Mouse Fetal Intestine

The mouse fetal intestine is the developing embryonic section of the gastrointestinal tract that forms the tissues required for digestion, absorption, barrier function, and communication with the body after birth. During gestation, coordinated cell proliferation, differentiation, migration, and tissue folding transform the primitive gut tube into organized intestinal regions containing an epithelial lining, connective tissue, smooth muscle, and developing neural and vascular networks. Studying this process provides a model for understanding organ formation, congenital intestinal disorders, and epithelial maturation. Mouse fetal intestine is also used to investigate developmental signaling, host-microbe interactions, tissue regeneration, and the effects of genetic or environmental factors on gastrointestinal biology.

Mouse Fetal Intestine - Related Videos

Research

JoVE Journal - Developmental Biology
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Recapitulating Suckling-to-Weaning Transition In Vitro using Fetal Intestinal Organoids

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Cited by 7 •

2019

This protocol describes how to mimic suckling-to-weaning transition in vitro using mouse late fetal intestinal organoids cultured for 30 days.

Research

JoVE Journal - Medicine

A Mouse Fetal Skin Model of Scarless Wound Repair

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Cited by 24 •

2015

During mammalian development, early gestational skin wounds heal without a scar. Here we detail a reliable and reproducible model of fetal scarless wound healing in the cutaneous dorsum of E16.5 (scarless) and E18.5 (scarring) mouse embryos.

Ileectomy-induced Bile Overaccumulation in Mouse Intestine

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Cited by 4 •

2017

Small intestine-dependent bile acid reabsorption and feedback inhibition of hepatic bile acid synthesis is important for systemic homeostasis and health. In this study, we describe a mouse model for ileal resection to evaluate ileectomy-induced bile malabsorption, overaccumulation, and toxicity in mouse intestine.

A Novel Surgical Approach for Intratracheal Administration of Bioactive Agents in a Fetal Mouse Model

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Cited by 8 •

2012

We developed a novel surgical approach for intratracheal administration of bioactive agents into the mouse fetus. The delivery route is more efficient in targeting the fetal mouse lungs than the commonly used intra-amniotic injection. This procedure has to date not been described in a mouse model.

Using Ex Vivo Upright Droplet Cultures of Whole Fetal Organs to Study Developmental Processes during Mouse Organogenesis

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Cited by 13 •

2015

The ex vivo upright droplet culture is an alternative to current in vitro and in vivo experimental techniques. This protocol is easy to perform and requires smaller amounts of reagent, while permitting the ability to manipulate and study fetal vascularization, morphogenesis, and organogenesis.

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