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Updated: Jul 18, 2026

Recapitulating Suckling-to-Weaning Transition In Vitro using Fetal Intestinal Organoids
Published on: November 15, 2019
A microfluidic model for infantile in vitro digestions: Characterization of lactoferrin digestion
Pim de Haan1, Daigo Natsuhara2, Vassilis Triantis3
1University of Groningen, Groningen Research Institute of Pharmacy, Pharmaceutical Analysis (XB20), Antonius Deusinglaan 1, 9713 AV Groningen, the Netherlands; TI-COAST, Science Park 904, 1098 XH Amsterdam, the Netherlands.
Abstract:
We present a miniaturized, flow-through model for infantile in vitro digestions, following up on our previously published in vitro digestive system for adults. Microfluidic 'chaotic' mixers were employed as microreactors to help emulate the biochemical processing going on in the infantile stomach and intestine. Simulated digestive fluids were introduced into these micromixers, and the mixtures were incubated for 60 min after both the gastric phase and the intestinal phase. The pH of the infantile stomach was set at 5.3, which is higher than that of adults. This leads to entirely different patterns of digestion for the milk protein, lactoferrin, used in our study as a model compound. It was found that lactoferrin remained undigested as it passed through the gastric phase and reached the intestinal phase intact, unlike in adult digestions. In the intestinal phase, lactoferrin was rapidly digested. Our miniaturized, infantile, in vitro digestive system requires much less labor and chemicals than standard approaches, and shows great potential for future automation.
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