Enhancing effect of an inhibitor of nitric oxide synthesis on Bacillus Calmette-Guerin-induced macrophage cytotoxicity against murine bladder cancer cell line MBT-2 in vitro
H. Yamada et al., Enhancing effect of an inhibitor of nitric oxide synthesis on Bacillus Calmette-Guerin-induced macrophage cytotoxicity against murine bladder cancer cell line MBT-2 in vitro, JPN J CANC, 91(5), 2000, pp. 534-542
We studied the effect of an inhibitor of nitric oxide (KO) synthesis, N-G-m
onomethyl-L-arginine (L-NMMA), on the Bacillus Calmette-Guerin (BCG)-induce
d antitumor activity of murine peritoneal exudate cells (PEC) against murin
e bladder cancer cell line MBT-2 in vitro. L-NMMA enhanced BCG-induced cyto
toxic activity of PEG, as wed as interferon (IFN)-gamma and tumor necrosis
factor (TNF)-alpha production. The L-NMMA-induced enhancement was due to th
e prolonged survival of BCG in macrophages, because no enhancement of cytot
oxicity: was observed and neither IFN-gamma nor TNF-alpha production was si
gnificantly enhanced by killed BCG. Anti-TNF-alpha antibody (Ab) and anti-I
FN-gamma Ab reduced the L-NMMA-induced enhancement of the cytotoxicity. The
depletion of T cells from PEC reduced the production of both IFN-gamma and
TNF-alpha, as well as the enhancement of cytotoxicity induced by viable BC
G plus L-NMMA. These results suggest that L-NMMA has an enhancing effect on
BCG-induced macrophage cytotoxicity and the enhancement is partially media
ted by T cells and their soluble products. Accordingly, NO inhibitor should
be a valuable adjunct to BCG immunotherapy for bladder cancer.