TY - JOUR
T1 - CD18/ICAM-1-dependent nitric oxide production of Kupffer cells as a cause of mitochondrial dysfunction in hepatoma cells
T2 - Influence of chronic alcohol feeding
AU - Kurose, Iwao
AU - Higuchi, Hajime
AU - Watanabe, Naoyuki
AU - Miura, Soichiro
AU - Tomita, Kengo
AU - Yonei, Yoshikazu
AU - Takaishi, Masaaki
AU - Zeki, Shigeyuki
AU - Nakamura, Tetsuya
AU - Saito, Hidetsugu
AU - Kato, Shinzo
AU - Ishii, Hiromasa
N1 - Funding Information:
The authors thank the Japanese Cancer Research Bank for donating the rat hepatoma cell line, AH70 cells. The authors appreciate the excellent assistance of Ms. R.C. Nakatsumi in the preparation of cultured cells. Discussions and comments on this study by Professor D.N. Granger and M.B. Grisham (LSUMC, Shreveport, LA), and Dr. D Wink (NCI) are gratefully acknowledged. This project was supported by a Grant-in-Aid for Scientific Research from the Japanese Ministry of Education, Science and Culture of Japan, and by a grant from Keio University, School of Medicine.
PY - 1997
Y1 - 1997
N2 - The present study was designed to monitor the process for hepatoma cell injury induced by Kupffer cells. The non-activated Kupffer cells isolated from male Wistar rats reduced the mitochondrial membrane potential in the cocultured AH70 cells, which was indicated by the decreased rhodamine 123 (Rh123) fluorescence. Increased level of nitrite and nitrate in the medium and induction of iNOS in Kupffer cells were observed after coculture with AH70 cells. Incubation with either N(G)-monomethyl-L-arginine or aminoguanidine attenuated the increased nitric oxide (NO) production of Kupffer cells and the decreased Rh123 fluorescence of AH70 cells. Fluo-3, a calcium-sensitive probe, fluorescence in Kupffer cells increased after coculture with AH70 cells. Addition of TMB-8, a calcium inhibitor, or monoclonal antibody directed against ICAM-1 or CD18 prevented the increases in fluo-3 fluorescence and NO production of Kupffer cells and Kupffer cell- induced mitochondrial dysfunction in AH70 cells, suggesting the involvement of calcium mobilization and CD18/ICAM-1. It is therefore suggested that the Kupffer cell-mediated mitochondrial dysfunction of hepatoma cells largely depends on NO production by iNOS, and that the NO production by Kupffer cells is triggered by CD18/ICAM-1-dependent interaction with hepatoma cells and subsequent calcium mobilization. In other series of experiments, male Wistar rats fed ethanol for 4 weeks were used. The NO production and calcium mobilization of Kupffer cells and reduction of the mitochondrial membrane potential in cocultured hepatoma cells were diminished in the case of Kupffer cells isolated from chronically ethanol-fed rats, while CD18 and ICAM-1 expression was still observed. Thus, the present study further suggests that NO-dependent anti-hepatoma cell activity of Kupffer cells is suppressed in chronically ethanol-fed animals.
AB - The present study was designed to monitor the process for hepatoma cell injury induced by Kupffer cells. The non-activated Kupffer cells isolated from male Wistar rats reduced the mitochondrial membrane potential in the cocultured AH70 cells, which was indicated by the decreased rhodamine 123 (Rh123) fluorescence. Increased level of nitrite and nitrate in the medium and induction of iNOS in Kupffer cells were observed after coculture with AH70 cells. Incubation with either N(G)-monomethyl-L-arginine or aminoguanidine attenuated the increased nitric oxide (NO) production of Kupffer cells and the decreased Rh123 fluorescence of AH70 cells. Fluo-3, a calcium-sensitive probe, fluorescence in Kupffer cells increased after coculture with AH70 cells. Addition of TMB-8, a calcium inhibitor, or monoclonal antibody directed against ICAM-1 or CD18 prevented the increases in fluo-3 fluorescence and NO production of Kupffer cells and Kupffer cell- induced mitochondrial dysfunction in AH70 cells, suggesting the involvement of calcium mobilization and CD18/ICAM-1. It is therefore suggested that the Kupffer cell-mediated mitochondrial dysfunction of hepatoma cells largely depends on NO production by iNOS, and that the NO production by Kupffer cells is triggered by CD18/ICAM-1-dependent interaction with hepatoma cells and subsequent calcium mobilization. In other series of experiments, male Wistar rats fed ethanol for 4 weeks were used. The NO production and calcium mobilization of Kupffer cells and reduction of the mitochondrial membrane potential in cocultured hepatoma cells were diminished in the case of Kupffer cells isolated from chronically ethanol-fed rats, while CD18 and ICAM-1 expression was still observed. Thus, the present study further suggests that NO-dependent anti-hepatoma cell activity of Kupffer cells is suppressed in chronically ethanol-fed animals.
KW - A23187
KW - Aminoguanidine
KW - Fluo-3
KW - Laser scanning confocal microscope
KW - N(G)-monomethyl-L-arginine (L-NMMA)
KW - Rhodamine 123
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UR - http://www.scopus.com/inward/citedby.url?scp=0030636529&partnerID=8YFLogxK
U2 - 10.1016/S0891-5849(96)00332-2
DO - 10.1016/S0891-5849(96)00332-2
M3 - Article
C2 - 8958149
AN - SCOPUS:0030636529
SN - 0891-5849
VL - 22
SP - 229
EP - 239
JO - Free Radical Biology and Medicine
JF - Free Radical Biology and Medicine
IS - 1-2
ER -