Background: Type IV collagen is the main component of the basement membrane that gives strength to the blood–gas barrier (BGB). In mammals, the formation of a mature BGB occurs primarily after birth during alveologenesis and requires the formation of septa from the walls of the saccule. In contrast, in avians, the formation of the BGB occurs rapidly and prior to hatching. Mutation in basement membrane components results in an abnormal alveolar phenotype; however, the specific role of type IV collagen in regulating alveologenesis remains unknown. Results: We have performed a microarray expression analysis in late chick lung development and found that COL4A1 and COL4A2 were among the most significantly upregulated genes during the formation o...
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Normal branching development is dependent on the correlation between cells and extracellular matrix....
Collagen deposition is a key process during idiopathic pulmonary fibrosis; however, little is known ...
BackgroundType IV collagen is the main component of the basement membrane that gives strength to the...
Background: Type IV collagen is the main component of the basement membrane that gives strength to t...
Basement membranes are specialized extracellular matrices consisting of tissue-specific organization...
Type IV collagen is proposed to be a key molecule in the evolvement of multicellular animals by form...
During vertebrate development, the lung inaugurates as an endodermal bud from the primitive foregut....
Basement membrane (BM) is an essential part of the extracellular matrix (ECM) that plays a crucial r...
Basement membrane (BM) is an essential part of the extracellular matrix (ECM) that plays a crucial r...
During vertebrate development, the lung inaugurates as an endodermal bud from the primitive foregut....
Type VI collagen (collagen VI) is an obligate extracellular matrix component found mainly in the bas...
The pulmonary system develops from a series of complex events that involve coordinated growth and di...
AbstractAlveologenesis is the final step of lung maturation, which subdivides the alveolar region of...
The best characterised collagen IV disease is Alport syndrome, caused by α3.α4.α5(IV) mutations. Mut...
To access publisher full text version of this article. Please click on the hyperlink in Additional L...
Normal branching development is dependent on the correlation between cells and extracellular matrix....
Collagen deposition is a key process during idiopathic pulmonary fibrosis; however, little is known ...
BackgroundType IV collagen is the main component of the basement membrane that gives strength to the...
Background: Type IV collagen is the main component of the basement membrane that gives strength to t...
Basement membranes are specialized extracellular matrices consisting of tissue-specific organization...
Type IV collagen is proposed to be a key molecule in the evolvement of multicellular animals by form...
During vertebrate development, the lung inaugurates as an endodermal bud from the primitive foregut....
Basement membrane (BM) is an essential part of the extracellular matrix (ECM) that plays a crucial r...
Basement membrane (BM) is an essential part of the extracellular matrix (ECM) that plays a crucial r...
During vertebrate development, the lung inaugurates as an endodermal bud from the primitive foregut....
Type VI collagen (collagen VI) is an obligate extracellular matrix component found mainly in the bas...
The pulmonary system develops from a series of complex events that involve coordinated growth and di...
AbstractAlveologenesis is the final step of lung maturation, which subdivides the alveolar region of...
The best characterised collagen IV disease is Alport syndrome, caused by α3.α4.α5(IV) mutations. Mut...
To access publisher full text version of this article. Please click on the hyperlink in Additional L...
Normal branching development is dependent on the correlation between cells and extracellular matrix....
Collagen deposition is a key process during idiopathic pulmonary fibrosis; however, little is known ...