Phagocytosis as a Biomarker of Immunotoxicity in Wildlife Species Exposed to Environmental Xenobiotics1
- 1 June 2000
- journal article
- Published by Society for Integrative and Comparative Biology in American Zoologist
- Vol. 40 (3), 412-420
- https://doi.org/10.1668/0003-1569(2000)040[0412:paaboi]2.0.co;2
Abstract
In the present paper, we are reviewing experimental evidence demonstrating that phagocytic cells, such as macrophages, may be used as a biomarker of immunotoxicity in wildlife studies. We will first present data obtained after exposure in vitro with selected chemicals showing the comparative sensitivity of phagocytic cells from different species. These results demonstrate that, at least for metals, each species produce a similar shaped dose-response curve, although considerate interspecies sensitivity is evident. These results also demonstrate the sensitivity of the phagocytic activity, suggesting indeed that this function could be used to monitor exposure to chemicals. The similar shaped dose-response curves imply that mechanisms of action may also be similar. Furthermore, based on the relative speices sensitivity, sentinel species could be selected for field monitoring. Such an approach may also be useful to establish correction factors required to extrapolate results between species. This sensitivity of the phagocytic activity of macrophages will be further under controlled conditions in laboratory animal models. Finally, the reliability of this approach will be demonstrated using case studies with wildlife species.Keywords
This publication has 31 references indexed in Scilit:
- Determination of vitellogenin-like properties inMya arenaria hemolymph (Saguenay Fjord, Canada): A potential biomarker for endocrine disruptionEnvironmental Toxicology and Water Quality, 1999
- Flow cytometry as a tool to monitor the disturbance of phagocytosis in the clam Mya arenaria hemocytes following in vitro exposure to heavy metals.Toxicology, 1999
- Immunotoxicity of Heavy Metals in Relation to Great LakesEnvironmental Health Perspectives, 1995
- Developmental Effects of DioxinsEnvironmental Health Perspectives, 1995
- Dose-Response Assessment for Developmental Toxicity II. Comparison of Generic Benchmark Dose Estimates with No Observed Adverse Effect LevelsFundamental and Applied Toxicology, 1994
- Effect of manganese ions on the immune response of carp (Cyprinus carpio) against Yersinia ruckeriDevelopmental & Comparative Immunology, 1988
- The effect of cadmium on antibody responses to antigens with different cellular requirementsInternational Journal of Immunopharmacology, 1986
- Effects of heavy metals on phagocytosis by Molluscan hemocytesMarine Environmental Research, 1984
- The effect of lead acetate on the immune response in miceToxicology and Applied Pharmacology, 1981
- The effect of methylmercury, tetraethyl lead, and sodium arsenite on the humoral immune response in miceToxicology and Applied Pharmacology, 1980