Walicka M A, Adelstein S J, Kassis A I
Department of Radiology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Radiat Res. 1998 Feb;149(2):134-41.
We have examined whether nuclear DNA can be protected from double-strand breaks (DSBs) induced by decay of the Auger-electron-emitting radionuclide 125I. Decays were accumulated at 0.3 degrees C in Chinese hamster V79 cells suspended in isotonic buffer containing 0.1 M EDTA in the presence or absence of 10% dimethyl sulfoxide (DMSO). DSBs were measured by the neutral elution method (pH 9.6) and quantified as strand scission factors. DMSO was shown to protect DNA from DSBs caused by the decay of DNA-incorporated 125I. The dose modification factor (DMF) for this radionuclide decreases as a function of 125I decays (389 to 4,100 decays, DMF = 2.5 to 1.3). Extrapolation of the curve for the DMF indicates that at approximately 15,000 decays/cell, a DMF of 1 would be obtained. Experiments using large numbers of 125I decays confirmed these extrapolations. For induction of DSBs by 137Cs gamma rays, the DMF also decreases with dose (50 to 290 Gy, DMF = 2.7 to 1.5). However, extrapolation of the curve for the DMF indicates that protection does not cease at higher doses. The data show that, at the same level of damage, DMSO can protect against gamma-ray-induced DSBs 1.35-fold more efficiently than against DSBs caused by the decay of DNA-incorporated 125I. It appears that when 125I is incorporated into DNA, chromatin structure fosters some DSB formation by an indirect mechanism(s) and that more than one DSB is generated per decaying atom.
我们研究了核DNA是否能免受俄歇电子发射放射性核素125I衰变诱导产生的双链断裂(DSB)影响。在中国仓鼠V79细胞中,衰变在0.3℃下累积,细胞悬浮于含有0.1M EDTA的等渗缓冲液中,存在或不存在10%二甲基亚砜(DMSO)。通过中性洗脱法(pH 9.6)测量DSB,并将其量化为链断裂因子。结果表明,DMSO可保护DNA免受掺入DNA的125I衰变所导致的DSB影响。该放射性核素的剂量修正因子(DMF)随125I衰变(389至4100次衰变,DMF = 2.5至1.3)而降低。DMF曲线的外推表明,在约15000次衰变/细胞时,将获得DMF为1。使用大量125I衰变的实验证实了这些外推结果。对于137Csγ射线诱导DSB,DMF也随剂量降低(50至290 Gy,DMF = 2.7至1.5)。然而,DMF曲线的外推表明,在更高剂量下保护作用不会停止。数据显示,在相同损伤水平下,DMSO对γ射线诱导的DSB的保护效率比对掺入DNA的125I衰变所导致的DSB高1.35倍。似乎当125I掺入DNA时,染色质结构通过一种间接机制促进了一些DSB的形成,并且每个衰变原子会产生不止一个DSB。