Roots R, Holley W, Chatterjee A, Rachal E, Kraft G
Cell and Molecular Biology Division, Lawrence Berkeley Laboratory, University of California, Berkeley 94720, USA.
Adv Space Res. 1989;9(10):45-55. doi: 10.1016/0273-1177(89)90422-5.
We have aimed to present a comprehensive review of our understanding to date of the formation of DNA strand breaks induced by high LET radiation. We have discussed data obtained from DNA in solution as well as from the formation and "repair" of strand breaks in cell DNA. There is good agreement, qualitatively, between these two systems. Results were evaluated for two parameters: (1) effectivity per particle, the cross section (sigma) in micrometers 2/particle; and (2) the strand break induction frequency as number of breaks per Gy per unit DNA (bp or dalton). A series of biological effects curves (one for each Z-number) is obtained in effectivity versus LET plots. The relationships between induction frequencies of single-strand breaks, or double-strand breaks, or the residual "irrepairable" breaks and LET-values have been evaluated and discussed for a wide spectrum of heavy ions, both for DNA in solution and for DNA in the cell. For radiation induced total breaks in cell DNA, the RBE is less than one, while the RBE for the induction of DSBs can be greater than one in the 100-200 keV/micrometers range. The level of irrepairable strand breaks is highest in this same LET range and may reach 25 percent of the initial break yield. The data presented cover results obtained for helium to uranium particles, covering a particle incident energy range of about 2 to 900 MeV/u with a corresponding LET range of near 16 to 16000 keV/micrometers.
我们旨在对目前我们对高传能线密度(LET)辐射诱导DNA链断裂形成的理解进行全面综述。我们讨论了从溶液中的DNA以及细胞DNA中链断裂的形成和“修复”获得的数据。这两个系统在定性方面有很好的一致性。对结果评估了两个参数:(1)每个粒子的有效性,即截面(σ),单位为微米²/粒子;(2)链断裂诱导频率,以每戈瑞每单位DNA(碱基对或道尔顿)的断裂数表示。在有效性与LET的关系图中获得了一系列生物效应曲线(每个Z值对应一条)。对于广泛的重离子,已经评估并讨论了单链断裂、双链断裂或残余“不可修复”断裂的诱导频率与LET值之间的关系,包括溶液中的DNA和细胞中的DNA。对于辐射诱导的细胞DNA中的总断裂,相对生物效应(RBE)小于1,而在100 - 200 keV/微米范围内,双链断裂诱导的RBE可能大于1。在相同的LET范围内,不可修复链断裂的水平最高,可能达到初始断裂产额的25%。所呈现的数据涵盖了从氦粒子到铀粒子获得的结果,粒子入射能量范围约为2至900 MeV/u,相应的LET范围接近16至16000 keV/微米。