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Jeong Weon Choi,Seungho Lee,Jangwoo Lee et al. Jeong Weon Choi et al.
Environmental phenols are widely used in consumer products and are of increasing concern due to their potential endocrine-disrupting effects. Physiologically based toxicokinetic (PBTK) models offer a powerful tool for estimating human expos...
Bu-Da Su,Xiao-Meng Li,Zhi-Wei Huang et al. Bu-Da Su et al.
Ochratoxin A (OTA) is a common fungal toxin frequently detected in food and human plasma samples. Currently, the physiologically based toxicokinetic (PBTK) model plays an active role in dose translation and can improve and enhance the risk ...
Yawei Zhai,Haotian Wang,Xiaohan Lin et al. Yawei Zhai et al.
Due to the lipophilicity, polycyclic aromatic hydrocarbons (PAHs) are easily accumulated in fish. However, the research on PAH bioaccumulation process in different fish tissues and the relevant effect mechanisms are still deficient. The bio...
Ruili Xie,Xiaodan Wang,Yiping Xu et al. Ruili Xie et al.
In vitro to in vivo (IVIVE) leverages in vitro high-throughput biological responses to predict the corresponding in vivo exposures and further estimate the human safe dose. However, for phenolic endocrine disrupting chemicals (EDCs) linked ...
Corentin Mit,Anne Bado-Nilles,Gaëlle Daniele et al. Corentin Mit et al.
Bisphenol A (BPA) is a chemical of major concern due to its endocrine disrupting function, high production volume, and persistence in the aquatic environment. Consequently, organisms such as fish are subject to chronic exposure to BPA. Howe...
Jiaqi Ding,Wenxin Liu,Hong Zhang et al. Jiaqi Ding et al.
Organophosphate esters (OPEs) are widely used and harmful to organisms and human health. Dust ingestion is an important exposure route for OPEs to humans. In this study, by integrating ToxCast high-throughput in vitro assays with in vitro t...
Cleo Tebby,Hilko van der Voet,Georges de Sousa et al. Cleo Tebby et al.
Physiologically-based toxicokinetic (PBTK) models are important tools for in vitro to in vivo or inter-species extrapolations in health risk assessment of foodborne and non-foodborne chemicals. Here we present a generic PBTK model implement...
Alexander B Cooper,Manoj Aggarwal,Michael J Bartels et al. Alexander B Cooper et al.
Physiologically-based toxicokinetic (PBTK) models are mathematical representations of chemical absorption, distribution, metabolism and excretion (ADME) in animals. Each parameter in a PBTK model describes a physiological, physicochemical o...
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