Histology Atlas of the Developing Mouse Digestive System With Emphasis From Prenatal Day 7.5 Through Early Postnatal
Beth A Lubeck1, Susan A Elmore2, Beth Mahler2
1National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA.
Insights
This study presents a microscopic atlas detailing mouse digestive system development from embryonic day 7.5 to postnatal day 21. It provides crucial insights into normal anatomy and aids in identifying developmental abnormalities.
Area of Science:
- Developmental Biology
- Anatomy
- Genetics
Background:
- Digestive system development is complex, involving precise molecular signaling from the primitive gut tube.
- Abnormal development leads to human birth defects affecting digestion and nutrient uptake.
- Mouse models are vital for understanding mammalian digestive system formation.
Purpose of the Study:
- To create a comprehensive microscopic atlas of digestive tract development in wild-type mice.
- To document key developmental milestones from embryonic to weaning stages.
- To provide a resource for identifying abnormal phenotypes and toxic effects.
Main Methods:
- Utilized high-resolution, well-annotated color images.
- Tracked digestive system anatomy from embryonic day 7.5 to postnatal day 21.
- Included comparisons with human developmental features.
Main Results:
- Detailed key developmental milestones of the upper and lower digestive tracts.
- Illustrated the evolution of digestive system anatomy.
- Highlighted the formation of adult-like features at weaning.
Conclusions:
- This atlas serves as an essential resource for studying normal and abnormal digestive system development in mice.
- Understanding normal development is critical for diagnosing birth defects and toxicological effects.
- The atlas facilitates comparative analysis with human digestive development.
Abstract:
Digestive system development is a complex process, requiring precise molecular signaling interactions to produce various complex organs arising from a single primordium (the primitive gut tube). Abnormal development of this system is common in humans, leading to birth defects like structural anomalies (e.g., atresias, fistulas, stenosis) and/or functional deficits (e.g., dysautonomia, ileus), all of which impair digestion and passage of ingesta, thereby reducing nutrient uptake. Mouse models of disease (engineered and spontaneous) have provided many insights into the mammalian molecular mechanisms that are essential for guiding normal global and regional anatomic formation of the digestive system. Moreover, an understanding of normal development is an essential resource for identifying and characterizing aberrant phenotypes and toxic effects in embryonic and juvenile mice. This microscopic atlas details key developmental milestones for the upper and lower digestive tracts (including associated glands except liver) in a common wild-type mouse stock. This atlas uses a range of high-resolution, well-annotated color images to follow the evolving digestive system anatomy from initial formation of the primitive gut tube in utero (at embryonic day 7.5) through the appearance of adult-like features at weaning (postnatal day 21 in modern mouse colonies), including comparisons with similar features in humans.
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