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Prothymocyte activity is reduced by perinatal 2,3,7,8-tetrachlorodibenzo-p-dioxin exposure
J S Fine1, T A Gasiewicz, N C Fiore
1Department of Biophysics, University of Rochester School of Medicine, New York.
Abstract:
The mechanism by which exposure to 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) produces thymic atrophy and cell-mediated immune suppression in experimental animals is poorly understood. A previous study from our laboratory found that terminal deoxynucleotidyl transferase-synthesizing lymphocyte stem cell populations in fetal liver and neonatal bone marrow, but not thymus, were profoundly altered after perinatal TCDD exposure, implying that a defect in the prothymocyte population in liver and marrow may play a role in the etiology of thymic atrophy in TCDD-exposed animals. In this report, we present results of experiments designed to directly assess the prothymocyte compartment in mice exposed to TCDD perinatally by examining the ability of these stem cells to reconstitute an irradiated thymus. Maternal TCDD exposure (15 micrograms/kg) caused a significant impairment of both fetal liver and neonatal bone marrow prothymocyte activity. These alterations occurred at tissue concentrations less than 200 fg of TCDD per mg. TCDD treatment also resulted in a mild reduction in colony-forming unit-spleen in these organs and a decrease in colony-forming unit-granulocyte-macrophage in fetal and neonatal liver, but not bone marrow. Overall, these data provide evidence that alterations to early stages of T-lymphopoiesis, at the level of the prothymocyte, may be involved in the development of TCDD-induced thymic atrophy and cell-mediated immunosuppression.
Insights
Perinatal exposure to 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) impairs prothymocyte activity in fetal liver and bone marrow. This defect in early T-lymphopoiesis may cause TCDD-induced thymic atrophy and immune suppression.
Area of Science:
- Immunotoxicology
- Developmental toxicology
- T-cell development
Background:
- The mechanism of TCDD-induced thymic atrophy and immune suppression is unclear.
- Previous studies suggest altered lymphocyte stem cell populations after perinatal TCDD exposure.
- A defect in prothymocyte populations may contribute to TCDD's effects on the thymus.
Purpose of the Study:
- To directly assess the prothymocyte compartment in mice exposed to TCDD perinatally.
- To investigate the role of prothymocyte alterations in TCDD-induced thymic atrophy.
- To understand the early stages of T-lymphopoiesis affected by TCDD.
Main Methods:
- Maternal exposure to TCDD (15 µg/kg) during gestation.
- Assessment of prothymocyte activity by thymus reconstitution assays.
- Analysis of stem cell populations including colony-forming unit-spleen and colony-forming unit-granulocyte-macrophage.
Main Results:
- Perinatal TCDD exposure significantly impaired fetal liver and neonatal bone marrow prothymocyte activity.
- These alterations occurred at very low TCDD tissue concentrations (<200 fg/mg).
- TCDD also caused mild reductions in colony-forming unit-spleen and colony-forming unit-granulocyte-macrophage in specific tissues.
Conclusions:
- Alterations in prothymocyte populations are implicated in TCDD-induced thymic atrophy.
- Early T-lymphopoiesis defects may underlie TCDD's immunosuppressive effects.
- These findings highlight TCDD's impact on critical early immune cell development stages.