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1.
Arch Toxicol ; 98(6): 1757-1769, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38528153

RESUMO

Cytochrome P450 (CYP)3A4 induction by drugs and pesticides plays a critical role in the enhancement of pyrrolizidine alkaloid (PA) toxicity as it leads to increased formation of hepatotoxic dehydro-PA metabolites. Addressing the need for a quantitative analysis of this interaction, we developed a physiologically-based toxicokinetic (PBTK) model. Specifically, the model describes the impact of the well-characterized CYP3A4 inducer rifampicin on the kinetics of retrorsine, which is a prototypic PA and contaminant in herbal teas. Based on consumption data, the kinetics after daily intake of retrorsine were simulated with concomitant rifampicin treatment. Strongest impact on retrorsine kinetics (plasma AUC 24 and C max reduced to 67% and 74% compared to the rifampicin-free reference) was predicted directly after withdrawal of rifampicin. At this time point, the competitive inhibitory effect of rifampicin stopped, while CYP3A4 induction was still near its maximum. Due to the impacted metabolism kinetics, the cumulative formation of intestinal retrorsine CYP3A4 metabolites increased to 254% (from 10 to 25 nmol), while the cumulative formation of hepatic CYP3A4 metabolites was not affected (57 nmol). Return to baseline PA toxicokinetics was predicted 14 days after stop of a 14-day rifampicin treatment. In conclusion, the PBTK model showed to be a promising tool to assess the dynamic interplay of enzyme induction and toxification pathways.


Assuntos
Indutores do Citocromo P-450 CYP3A , Citocromo P-450 CYP3A , Modelos Biológicos , Alcaloides de Pirrolizidina , Rifampina , Toxicocinética , Alcaloides de Pirrolizidina/toxicidade , Alcaloides de Pirrolizidina/farmacocinética , Humanos , Citocromo P-450 CYP3A/metabolismo , Rifampina/toxicidade , Rifampina/farmacocinética , Masculino , Fígado/efeitos dos fármacos , Fígado/metabolismo , Interações Medicamentosas
2.
Arch Toxicol ; 97(5): 1319-1333, 2023 05.
Artigo em Inglês | MEDLINE | ID: mdl-36906727

RESUMO

Retrorsine is a hepatotoxic pyrrolizidine alkaloid (PA) found in herbal supplements and medicines, food and livestock feed. Dose-response studies enabling the derivation of a point of departure including a benchmark dose for risk assessment of retrorsine in humans and animals are not available. Addressing this need, a physiologically based toxicokinetic (PBTK) model of retrorsine was developed for mouse and rat. Comprehensive characterization of retrorsine toxicokinetics revealed: both the fraction absorbed from the intestine (78%) and the fraction unbound in plasma (60%) are high, hepatic membrane permeation is dominated by active uptake and not by passive diffusion, liver metabolic clearance is 4-fold higher in rat compared to mouse and renal excretion contributes to 20% of the total clearance. The PBTK model was calibrated with kinetic data from available mouse and rat studies using maximum likelihood estimation. PBTK model evaluation showed convincing goodness-of-fit for hepatic retrorsine and retrorsine-derived DNA adducts. Furthermore, the developed model allowed to translate in vitro liver toxicity data of retrorsine to in vivo dose-response data. Resulting benchmark dose confidence intervals (mg/kg bodyweight) are 24.1-88.5 in mice and 79.9-104 in rats for acute liver toxicity after oral retrorsine intake. As the PBTK model was built to enable extrapolation to different species and other PA congeners, this integrative framework constitutes a flexible tool to address gaps in the risk assessment of PA.


Assuntos
Alcaloides de Pirrolizidina , Humanos , Ratos , Camundongos , Animais , Alcaloides de Pirrolizidina/metabolismo , Fígado/metabolismo , Microssomos Hepáticos/metabolismo , Adutos de DNA/metabolismo
3.
Arch Toxicol ; 95(9): 2977-3000, 2021 09.
Artigo em Inglês | MEDLINE | ID: mdl-34390355

RESUMO

A sufficient quantitative understanding of aluminium (Al) toxicokinetics (TK) in man is still lacking, although highly desirable for risk assessment of Al exposure. Baseline exposure and the risk of contamination severely limit the feasibility of TK studies administering the naturally occurring isotope 27Al, both in animals and man. These limitations are absent in studies with 26Al as a tracer, but tissue data are limited to animal studies. A TK model capable of inter-species translation to make valid predictions of Al levels in humans-especially in toxicological relevant tissues like bone and brain-is urgently needed. Here, we present: (i) a curated dataset which comprises all eligible studies with single doses of 26Al tracer administered as citrate or chloride salts orally and/or intravenously to rats and humans, including ultra-long-term kinetic profiles for plasma, blood, liver, spleen, muscle, bone, brain, kidney, and urine up to 150 weeks; and (ii) the development of a physiology-based (PB) model for Al TK after intravenous and oral administration of aqueous Al citrate and Al chloride solutions in rats and humans. Based on the comprehensive curated 26Al dataset, we estimated substance-dependent parameters within a non-linear mixed-effect modelling context. The model fitted the heterogeneous 26Al data very well and was successfully validated against datasets in rats and humans. The presented PBTK model for Al, based on the most extensive and diverse dataset of Al exposure to date, constitutes a major advancement in the field, thereby paving the way towards a more quantitative risk assessment in humans.


Assuntos
Cloreto de Alumínio/toxicidade , Ácido Cítrico/toxicidade , Modelos Biológicos , Administração Intravenosa , Administração Oral , Adulto , Cloreto de Alumínio/administração & dosagem , Cloreto de Alumínio/farmacocinética , Animais , Ácido Cítrico/administração & dosagem , Ácido Cítrico/farmacocinética , Conjuntos de Dados como Assunto , Feminino , Humanos , Masculino , Dinâmica não Linear , Ratos , Medição de Risco , Especificidade da Espécie , Distribuição Tecidual , Toxicocinética
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