Duodenum Intestine-Chip for preclinical drug assessment in a human relevant model

Author:

Kasendra Magdalena1ORCID,Luc Raymond1,Yin Jianyi2,Manatakis Dimitris V1,Kulkarni Gauri1,Lucchesi Carolina1,Sliz Josiah1,Apostolou Athanasia13,Sunuwar Laxmi2,Obrigewitch Jenifer1,Jang Kyung-Jin1,Hamilton Geraldine A1,Donowitz Mark2,Karalis Katia1

Affiliation:

1. Emulate Inc, Boston, United States

2. Department of Medicine, Division of Gastroenterology, Johns Hopkins University School of Medicine, Baltimore, United States

3. Graduate Program, Department of Medicine, National and Kapodistrian University of Athens, Athens, Greece

Abstract

Induction of intestinal drug metabolizing enzymes can complicate the development of new drugs, owing to the potential to cause drug-drug interactions (DDIs) leading to changes in pharmacokinetics, safety and efficacy. The development of a human-relevant model of the adult intestine that accurately predicts CYP450 induction could help address this challenge as species differences preclude extrapolation from animals. Here, we combined organoids and Organs-on-Chips technology to create a human Duodenum Intestine-Chip that emulates intestinal tissue architecture and functions, that are relevant for the study of drug transport, metabolism, and DDI. Duodenum Intestine-Chip demonstrates the polarized cell architecture, intestinal barrier function, presence of specialized cell subpopulations, and in vivo relevant expression, localization, and function of major intestinal drug transporters. Notably, in comparison to Caco-2, it displays improved CYP3A4 expression and induction capability. This model could enable improved in vitro to in vivo extrapolation for better predictions of human pharmacokinetics and risk of DDIs.

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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