Takema M, Inaba K, Uno K, Kakihara K, Tawara K, Muramatsu S
Shionogi Research Laboratories, Osaka, Japan.
J Immunol. 1991 Mar 15;146(6):1928-33.
It has been reported that the tumoricidal activity of macrophages (M phi) depends on L-arginine and that L-arginine metabolites such as reactive nitrogen intermediates alter M phi physical capacities. The aim of this report is to investigate the dose-related effect of L-arginine on the expression and retention of M phi tumoricidal activity. Cytotoxicity of M phi activated by IFN-gamma plus LPS was detected in the presence of about 0.1 mM or more of L-arginine. This paralleled the NO2- production in the presence, but not in the absence, of L-arginine. On the other hand, activated M phi were destined to die and lost their tumoricidal activity with time in the presence of 0.3 mM or more L-arginine. They retained, however, considerable activity in the absence or presence of 0.15 mM L-arginine. This retention of M phi cytotoxicity was longer when M phi were preactivated by 100 ng/ml than 10 ng/ml of LPS in combination with IFN-gamma. Addition of indomethacin, an inhibitor of prostaglandin production, did not prevent the decay of M phi cytotoxicity but rather facilitated it even in the absence of L-arginine. Regardless of indomethacin, consecutive stimulation with LPS or LPS plus IFN-gamma during culture was effective in maintaining the tumoricidal activity at a high level. In addition, we found that M phi which had lost tumoricidal activity during culture in L-arginine deficient medium could be reactivated by LPS to attack tumor target cells.
据报道,巨噬细胞(M phi)的杀肿瘤活性依赖于L-精氨酸,并且L-精氨酸代谢产物如活性氮中间体可改变M phi的物理能力。本报告的目的是研究L-精氨酸对M phi杀肿瘤活性表达和维持的剂量相关效应。在存在约0.1 mM或更多L-精氨酸的情况下,检测了由IFN-γ加LPS激活的M phi的细胞毒性。这与存在L-精氨酸时(而非不存在时)的NO2-产生情况平行。另一方面,在存在0.3 mM或更多L-精氨酸的情况下,活化的M phi会随着时间推移而死亡并丧失其杀肿瘤活性。然而,在不存在或存在0.15 mM L-精氨酸的情况下,它们保留了相当的活性。当M phi由100 ng/ml而非10 ng/ml的LPS与IFN-γ联合预激活时,M phi细胞毒性的这种维持时间更长。添加前列腺素产生抑制剂吲哚美辛并不能阻止M phi细胞毒性的衰减,反而即使在不存在L-精氨酸的情况下也会促进其衰减。无论是否存在吲哚美辛,在培养过程中用LPS或LPS加IFN-γ连续刺激都能有效地将杀肿瘤活性维持在高水平。此外,我们发现,在缺乏L-精氨酸的培养基中培养期间失去杀肿瘤活性的M phi可被LPS重新激活以攻击肿瘤靶细胞。