, by depletion of adherent cells with or without addition of adult adherent cells, or by addition of indomethacin. Depletion of OKT4 antibody-binding cells abrogated the generation of MAF both by adult and cord blood MC. The activity of adult ConA supernatants was abrogated by dialysis at pH 2 or by addition of anti-gamma-interferon but not anti-alpha-interferon antibody. However, the correlation between antiviral interferon activity and anti-Toxoplasma activity was weak (r = 0.40). Enhanced M phi anti-Toxoplasma activity was not associated with detectably enhanced superoxide anion generation, nitroblue tetrazolium reduction, or phagolysosome fusion, and was not inhibited by catalase, superoxide dismutase, or mannitol. These results indicate that generation of and response to MAF is decreased in cells from human newborns and that gamma-interferon may be the major MAF under these conditions.
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