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Accumulation and depuration of trinitrotoluene and related extractable and nonextractable (bound) residues in marine fish and mussels
Lotufo, G.R.; Belden, J.B.; Fisher, J.C.; Chen, S.-F.; Mowery, R.A.; Chambliss, C.K.; Rosen, G. (2016). Accumulation and depuration of trinitrotoluene and related extractable and nonextractable (bound) residues in marine fish and mussels. Environ. Pollut. 210: 129-136. https://dx.doi.org/10.1016/j.envpol.2015.11.049
In: Environmental Pollution. Elsevier: Barking. ISSN 0269-7491; e-ISSN 1873-6424, more
Peer reviewed article  

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Keywords
    Trinitrotoluene
    Cyprinodon variegatus Lacepède, 1803 [WoRMS]; Mytilus galloprovincialis Lamarck, 1819 [WoRMS]; Pisces [WoRMS]
    Marine/Coastal
Author keywords
    Bound residue; Nonextractable; Fish; Mussel

Authors  Top 
  • Lotufo, G.R.
  • Belden, J.B.
  • Fisher, J.C.
  • Chen, S.-F.
  • Mowery, R.A.
  • Chambliss, C.K.
  • Rosen, G.

Abstract
    To determine if trinitrotoluene (TNT) forms nonextractable residues in mussels (Mytilus galloprovincialis) and fish (Cyprinodon variegatus) and to measure the relative degree of accumulation as compared to extractable TNT and its major metabolites, organisms were exposed to water fortified with 14C-TNT. After 24 h, nonextractable residues made up 75% (mussel) and 83% (fish) while TNT accounted for 2% of total radioactivity. Depuration half-lives for extractable TNT, aminodinitrotoluenes (ADNTs) and diaminonitrotoluenes (DANTs) were fast initially (<0.5 h), but slower for nonextractable residues. Nonextractable residues from organisms were identified as ADNTs and DANTs using 0.1 M HCL for solubilization followed by liquid chromatography-tandem mass spectrometry. Recovered metabolites only accounted for a small fraction of the bound residue quantified using a radiotracer likely because of low extraction or hydrolysis efficiency or alternative pathways of incorporation of radiolabel into tissue.

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