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Updated: Mar 15, 2026

Speciation and Bioavailability Measurements of Environmental Plutonium Using Diffusion in Thin Films
Published on: November 9, 2015
Biokinetics of Plutonium in Nonhuman Primates
Deepesh Poudel1, Raymond A Guilmette, Thomas F Gesell
1*Department of Nuclear Engineering & Health Physics, Idaho State University, Pocatello, ID; †Lovelace Respiratory Research Institute, Albuquerque, NM and Ray Guilmette and Associates, LLC, Perry, ME; ‡School of Health Sciences, Purdue University, West Lafayette, IN.
This study adapted a human plutonium biokinetic model for nonhuman primates. Macaque monkeys showed shorter plutonium retention and higher fecal excretion than humans.
Area of Science:
- Radiochemistry
- Toxicology
- Biokinetics
Background:
- Plutonium biokinetics are primarily studied in animals.
- Nonhuman primates are close human relatives, but physiological differences exist.
- Understanding plutonium metabolism in primates is crucial for human risk assessment.
Purpose of the Study:
- To describe plutonium metabolism in nonhuman primates.
- To develop a biokinetic model for primates using macaque monkey data.
- To compare plutonium retention and excretion between nonhuman primates and humans.
Main Methods:
- Experimental animal studies using macaque monkeys.
- Bioassay and retention data analysis.
- Adaptation of a human biokinetic model for plutonium.
Main Results:
- A nonhuman primate biokinetic model was developed.
- Shorter retention of plutonium in primate liver and skeleton observed.
- Higher plutonium excretion in feces compared to humans.
Conclusions:
- Primate plutonium biokinetics differ from humans, particularly in retention and excretion.
- Model adaptations are necessary to accurately represent primate plutonium metabolism.
- Findings inform human health risk assessments for plutonium exposure.
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