Second-order Kinetics of DTPA and Plutonium in Rat Plasma
Author(s) -
Guthrie Miller,
Deepesh Poudel,
John Klumpp,
Raymond A. Guilmette,
Dunstana Melo
Publication year - 2017
Publication title -
radiation research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.918
H-Index - 124
eISSN - 1938-5404
pISSN - 0033-7587
DOI - 10.1667/rr14852.1
Subject(s) - plutonium , kinetics , chemistry , radiochemistry , chemical kinetics , actinide , plutonium 239 , reaction rate constant , nuclear chemistry , nuclear physics , physics , quantum mechanics , fission , neutron
In 2008, Serandour et al. reported on their in vitro experiment involving rat plasma samples obtained after an intravenous intake of plutonium citrate. Different amounts of DTPA were added to the plasma samples and the percentage of low-molecular-weight plutonium measured. Only when the DTPA dosage was three orders of magnitude greater than the recommended 30 μmol/kg was 100% of the plutonium apparently in the form of chelate. These data were modeled assuming three competing chemical reactions with other molecules that bind with plutonium. Here, time-dependent second-order kinetics of these reactions are calculated, intended eventually to become part of a complete biokinetic model of DTPA action on actinides in laboratory animals or humans. The probability distribution of the ratio of stability constants for the reactants was calculated using Markov Chain Monte Carlo. These calculations substantiate that the inclusion of more reactions is needed in order to be in agreement with known stability constants.
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