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Late embryonic ritanserin exposure fails to alter normal responses to immune system stimulation in young chicks
L M Schrott1, W A Sweeney, K E Bodensteiner
1Department of Pharmacology, University of Minnesota, Minneapolis 55455, USA.
Abstract:
Prior studies in our laboratory have demonstrated that prenatal treatment with the serotonin2 (5-HT2) antagonist ritanserin is effective in blocking some of the lethal, dysmorphic, cardiovascular, and behavioral consequences of excessive direct or indirect stimulation of 5-HT2 receptors in the developing chicken. The efficacious dose range for ritanserin in these studies had very little or no effect on the above measures of toxicity when administered alone. In the present study, we extend our characterization of ritanserin's potential toxicity, or lack thereof, to include the normal behavioral and endocrine responses to immune system stimulation by the endotoxin lipopolysaccharide (LPS). LPS administration induces a syndrome collectively known as sickness behavior, manifest as altered thermoregulatory processes leading to fever, and increased serum concentrations of neuroendocrine hormones, including corticosterone. These survival-promoting responses to LPS were assessed in young chickens that had been treated with doses of ritanserin ranging from 0 to 2.7 mg/kg on embryonic day 17 (E17). When sickness behavior was assessed in 5-7-day-old chicks 1 h post-LPS injection, E17 ritanserin-treated subjects did not differ from controls. At 4-6 h post-LPS, 4-day-old chicks displayed a robust fever, and E17 ritanserin did not affect the magnitude of this response. Similarly, E17 ritanserin treatment failed to affect corticosterone concentrations 2 h post-LPS in 14-day-old chicks. Thus, ritanserin treatment during late embryogenesis, a time when it is effective against direct and indirect acting 5-HT2 agonists, failed to modify the survival promoting and beneficial interactions between the nervous, endocrine, and immune systems that are elicited following immunostimulation.
Insights
Prenatal exposure to ritanserin, a serotonin antagonist, did not alter sickness behavior or fever responses to lipopolysaccharide (LPS) in developing chickens. This indicates ritanserin does not interfere with crucial neuroendocrine-immune system interactions.
Area of Science:
- Neuroendocrinology
- Immunology
- Developmental Toxicology
Background:
- Previous studies showed prenatal ritanserin (a serotonin2 (5-HT2) antagonist) protected developing chickens from 5-HT2 receptor overstimulation.
- Ritanserin at efficacious doses did not cause toxicity on its own.
- Lipopolysaccharide (LPS) induces sickness behavior, fever, and corticosterone release, which are survival-promoting responses.
Purpose of the Study:
- To investigate the potential toxicity of ritanserin regarding normal behavioral and endocrine responses to immune stimulation.
- To assess if prenatal ritanserin treatment affects LPS-induced sickness behavior, fever, and corticosterone release in chickens.
Main Methods:
- Chickens were treated with varying doses of ritanserin on embryonic day 17 (E17).
- Sickness behavior was assessed 1 hour post-LPS injection in 5-7-day-old chicks.
- Fever response was measured 4-6 hours post-LPS in 4-day-old chicks.
- Corticosterone levels were measured 2 hours post-LPS in 14-day-old chicks.
Main Results:
- Prenatal ritanserin treatment did not alter sickness behavior 1 hour post-LPS.
- Ritanserin did not affect the magnitude of fever 4-6 hours post-LPS.
- Corticosterone concentrations 2 hours post-LPS were not affected by E17 ritanserin treatment.
Conclusions:
- Prenatal ritanserin treatment, effective against 5-HT2 agonist toxicity, did not modify beneficial neuroendocrine-immune system interactions.
- The study found no evidence of ritanserin interfering with LPS-induced sickness behavior, fever, or corticosterone responses in developing chickens.
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