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Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment

Estetrol (E4) is a natural estrogen with promising therapeutic applications in humans. The European Medicines Agency and the Food and Drug Administration have approved the use of 15 mg E4/3 mg drospirenone for contraceptive indication. Phase III clinical trials with 15–20 mg E4 for the relief of cli...

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Autores principales: Gallez, Anne, Nys, Gwenaël, Wuidar, Vincent, Dias Da Silva, Isabelle, Taziaux, Mélanie, Kinet, Virginie, Tskitishvili, Ekaterine, Noel, Agnès, Foidart, Jean-Michel, Piel, Géraldine, Fillet, Marianne, Péqueux, Christel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253893/
https://www.ncbi.nlm.nih.gov/pubmed/37298669
http://dx.doi.org/10.3390/ijms24119718
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author Gallez, Anne
Nys, Gwenaël
Wuidar, Vincent
Dias Da Silva, Isabelle
Taziaux, Mélanie
Kinet, Virginie
Tskitishvili, Ekaterine
Noel, Agnès
Foidart, Jean-Michel
Piel, Géraldine
Fillet, Marianne
Péqueux, Christel
author_facet Gallez, Anne
Nys, Gwenaël
Wuidar, Vincent
Dias Da Silva, Isabelle
Taziaux, Mélanie
Kinet, Virginie
Tskitishvili, Ekaterine
Noel, Agnès
Foidart, Jean-Michel
Piel, Géraldine
Fillet, Marianne
Péqueux, Christel
author_sort Gallez, Anne
collection PubMed
description Estetrol (E4) is a natural estrogen with promising therapeutic applications in humans. The European Medicines Agency and the Food and Drug Administration have approved the use of 15 mg E4/3 mg drospirenone for contraceptive indication. Phase III clinical trials with 15–20 mg E4 for the relief of climacteric complaints are currently running. Relevant data from preclinical animal models are needed to characterize the molecular mechanisms and the pharmacological effects of E4 and possibly to reveal new therapeutic applications and to anticipate potential adverse effects. Therefore, it is important to design experimental procedures in rodents that closely mimic or anticipate human E4 exposure. In this study, we compared the effects of E4 exposure after acute or chronic administration in women and mice. Women who received chronic E4 treatment per os at a dose of 15 mg once daily reached a steady state within 6 to 8 days, with a mean plasma concentration of 3.20 ng/mL. Importantly, with subcutaneous, intraperitoneal or oral administration of E4 in mice, a stable concentration over time that would mimic human pharmacokinetics could not be achieved. The use of osmotic minipumps continuously releasing E4 for several weeks provided an exposure profile mimicking chronic oral administration in women. Measurements of the circulating concentration of E4 in mice revealed that the mouse equivalent dose necessary to mimic human treatment does not fit with the allometric prediction. In conclusion, this study highlights the importance of precise definition of the most appropriate dose and route of administration to utilize when developing predictive preclinical animal models to mimic or anticipate specific human treatment.
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spelling pubmed-102538932023-06-10 Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment Gallez, Anne Nys, Gwenaël Wuidar, Vincent Dias Da Silva, Isabelle Taziaux, Mélanie Kinet, Virginie Tskitishvili, Ekaterine Noel, Agnès Foidart, Jean-Michel Piel, Géraldine Fillet, Marianne Péqueux, Christel Int J Mol Sci Article Estetrol (E4) is a natural estrogen with promising therapeutic applications in humans. The European Medicines Agency and the Food and Drug Administration have approved the use of 15 mg E4/3 mg drospirenone for contraceptive indication. Phase III clinical trials with 15–20 mg E4 for the relief of climacteric complaints are currently running. Relevant data from preclinical animal models are needed to characterize the molecular mechanisms and the pharmacological effects of E4 and possibly to reveal new therapeutic applications and to anticipate potential adverse effects. Therefore, it is important to design experimental procedures in rodents that closely mimic or anticipate human E4 exposure. In this study, we compared the effects of E4 exposure after acute or chronic administration in women and mice. Women who received chronic E4 treatment per os at a dose of 15 mg once daily reached a steady state within 6 to 8 days, with a mean plasma concentration of 3.20 ng/mL. Importantly, with subcutaneous, intraperitoneal or oral administration of E4 in mice, a stable concentration over time that would mimic human pharmacokinetics could not be achieved. The use of osmotic minipumps continuously releasing E4 for several weeks provided an exposure profile mimicking chronic oral administration in women. Measurements of the circulating concentration of E4 in mice revealed that the mouse equivalent dose necessary to mimic human treatment does not fit with the allometric prediction. In conclusion, this study highlights the importance of precise definition of the most appropriate dose and route of administration to utilize when developing predictive preclinical animal models to mimic or anticipate specific human treatment. MDPI 2023-06-03 /pmc/articles/PMC10253893/ /pubmed/37298669 http://dx.doi.org/10.3390/ijms24119718 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gallez, Anne
Nys, Gwenaël
Wuidar, Vincent
Dias Da Silva, Isabelle
Taziaux, Mélanie
Kinet, Virginie
Tskitishvili, Ekaterine
Noel, Agnès
Foidart, Jean-Michel
Piel, Géraldine
Fillet, Marianne
Péqueux, Christel
Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title_full Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title_fullStr Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title_full_unstemmed Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title_short Comparison of Estetrol Exposure between Women and Mice to Model Preclinical Experiments and Anticipate Human Treatment
title_sort comparison of estetrol exposure between women and mice to model preclinical experiments and anticipate human treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253893/
https://www.ncbi.nlm.nih.gov/pubmed/37298669
http://dx.doi.org/10.3390/ijms24119718
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