The molecular mechanisms that regulate multicellular architecture and the development of extended apical bile canalicular lumens in hepatocytes are poorly understood. Here, we show that hepatic HepG2 cells cultured on glass coverslips first develop intercellular apical lumens typically formed by a pair of cells. Prolonged cell culture results in extensive organizational changes, including cell clustering, multilayering, and apical lumen morphogenesis. The latter includes the development of large acinar structures and subsequent elongated canalicular lumens that span multiple cells. These morphological changes closely resemble the early organizational pattern during development, regeneration, and neoplasia of the liver and are rapidly induce...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
Lumen morphogenesis results from the interplay between molecular pathways and mechanical forces. In ...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Lumen morphogenesis results from the interplay between molecular pathways and mechanical forces. In ...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
The molecular mechanisms that regulate multicellular architecture and the development of extended ap...
Lumen morphogenesis results from the interplay between molecular pathways and mechanical forces. In ...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Lumen morphogenesis results from the interplay between molecular pathways and mechanical forces. In ...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Columnar epithelia (e.g., kidney, intestine) and hepatocytes embody the two major organizational phe...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Signaling via cAMP plays an important role in apical cell surface dynamics in epithelial cells. In h...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...