Fetal Mouse Physiology

Fetal mouse physiology is the study of how developing mouse fetuses maintain vital functions and undergo organ maturation before birth, providing a model for understanding mammalian development and disease. Physiological processes depend on coordinated maternal–placental exchange of oxygen and nutrients, fetal circulation, waste removal, and progressive development of systems such as the heart, lungs, and nervous system. Researchers use this model to investigate developmental disorders, congenital abnormalities, prenatal exposures, and responses to experimental treatments. Because many developmental pathways are conserved across mammals, fetal mouse studies help connect cellular and molecular mechanisms to physiological outcomes relevant to medicine.

Fetal Mouse Physiology - Related Videos

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.

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.

Modeling Transuterine Fetal Tracheal Occlusion in Murine Model: A Surgical Procedure for Ligation of the Fetal Trachea Within a Pregnant Mouse

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2025

This video demonstrates the transuterine tracheal occlusion procedure of a mouse fetus in a pregnant mouse. This model can be used to study the impact of occluded trachea on lung development.

Murine Fetal Echocardiography

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Cited by 7 •

2013

Fetal and perinatal death is a common feature when studying genetic alterations affecting cardiac development. High-frequency ultrasound imaging has improved 2-D resolution and can provide excellent information on early cardiac development and is an ideal method to detect the impact on cardiac structure and function prior to death.

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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