This article describes a tissue transplantation technique that was designed to test the signaling and patterning properties of surface cephalic ectoderm during craniofacial development.
A subscription to JoVE is required to view this content. Sign in or start your free trial.
Method Article
This article describes a tissue transplantation technique that was designed to test the signaling and patterning properties of surface cephalic ectoderm during craniofacial development.
The accessibility of avian embryos has helped experimental embryologists understand the fates of cells during development and the role of tissue interactions that regulate patterning and morphogenesis of vertebrates (e.g., 1, 2, 3, 4). Here, we illustrate a method that exploits this accessibility to test the signaling and patterning properties of ectodermal tissues during facial development. In these experiments, we create quail-chick 5 or mouse-chick 6 chimeras by transplanting the surface cephalic ectoderm that covers the upper jaw from quail or mouse onto either the same region or an ectopic region of chick embryos. The use of quail as donor tissue for transplantation into chicks was developed to take advantage of a nucleolar marker present in quail but not chick cells, thus allowing investigators to distinguish host and donor tissues 7. Similarly, a repetitive element is present in the mouse genome and is expressed ubiquitously, which allows us to distinguish host and donor tissues in mouse-chick chimeras 8. The use of mouse ectoderm as donor tissue will greatly extend our understanding of these tissue interactions, because this will allow us to test the signaling properties of ectoderm derived from various mutant embryos.
1. Preparing the Donor Tissue
Access restricted. Please log in or start a trial to view this content.
Using this transplantation method has allowed us to determine that the ectoderm contains signaling information that regulates dorsoventral polarity and proximodistal extension of the upper jaw. The similarity of outcomes when using quail or mouse ectoderm, and the conservation of molecular signals in this tissue among many species 6,11 indicates that this is a highly conserved signaling center among vertebrates. Furthermore, other investigators have used similar techniques to test the signaling properties of d.......
Access restricted. Please log in or start a trial to view this content.
No conflicts of interest declared.
This work was funded by R01-DE018234 and R01-DE019638.
....Access restricted. Please log in or start a trial to view this content.
| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 1x PBS | Tektronix, Inc. | TEKZR114 | |
| DMEM | University of California - San Francisco | CCFDA003 | |
| BSA | Sigma-Aldrich | A7906 | |
| Dispase | GIBCO, by Life Technologies | 17105-041 | |
| 35x10 mm Petri dish | Falcon BD | 1008 | |
| No. 5 Dumont forceps | Fine Science Tools | 11252-20 | |
| Scissors | Fine Science Tools | 14058-11 | |
| Spring Scissors | Fine Science Tools | 15010-11 | |
| Needle holder | Fine Science Tools | 26016-12 | |
| Tungsten Needle | Fine Science Tools | 26000 | |
| Microcapillary tube | Drummond Scientific | 3-000-225-G | |
| Pasteur Pipets | Fisher Scientific | 13-678-6B | |
| Spring scissors | Fine Science Tools | 15010-11 | |
| Blade holder | Fine Science Tools | 10052-11 | |
| Razor blade | Fine Science Tools | 10050-00 |
Access restricted. Please log in or start a trial to view this content.