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Investigations into the bioavailability and bioaccumulation of mercury and other trace metals to the sea cucumber, Sclerodactyla briareus, using in vitro solubilization
Authors:McAloon Kelly Margaret  Mason Robert Peter
Institution:

a 5700 Olde Mill Ct. #149, Alexandria, VA 22309, USA

b Chesapeake Biological Laboratory, University of Maryland, Center for Environmental Science, 1 Williams Street, P.O. Box 38, Solomons, MD 20688, USA

Abstract:The in vitro solubilization and bioaccumulation of mercury and other trace metals by the intestinal fluid of the sea cucumber, Sclerodactyla briareus, was investigated. Sediments were incubated with intestinal fluid and the intestinal fluid was analyzed for the in vitro experiments. Experiments examined both procedural effects of in vitro solubilization and bioaccumulation of trace metals by the sea cucumber. Both solubilization and bioaccumulation were compared among the different metals. This comparison revealed that monomethylmercury (MMHg) solubilization and bioaccumulation is greater than HgI; Cd solubilization is higher than MMHg and HgI; and Cu and Pb solubilization is similar to MMHg and slightly higher than HgI. Solubilization and bioaccumulation was found to be very low, except for Cd, which had high relative solubilization but low bioaccumulation. It was concluded that while solubilization could be the rate-limiting step for certain metals, other factors, such as depuration and membrane transport, may influence overall bioaccumulation of the other metals.
Keywords:Mercury  Solubilization  Bioavailability  Bioaccumulation  Trace metals  Sclerodactyla briareus
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