In order to better explain, predict, or extrapolate to humans the developmental toxicity effects of chemicals to zebrafish (Danio rerio) embryos, we developed a physiologically-based pharmacokinetic (PBPK) model designed to predict organ concentrations of neutral or ionizable chemicals, up to 120 hours post-fertilization. Chemicals’ distribution is modeled in the cells, lysosomes, and mitochondria of ten organs of the embryo. The model’s partition coefficients are calculated with sub-models using physicochemical properties of the chemicals of interest. The model accounts for organ growth and changes in metabolic clearance with time. We compared ab initio model predictions to data obtained on culture medium and embryo concentrations of valpr...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
In order to better explain, predict, or extrapolate to humans the developmental toxicity effects of ...
Introduction: Understanding and predicting chemical effects on development and reproduction is a com...
For the determination of acute toxicity of chemicals in zebrafish (Danio rerio) embryos, the OECD te...
International audienceFor the determination of acute toxicity of chemicals in zebrafish (Danio rerio...
In risk assessment, understanding and predicting the effects of chemical compounds on the developmen...
• In vitro systems are indispensable tools in safety assessment research, allowing the investigation...
Developmental toxicity is an adverse developmental outcome, i.e., death, malformation, growth retard...
International audienceThe zebrafish eleutheroembryo (zfe) is widely used as a model to characterize ...
The aim of the current study was to understand and develop models to predict the pH-dependent toxici...
International audienceThe zebrafish eleutheroembryo model is increasingly used to assess the toxicit...
Zebrafish embryos (ZFE) is a widely used model organism, employed in various research fields includi...
International audienceZebrafish (Danio rerio) is a widely used model for toxicological studies, in p...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
In order to better explain, predict, or extrapolate to humans the developmental toxicity effects of ...
Introduction: Understanding and predicting chemical effects on development and reproduction is a com...
For the determination of acute toxicity of chemicals in zebrafish (Danio rerio) embryos, the OECD te...
International audienceFor the determination of acute toxicity of chemicals in zebrafish (Danio rerio...
In risk assessment, understanding and predicting the effects of chemical compounds on the developmen...
• In vitro systems are indispensable tools in safety assessment research, allowing the investigation...
Developmental toxicity is an adverse developmental outcome, i.e., death, malformation, growth retard...
International audienceThe zebrafish eleutheroembryo (zfe) is widely used as a model to characterize ...
The aim of the current study was to understand and develop models to predict the pH-dependent toxici...
International audienceThe zebrafish eleutheroembryo model is increasingly used to assess the toxicit...
Zebrafish embryos (ZFE) is a widely used model organism, employed in various research fields includi...
International audienceZebrafish (Danio rerio) is a widely used model for toxicological studies, in p...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...
Incorporation of kinetics to quantitative in vitro to in vivo extrapolations (QIVIVE) is a key step ...