Hirst D G, Wood P J, Schwartz H C
Department of Therapeutic Radiology, Stanford School of Medicine, Stanford University, California 94305.
Radiat Res. 1987 Oct;112(1):164-72.
It has been recognized for some time that alterations in the affinity of Hb for oxygen could offer a means of improving oxygen delivery to tumors and achieving radiosensitization. Three antilipidemic drugs, clofibrate, bezafibrate, and gemfibrozil, two of which had previously been shown to reduce Hb/O2 affinity in vitro, were tested in mice for their ability to affect Hb/O2 affinity and to alter the radiosensitivity of the RIF-1 sarcoma. Each of the drugs produced a significant increase in the P50 of the blood, from a mean control value of 45 mm Hg to 55, 74, and 51 mm Hg after a dose of 1 g/kg of clofibrate, bezafibrate, and gemfibrozil, respectively. However, they had very different effects on the radiosensitivity of the RIF-1 tumor. When the mice breathed air at the time of irradiation, clofibrate produced a marked sensitization equivalent at the optimum time to a 20-fold reduction in hypoxic fraction; bezafibrate gave a lower sensitization equivalent to a 4-fold reduction, while gemfibrozil caused dramatic radioresistance equivalent to a 10-fold increase in hypoxic fraction. When the mice were given 95% O2/5% CO2 to breathe at the time of irradiation to ensure complete Hb saturation in the lungs, a large increase in the sensitization by bezafibrate was seen, but there was only a small change with clofibrate. We conclude that drugs which reduce Hb/O2 affinity could have a role in sensitizing tumors to radiation.
一段时间以来,人们已经认识到血红蛋白(Hb)对氧亲和力的改变可能提供一种改善肿瘤氧输送并实现放射增敏的方法。三种降血脂药物,即氯贝丁酯、苯扎贝特和吉非贝齐,其中两种此前已被证明在体外可降低Hb/氧气亲和力,在小鼠身上测试了它们影响Hb/氧气亲和力以及改变RIF-1肉瘤放射敏感性的能力。每种药物均使血液的P50显著增加,在给予1 g/kg氯贝丁酯、苯扎贝特和吉非贝齐后,平均对照值从45 mmHg分别升至55、74和51 mmHg。然而,它们对RIF-1肿瘤的放射敏感性有非常不同的影响。当小鼠在照射时呼吸空气时,氯贝丁酯在最佳时间产生显著的增敏效果,相当于缺氧分数降低20倍;苯扎贝特产生的增敏效果较低,相当于缺氧分数降低4倍,而吉非贝齐导致显著的放射抗性,相当于缺氧分数增加10倍。当小鼠在照射时给予95%氧气/5%二氧化碳呼吸以确保肺部血红蛋白完全饱和时,苯扎贝特的增敏作用大幅增加,但氯贝丁酯仅有微小变化。我们得出结论,降低Hb/氧气亲和力的药物可能在使肿瘤对辐射敏感方面发挥作用。