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Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction

BACKGROUND & AIMS: To develop an effective and safe orally administered drug, it is important to predict its intestinal absorption rate, intestinal first-pass effect, and drug-drug interactions of orally administered drugs. However, there is no existing model to comprehensively predict the intes...

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Autores principales: Takayama, Kazuo, Negoro, Ryosuke, Yamashita, Tomoki, Kawai, Kanae, Ichikawa, Moe, Mori, Takanori, Nakatsu, Noriyuki, Harada, Kazuo, Ito, Sumito, Yamada, Hiroshi, Yamaura, Yoshiyuki, Hirata, Kazumasa, Ishida, Seiichi, Mizuguchi, Hiroyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6722387/
https://www.ncbi.nlm.nih.gov/pubmed/31228606
http://dx.doi.org/10.1016/j.jcmgh.2019.06.004
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author Takayama, Kazuo
Negoro, Ryosuke
Yamashita, Tomoki
Kawai, Kanae
Ichikawa, Moe
Mori, Takanori
Nakatsu, Noriyuki
Harada, Kazuo
Ito, Sumito
Yamada, Hiroshi
Yamaura, Yoshiyuki
Hirata, Kazumasa
Ishida, Seiichi
Mizuguchi, Hiroyuki
author_facet Takayama, Kazuo
Negoro, Ryosuke
Yamashita, Tomoki
Kawai, Kanae
Ichikawa, Moe
Mori, Takanori
Nakatsu, Noriyuki
Harada, Kazuo
Ito, Sumito
Yamada, Hiroshi
Yamaura, Yoshiyuki
Hirata, Kazumasa
Ishida, Seiichi
Mizuguchi, Hiroyuki
author_sort Takayama, Kazuo
collection PubMed
description BACKGROUND & AIMS: To develop an effective and safe orally administered drug, it is important to predict its intestinal absorption rate, intestinal first-pass effect, and drug-drug interactions of orally administered drugs. However, there is no existing model to comprehensively predict the intestinal pharmacokinetics and drug-response of orally administered drugs. In this study, we attempted to generate homogenous and functional intestinal epithelial cells from human induced pluripotent stem (iPS) cells for pharmaceutical research. METHODS: We generated almost-homogenous Villin- and zonula occludens-1 (ZO1)-positive intestinal epithelial cells by caudal-related homeobox transcription factor 2 (CDX2) transduction into human iPS cell-derived intestinal progenitor cells. RESULTS: The drug absorption rates in human iPS cell-derived intestinal epithelial cell monolayers (iPS-IECM) were highly correlated with those in humans (R(2)=0.91). The expression levels of cytochrome P450 (CYP) 3A4, a dominant drug-metabolizing enzyme in the small intestine, in human iPS-IECM were similar to those in human small intestine in vivo. In addition, intestinal availability in human iPS-IECM (the fraction passing the gut wall: Fg=0.73) was more similar to that in the human small intestine in vivo (Fg=0.57) than to that in Caco-2 cells (Fg=0.99), a human colorectal adenocarcinoma cell line. Moreover, the drug-drug interaction and drug-food interaction could be observed by using our human iPS-IECM in the presence of an inducer and inhibitor of CYP3A4, i.e., rifampicin and grape fruit juice, respectively. CONCLUSION: Taking these results together, we succeeded in generating the human iPS-IECM that can be applied to various intestinal pharmacokinetics and drug-response tests of orally administered drugs.
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spelling pubmed-67223872019-09-06 Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction Takayama, Kazuo Negoro, Ryosuke Yamashita, Tomoki Kawai, Kanae Ichikawa, Moe Mori, Takanori Nakatsu, Noriyuki Harada, Kazuo Ito, Sumito Yamada, Hiroshi Yamaura, Yoshiyuki Hirata, Kazumasa Ishida, Seiichi Mizuguchi, Hiroyuki Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: To develop an effective and safe orally administered drug, it is important to predict its intestinal absorption rate, intestinal first-pass effect, and drug-drug interactions of orally administered drugs. However, there is no existing model to comprehensively predict the intestinal pharmacokinetics and drug-response of orally administered drugs. In this study, we attempted to generate homogenous and functional intestinal epithelial cells from human induced pluripotent stem (iPS) cells for pharmaceutical research. METHODS: We generated almost-homogenous Villin- and zonula occludens-1 (ZO1)-positive intestinal epithelial cells by caudal-related homeobox transcription factor 2 (CDX2) transduction into human iPS cell-derived intestinal progenitor cells. RESULTS: The drug absorption rates in human iPS cell-derived intestinal epithelial cell monolayers (iPS-IECM) were highly correlated with those in humans (R(2)=0.91). The expression levels of cytochrome P450 (CYP) 3A4, a dominant drug-metabolizing enzyme in the small intestine, in human iPS-IECM were similar to those in human small intestine in vivo. In addition, intestinal availability in human iPS-IECM (the fraction passing the gut wall: Fg=0.73) was more similar to that in the human small intestine in vivo (Fg=0.57) than to that in Caco-2 cells (Fg=0.99), a human colorectal adenocarcinoma cell line. Moreover, the drug-drug interaction and drug-food interaction could be observed by using our human iPS-IECM in the presence of an inducer and inhibitor of CYP3A4, i.e., rifampicin and grape fruit juice, respectively. CONCLUSION: Taking these results together, we succeeded in generating the human iPS-IECM that can be applied to various intestinal pharmacokinetics and drug-response tests of orally administered drugs. Elsevier 2019-06-19 /pmc/articles/PMC6722387/ /pubmed/31228606 http://dx.doi.org/10.1016/j.jcmgh.2019.06.004 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Takayama, Kazuo
Negoro, Ryosuke
Yamashita, Tomoki
Kawai, Kanae
Ichikawa, Moe
Mori, Takanori
Nakatsu, Noriyuki
Harada, Kazuo
Ito, Sumito
Yamada, Hiroshi
Yamaura, Yoshiyuki
Hirata, Kazumasa
Ishida, Seiichi
Mizuguchi, Hiroyuki
Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title_full Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title_fullStr Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title_full_unstemmed Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title_short Generation of Human iPSC–Derived Intestinal Epithelial Cell Monolayers by CDX2 Transduction
title_sort generation of human ipsc–derived intestinal epithelial cell monolayers by cdx2 transduction
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6722387/
https://www.ncbi.nlm.nih.gov/pubmed/31228606
http://dx.doi.org/10.1016/j.jcmgh.2019.06.004
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