Javascript must be enabled to continue!
Branching morphogenesis of embryonic mouse lung epithelium in mesenchyme-free culture
View through CrossRef
ABSTRACT
Embryonic mouse lung epithelium was separated from its mesenchyme and cultured under mesenchyme-free conditions. When covered with Matrigel, the cultured epithelium underwent branching morphogenesis in medium containing acidic fibroblast growth factor (aFGF), in which the epithelial cells constructed a simple columnar cell layer forming a lumen, as seen in normal development. The epithelial growth and branching morphogenesis induced by aFGF was completely inhibited by an antibody against aFGF. Heparin caused extra epithelial growth in cooperation with aFGF, but its use resulted in luminal expansion instead of enhanced branching. Basic FGF induced abnormal morphogenesis of the epithelium, though the lumen formed was lined by a simple columnar cell layer. Epidermal growth factor could not maintain epithelial cell growth, and the epithelium became a smaller and smoother ball than that at the start of cultivation. When covered with a collagen gel instead of Matrigel, the epithelium remained in its initial form, neither newly branching nor becoming a smooth ball, in the presence of aFGF. These results show that the epithelium of lung rudiments was able to branch under mesenchyme-free culture conditions in which a basement membrane matrix and aFGF were substitutes for the mesenchyme.
Title: Branching morphogenesis of embryonic mouse lung epithelium in mesenchyme-free culture
Description:
ABSTRACT
Embryonic mouse lung epithelium was separated from its mesenchyme and cultured under mesenchyme-free conditions.
When covered with Matrigel, the cultured epithelium underwent branching morphogenesis in medium containing acidic fibroblast growth factor (aFGF), in which the epithelial cells constructed a simple columnar cell layer forming a lumen, as seen in normal development.
The epithelial growth and branching morphogenesis induced by aFGF was completely inhibited by an antibody against aFGF.
Heparin caused extra epithelial growth in cooperation with aFGF, but its use resulted in luminal expansion instead of enhanced branching.
Basic FGF induced abnormal morphogenesis of the epithelium, though the lumen formed was lined by a simple columnar cell layer.
Epidermal growth factor could not maintain epithelial cell growth, and the epithelium became a smaller and smoother ball than that at the start of cultivation.
When covered with a collagen gel instead of Matrigel, the epithelium remained in its initial form, neither newly branching nor becoming a smooth ball, in the presence of aFGF.
These results show that the epithelium of lung rudiments was able to branch under mesenchyme-free culture conditions in which a basement membrane matrix and aFGF were substitutes for the mesenchyme.
Related Results
An FGF signal from endoderm and localized factors in the posterior-vegetal egg cytoplasm pattern the mesodermal tissues in the ascidian embryo
An FGF signal from endoderm and localized factors in the posterior-vegetal egg cytoplasm pattern the mesodermal tissues in the ascidian embryo
ABSTRACT
The major mesodermal tissues of ascidian larvae are muscle, notochord and mesenchyme. They are derived from the marginal zone surrounding the endoderm area ...
Lineage-specific morphogenesis in the developing pancreas: role of mesenchymal factors
Lineage-specific morphogenesis in the developing pancreas: role of mesenchymal factors
ABSTRACT
Pancreatic organogenesis has been a classic example of epitheliomesenchymal interactions. The nature of this interaction, and the way in which endocrine, ac...
Antibodies against domain E3 of laminin-1 and integrin alpha 6 subunit perturb branching epithelial morphogenesis of submandibular gland, but by different modes.
Antibodies against domain E3 of laminin-1 and integrin alpha 6 subunit perturb branching epithelial morphogenesis of submandibular gland, but by different modes.
Branching epithelial morphogenesis requires interactions between the surrounding mesenchyme and the epithelium, as well as interactions between basement membrane components and the...
Abstract PR-013: The splanchnic mesenchyme during fetal development is the major source of pancreatic cancer associated fibroblasts
Abstract PR-013: The splanchnic mesenchyme during fetal development is the major source of pancreatic cancer associated fibroblasts
Abstract
In pancreatic ductal adenocarcinoma (PDAC), cancer associated fibroblasts (CAFs) play critical and complex roles in the tumor microenvironment. CAFs are als...
Erk MAP kinase regulates branching morphogenesis in the developing mouse kidney
Erk MAP kinase regulates branching morphogenesis in the developing mouse kidney
Branching morphogenesis of epithelium is a common and important feature of organogenesis; it is, for example, responsible for development of renal collecting ducts, lung airways, m...
A Genetic Screen for Temperature-sensitive Morphogenesis-defective
Caenorhabditis elegans
Mutants
A Genetic Screen for Temperature-sensitive Morphogenesis-defective
Caenorhabditis elegans
Mutants
ABSTRACT
Morphogenesis involves coordinated cell migrations and cell shape changes that generate tissues and organs, and organize the body plan. ...
Abstract 5251: Branching morphogenesis in the mammary gland is regulated by sprouty-2
Abstract 5251: Branching morphogenesis in the mammary gland is regulated by sprouty-2
Abstract
Branching morphogenesis is a conserved mechanism used by many species for organogenesis and tissue maintenance. Receptor tyrosine kinases (RTKs), including ...

