Generic physiologically based kinetic modelling for farm animals: Part I. Data collection of physiological parameters in swine, cattle and sheep

•Structured data collection of physiological parameters for swine, cattle and sheep.•110 scientific publications identified with data for a range of species breeds.•Meta-analyses to quantify intra-species variability and uncertainty. Physiologically based kinetic (PBK) models for farm animals are of...

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Veröffentlicht in:Toxicology letters 2020-02, Vol.319, p.95-101
Hauptverfasser: Lautz, L.S., Dorne, J.L.C.M., Oldenkamp, R., Hendriks, A.J., Ragas, A.M.J.
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Sprache:eng
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Zusammenfassung:•Structured data collection of physiological parameters for swine, cattle and sheep.•110 scientific publications identified with data for a range of species breeds.•Meta-analyses to quantify intra-species variability and uncertainty. Physiologically based kinetic (PBK) models for farm animals are of growing interest in food and feed safety with key applications for regulated compounds including quantification of tissue concentrations, kinetic parameters and the setting of safe exposure levels on an internal dose basis. The development and application of these models requires data for physiological, anatomical and chemical specific parameters. Here, we present the results of a structured data collection of anatomical and physiological parameters in three key farm animal species (swine, cattle and sheep). We performed an extensive literature search and meta-analyses to quantify intra-species variability and associated uncertainty of the parameters. Parameters were collected for organ weights and blood flows in all available breeds from 110 scientific publications, of which 29, 48 and 33 for cattle, sheep, and swine, respectively. Organ weights were available in literature for all three species. Blood flow parameter values were available for all organs in sheep but were scarcer in swine and cattle. Furthermore, the parameter values showed a large intra-species variation. Overall, the parameter values and associated variability provide reference values which can be used as input for generic PBK models in these species.
ISSN:0378-4274
1879-3169
DOI:10.1016/j.toxlet.2019.10.021