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Acid spike effect in spurs/tracks of the low/high linear energy transfer radiolysis of water: potential implications for radiobiology

机译:低/高线性能量转移辐射分解的杂散/轨迹中的酸刺效应:对放射生物学的潜在影响

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摘要

Monte Carlo track chemistry simulations have been used to calculate the yields of hydronium ions (H3O+) that are formed within spurs/tracks of the low/high linear energy transfer (LET) radiolysis of pure, deaerated water during and shortly after irradiation. The in situ formation of H3O+ renders the spur/track regions temporarily more acidic than the surrounding medium. Although experimental evidence for an acidic spur has already been reported, there is only fragmentary information on its magnitude and time dependence. Here, spur/track H3O+ concentrations and the corresponding pH values are obtained from our calculated yields of H3O+ as a function of time (in the interval of similar to 1 ps to 1 ms). We selected four impacting ions and we used two different spur/track models: (1) an isolated "spherical" spur model characteristic of low-LET radiation (such as 300 MeV protons, which mimic Co-60 gamma/fast electron irradiation, LET similar to 0.3 keV mu m(-1)) and (2) an axially homogeneous "cylindrical" track model for high-LET radiation (such as 150 keV protons, LET similar to 70 keV mu m(-1); 1.75 MeV per nucleon helium ions, LET similar to 70 keV mu m(-1); and 0.6 MeV per nucleon helium ions, LET similar to 146 keV mm(-1)). Very good agreement is found between our calculated time evolution of G(H3O+) in the radiolysis of pure, deaerated water by 300 MeV incident protons and the available experimental data at 25 degrees C. For all cases studied, an abrupt transient acid pH effect is observed at times immediately after the initial energy release. This effect, which we call an "acid spike", is found to be greatest for times shorter than similar to 1 ns in isolated spurs. In this time range, the pH remains nearly constant at similar to 3.3. For cylindrical tracks, the acid spike response to ionizing radiation is far more intense than that for the spherical spur geometry. For the three high-LET irradiating ions considered, the pH is around 0.5 on a time scale of similar to 100 ps. At longer times, the pH increases gradually for all cases, ultimately reaching a value of 7 (neutral pH) at similar to 1 mu s for the spherical geometry and similar to 0.1 ms for the cylindrical geometry. It does not appear that the transient acid spike effect described here has been explored in water or in a cellular environment subject to the action of ionizing radiation, especially high-LET radiation. In this regard, this work raises a number of questions about the potential implications of this effect in radiobiology, some of which are briefly evoked.
机译:蒙特卡洛轨道化学模拟已用于计算在辐照期间和辐照后不久的纯净,脱气的低/高线性能量转移(LET)辐射分解/正杂物/迹线中形成的水​​合氢离子(H3O +)的产率。 H3O +的原位形成使支点/径迹区域暂时比周围的介质更酸性。尽管已经报道了酸性刺刺的实验证据,但是关于其强度和时间依赖性只有零碎的信息。在这里,从我们计算出的H3O +产量作为时间的函数(在大约1 ps到1 ms的间隔内),可得出杂散/径迹H3O +浓度和相应的pH值。我们选择了四个碰撞离子,并使用了两种不同的正/轨迹模型:(1)低LET辐射(例如300 MeV质子,模拟Co-60伽玛/快速电子辐射,LET)的孤立的“球形”正杂波模型类似于0.3 keVμm(-1))和(2)用于高LET辐射(例如150 keV质子,LET类似于70 keV mu m(-1)的轴向均质“圆柱”轨道模型;每1.75 MeV核子氦离子的LET类似于70 keVμm(-1);每个核子氦离子0.6 MeV的LET类似于146keV mm(-1))。我们在纯脱气的300 MeV入射质子对纯净脱气水中的G(H3O +)的计算时间演化与25°C的可用实验数据之间发现了非常好的一致性。对于所有研究的情况,突然的瞬时酸pH效应都是在初始能量释放后立即观察到。我们发现这种影响(我们称为“酸尖峰”)在比短距离杂散中的短于1 ns的时间更短。在此时间范围内,pH值几乎保持恒定,接近3.3。对于圆柱形轨道,酸尖峰对电离辐射的响应要比对球形支点几何结构的响应强得多。对于所考虑的三个高LET辐射离子,在大约100 ps的时间范围内,pH值约为0.5。在更长的时间内,所有情况下的pH值都会逐渐增加,最终达到7(中性pH)的值,球形几何形状约为1毫秒,圆柱形几何形状约为0.1毫秒。似乎在水或受电离辐射(尤其是高LET辐射)影响的细胞环境中,并未探讨此处所述的瞬时酸加标效应。在这方面,这项工作引起了关于此效应在放射生物学中的潜在影响的许多问题,其中一些是简短引起的。

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