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Neural Tube Closure in Mouse Whole Embryo Culture
Published on: October 21, 2011
Neural tube closure in mouse whole embryo culture
1Department of Neurology/Neuroscience, Weill Cornell Medical College.
Abstract:
Genetic mouse models are an important tool in the study of mammalian neural tube closure (Gray & Ross, 2009; Ross, 2010). However, the study of mouse embryos in utero is limited by our inability to directly pharmacologically manipulate the embryos in isolation from the effects of maternal metabolism on the reagent of interest. Whether using a small molecule, recombinant protein, or siRNA, delivery of these substances to the mother, through the diet or by injection will subject these unstable compounds to a variety of bodily defenses that could prevent them from reaching the embryo. Investigations in cultures of whole embryos can be used to separate maternal from intrinsic fetal effects on development. Here, we present a method for culturing mouse embryos using highly enriched media in a roller incubator apparatus that allows for normal neural tube closure after dissection (Crockett, 1990). Once in culture, embryos can be manipulated using conventional in vitro techniques that would not otherwise be possible if the embryos were still in utero. Embryo siblings can be collected at various time points to study different aspects of neurulation, occurring from E7-7.5 (neural plate formation, just prior to the initiation of neurulation) to E9.5-10 (at the conclusion of cranial fold and caudal neuropore closure, Kaufman, 1992). In this protocol, we demonstrate our method for dissecting embryos at timepoints that are optimal for the study of cranial neurulation. Embryos will be dissected at E8.5 (approx. 10-12 somities), after the initiation of neural tube closure but prior to embryo turning and cranial neural fold closure, and maintained in culture till E10 (26-28 somities), when cranial neurulation should be complete.
Insights
This study presents a novel method for culturing mouse embryos ex utero, enabling direct pharmacological manipulation for studying neural tube closure. This technique overcomes limitations of in vivo studies by isolating embryonic development from maternal influences.
Area of Science:
- Developmental Biology
- Genetics
- Pharmacology
Background:
- Genetic mouse models are crucial for studying mammalian neural tube closure.
- In vivo studies are limited by maternal metabolism affecting drug delivery to embryos.
- Ex vivo culture methods are needed to isolate embryonic development from maternal effects.
Purpose of the Study:
- To present a method for culturing mouse embryos ex utero.
- To enable direct pharmacological manipulation of embryos for studying neural tube closure.
- To overcome maternal interference in developmental studies.
Main Methods:
- Dissection of mouse embryos at E8.5 (10-12 somites).
- Culture of embryos in highly enriched media using a roller incubator.
- Maintenance of embryos in culture until E10 (26-28 somites) for cranial neurulation completion.
Main Results:
- The developed culture method supports normal neural tube closure in vitro.
- Embryos can be pharmacologically manipulated using conventional in vitro techniques.
- Allows for collection of sibling embryos at various time points to study neurulation stages.
Conclusions:
- This ex utero culture method provides a powerful tool for investigating neural tube closure.
- It facilitates the study of embryonic development independent of maternal factors.
- Enables precise in vitro manipulation for drug screening and developmental studies.

