Wuttke K, Müller W U, Streffer C
Institut für Medizinische Strahlenbiologie, Universitätsklinikum Essen, Germany.
Strahlenther Onkol. 1998 May;174(5):262-8. doi: 10.1007/BF03038719.
The dose-response relationship and the relative biological effectiveness (RBE) for the induction of micronuclei in lymphocytes was analyzed after irradiation in vitro with a 6-MeV neutron beam that was followed by 240-kV X-rays. The dose range of the combined exposure comprised 1 to 3 Gy. For reference, the dose-effect relationships found after X-ray (0.5 to 5 Gy)- and neutron (0.5 to 4 Gy) exposure applied separately are presented. The possibility of an interaction between the 2 radiation qualities is investigated by the method of isobole calculation termed "envelope of additivity".
Micronuclei were analyzed in PHA-stimulated, cytokinesis-blocked human lymphocytes.
The dose-response relationships for the micronucleus frequencies induced by the neutron irradiation, as well as by the mixed exposure, were linear. A saturation effect was indicated after neutron doses higher than 3 Gy. After low LET exposure the dose-response curves were describable by a linear-quadratic model. For neutron-induced micronucleus frequencies, RBE-values of 2 to 3 and for the combined exposure RBE values of 1.5 to 2 were calculated for a range of effect of 0.5 to 1.5 micronuclei/binucleated lymphocyte. No indication was found for an interaction between the damage induced by X-rays and that produced by neutrons under our experimental conditions.
These studies demonstrate a clear dependence of micronucleus induction on radiation quality and emphasize the usefulness of the micronucleus assay in biological dosimetry, also in cases in which high LET radiation or a mixed beam is involved as the radiation source.
在用6兆电子伏中子束体外照射后接着进行240千伏X射线照射的情况下,分析淋巴细胞中微核诱导的剂量反应关系和相对生物效能(RBE)。联合照射的剂量范围为1至3戈瑞。作为参考,还给出了分别进行X射线(0.5至5戈瑞)和中子(0.5至4戈瑞)照射后发现的剂量效应关系。通过称为“相加性包络”的等效线计算方法研究了这两种辐射品质之间相互作用的可能性。
在PHA刺激、细胞分裂阻断的人淋巴细胞中分析微核。
中子照射以及联合照射诱导的微核频率的剂量反应关系呈线性。中子剂量高于3戈瑞后显示出饱和效应。低传能线密度照射后,剂量反应曲线可用线性二次模型描述。对于中子诱导的微核频率,在0.5至1.5个微核/双核淋巴细胞的效应范围内,计算出的RBE值为2至3,联合照射的RBE值为1.5至2。在我们的实验条件下,未发现X射线诱导的损伤与中子诱导的损伤之间存在相互作用的迹象。
这些研究表明微核诱导明显依赖于辐射品质,并强调了微核检测在生物剂量测定中的有用性,即使在涉及高传能线密度辐射或混合束作为辐射源的情况下也是如此。