TY - JOUR
T1 - Differential response of human lung epithelial cells to Fas-induced apoptosis
AU - Nakamura, Morio
AU - Matute-Bello, Gustavo
AU - Liles, W. Conrad
AU - Hayashi, Shinichi
AU - Kajikawa, Osamu
AU - Lin, Shu Min
AU - Frevert, Charles W.
AU - Martin, Thomas R.
PY - 2004/6
Y1 - 2004/6
N2 - The Fas (CD95)/Fas ligand (CD178) system plays an important role in epithelial damage during the acute respiratory distress syndrome. The goal of this study was to determine whether proximal and distal human lung epithelial cells differ in their sensitivity to Fas ligand (rh-sFasL), and whether the response of lung epithelium to Fas ligation is modulated by proinflammatory cytokines. Although the expression of both Fas message and protein was similar in proximal and distal lung epithelial cells, only distal cells became apoptotic when exposed to serial dilutions of rh-sFasL. Stimulation with tumor necrosis factor-α, interleukin-1β, or interferon-γ significantly increased the sensitivity of proximal cells to rh-sFasL, and exposure to either tumor necrosis factor-α or interferon-γ enhanced the sensitivity of distal cells to Fas ligation. These findings suggest that in normal human lungs, the responses of the epithelium to Fas ligation become more pronounced from proximal to distal locations. Furthermore, proinflammatory cytokines sensitize lung epithelium to Fas-induced death. These findings are relevant for understanding the role of the Fas/FasL system in acute lung injury, in which epithelial damage occurs primarily in distal airway and alveolar epithelium, whereas sFasL is present throughout the airspaces.
AB - The Fas (CD95)/Fas ligand (CD178) system plays an important role in epithelial damage during the acute respiratory distress syndrome. The goal of this study was to determine whether proximal and distal human lung epithelial cells differ in their sensitivity to Fas ligand (rh-sFasL), and whether the response of lung epithelium to Fas ligation is modulated by proinflammatory cytokines. Although the expression of both Fas message and protein was similar in proximal and distal lung epithelial cells, only distal cells became apoptotic when exposed to serial dilutions of rh-sFasL. Stimulation with tumor necrosis factor-α, interleukin-1β, or interferon-γ significantly increased the sensitivity of proximal cells to rh-sFasL, and exposure to either tumor necrosis factor-α or interferon-γ enhanced the sensitivity of distal cells to Fas ligation. These findings suggest that in normal human lungs, the responses of the epithelium to Fas ligation become more pronounced from proximal to distal locations. Furthermore, proinflammatory cytokines sensitize lung epithelium to Fas-induced death. These findings are relevant for understanding the role of the Fas/FasL system in acute lung injury, in which epithelial damage occurs primarily in distal airway and alveolar epithelium, whereas sFasL is present throughout the airspaces.
UR - https://www.scopus.com/pages/publications/2442689331
U2 - 10.1016/S0002-9440(10)63755-8
DO - 10.1016/S0002-9440(10)63755-8
M3 - 文章
C2 - 15161631
AN - SCOPUS:2442689331
SN - 0002-9440
VL - 164
SP - 1949
EP - 1958
JO - American Journal of Pathology
JF - American Journal of Pathology
IS - 6
ER -