Mercury and Selenium in Blood and Epidermis of Bottlenose Dolphins (Tursiops truncatus) from Sarasota Bay, FL: Interaction and Relevance to Life History and Hematologic Parameters
- 25 March 2008
- journal article
- research article
- Published by Springer Nature in Ecohealth
- Vol. 5 (3) , 360-370
- https://doi.org/10.1007/s10393-008-0164-2
Abstract
Blood and epidermal biopsies from free-ranging Tursiops truncatus captured and released during either summer or winter health assessments in Sarasota Bay, FL, were evaluated for concentrations of mercury, selenium, stable isotopes (δ13C and δ15N), and blood glutathione peroxidase activity in conjunction with routine hematology and serum chemistry panels. Major objectives were to: 1) quantify and describe relationships among mercury, selenium, glutathione peroxidase, and stable isotopes of C and N in blood and epidermis; 2) elucidate major parameters that influence blood mercury and glutathione peroxidase activity; 3) relate measures of tissue mercury, selenium, and glutathione peroxidase to specific ecological, hematological, morphological, or life history parameters, including season, sex, age, and trophic level. Mercury in both tissues examined is almost exclusively methylmercury. Epidermal concentrations of mercury and selenium reflect their respective amounts in blood, albeit at several times blood concentrations of mercury. The strong association between blood mercury and serum selenium, in conjunction with a lack of significant correlation between blood mercury and glutathione peroxidase, implies that a substantial proportion of blood mercury is affiliated with another selenium-containing moiety or is related to recent dietary intakes (e.g., trophic level, intensive fish consumption). Circulating blood mercury may be described in terms of serum selenium concentration, along with interaction terms among serum selenium, blood δ15N, and age. Current selenium concentrations in Sarasota Bay dolphins appear adequate for maintenance of blood glutathione peroxidase activity. However, dolphins evidently are subject to seasonal exacerbation of oxidative stress, which might render them more vulnerable to toxic effects of mercury.Keywords
This publication has 43 references indexed in Scilit:
- Hematology, Serum Chemistry, and Cytology Findings from Apparently Healthy Atlantic Bottlenose Dolphins (Tursiops truncatus) Inhabiting the Estuarine Waters of Charleston, South CarolinaAquatic Mammals, 2006
- Methylmercury inhibits type II 5′-deiodinase activity in NB41A3 neuroblastoma cellsToxicology Letters, 2006
- The Roles of Serum Selenium and Selenoproteins on Mercury Toxicity in Environmental and Occupational ExposureEnvironmental Health Perspectives, 2006
- Cold-induced hyperthyroidism produces oxidative damage in rat tissues and increases susceptibility to oxidantsThe International Journal of Biochemistry & Cell Biology, 2004
- Bottlenose Dolphins as Marine Ecosystem Sentinels: Developing a Health Monitoring SystemEcohealth, 2004
- Intracellular storage of mercury and selenium in different marine vertebratesMarine Ecology Progress Series, 1996
- DOLPHIN THYROID AND ADRENAL HORMONES: CIRCULATING LEVELS IN WILD AND SEMIDOMESTICATED TURSIOPS TRUNCATUS, AND INFLUENCE OF SEX, AGE, AND SEASONMarine Mammal Science, 1996
- Whole Blood Selenium Levels and Glutathione Peroxidase Activity in Erythrocytes of Black-Tailed DeerThe Journal of Wildlife Management, 1991
- Differential effects of methylmercuric chloride and mercuric chloride on the histochemistry of rat thyroid peroxidase and the thyroid peroxidase activity of isolated pig thyroid cells.Journal of Histochemistry & Cytochemistry, 1989
- Selenium-dependent and non-selenium-dependent glutathione peroxidases in human tissue extractsBiochimica et Biophysica Acta (BBA) - General Subjects, 1983