Modelling DTPA therapy following Am contamination in rats.


Journal

Radiation and environmental biophysics
ISSN: 1432-2099
Titre abrégé: Radiat Environ Biophys
Pays: Germany
ID NLM: 0415677

Informations de publication

Date de publication:
11 2023
Historique:
received: 14 04 2023
accepted: 25 09 2023
medline: 8 11 2023
pubmed: 13 10 2023
entrez: 13 10 2023
Statut: ppublish

Résumé

A major challenge in modelling the decorporation of actinides (An), such as americium (Am), with DTPA (diethylenetriaminepentaacetic acid) is the fact that standard biokinetic models become inadequate for assessing radionuclide intake and estimating the resulting dose, as DTPA perturbs the regular biokinetics of the radionuclide. At present, most attempts existing in the literature are empirical and developed mainly for the interpretation of one or a limited number of specific incorporation cases. Recently, several approaches have been presented with the aim of developing a generic model, one of which reported the unperturbed biokinetics of plutonium (Pu), the chelation process and the behaviour of the chelated compound An-DTPA with a single model structure. The aim of the approach described in this present work is the development of a generic model that is able to describe the biokinetics of Am, DTPA and the chelate Am-DTPA simultaneously. Since accidental intakes in humans present many unknowns and large uncertainties, data from controlled studies in animals were used. In these studies, different amounts of DTPA were administered at different times after contamination with known quantities of Am. To account for the enhancement of faecal excretion and reduction in liver retention, DTPA is assumed to chelate Am not only in extracellular fluids, but also in hepatocytes. A good agreement was found between the predictions of the proposed model and the experimental results for urinary and faecal excretion and accumulation and retention in the liver. However, the decorporation from the skeletal compartment could not be reproduced satisfactorily under these simple assumptions.

Identifiants

pubmed: 37831188
doi: 10.1007/s00411-023-01046-z
pii: 10.1007/s00411-023-01046-z
pmc: PMC10628027
doi:

Substances chimiques

Pentetic Acid 7A314HQM0I
Americium VW92PHU2UY
Chelating Agents 0
Plutonium 53023GN24M

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

483-495

Informations de copyright

© 2023. The Author(s).

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Auteurs

Manuel Kastl (M)

Institute of Radiation Medicine, Helmholtz Center Munich, German Research Center for Environmental Health, Neuherberg, Germany. manuel.kastl@helmholtz-munich.de.

Olivier Grémy (O)

Laboratoire de Radio Toxicologie, CEA, Université de Paris-Saclay, Arpajon, France.

Stephanie Lamart (S)

Laboratoire de Radio Toxicologie, CEA, Université de Paris-Saclay, Arpajon, France.
Laboratoire d'Evaluation de la Dose Interne, Institut de Radioprotection et de Sûreté Nucléaire (IRSN), PSE-SANTE/SDOS/LEDI, Fontenay-aux-Roses, France.

Augusto Giussani (A)

Division of Medical and Occupational Radiation Protection, Federal Office for Radiation Protection, Oberschleißheim, Germany.

Wei Bo Li (WB)

Institute of Radiation Medicine, Helmholtz Center Munich, German Research Center for Environmental Health, Neuherberg, Germany.
Division of Medical and Occupational Radiation Protection, Federal Office for Radiation Protection, Oberschleißheim, Germany.

Christoph Hoeschen (C)

Institut für Medizintechnik, Otto-Von-Guericke University Magdeburg, Magdeburg, Germany.

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Classifications MeSH