Modulation of radiation-induced chromosome aberrations by DMSO, an OH radical scavenger. 1: Dose-response studies in human lymphocytes exposed to 220 kV X-rays.

L G Littlefield, E E Joiner, S P Colyer, A M Sayer, E L Frome
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引用次数: 76

Abstract

Human G0 lymphocytes were exposed to 220 kV X-radiation in the presence or absence of DMSO, an efficient selective scavenger of OH radicals. Our studies demonstrate that DMSO affects a concentration-dependent modulation of induced asymmetrical aberrations in human lymphocytes exposed to approximately 3.0 Gy, with maximum protectible fractions of approximately 70 percent at DMSO concentrations of greater than or equal to 1 M. The dose dependency for dicentrics in lymphocytes acutely exposed to X-ray doses of 0.51 to 4.98 Gy in the absence of DMSO is adequately described by the linear-quadratic dose-response function Y = alpha D + beta D2. Data from duplicate cultures exposed in the presence of 1 M DMSO produce an excellent fit to the regression function modified as follows: Y(+ DMSO) = alpha(delta D) + beta(delta D)2 where the 'dose modifying' factor delta = 0.501. We interpret these findings as providing evidence that OH radical-mediated lesions in DNA account for approximately 50 percent of the dose dependency for dicentrics resulting from either one-track or two-track events, following exposures of non-cycling cells to moderate-to-high doses of low LET radiation. These data may be used in additional calculations to derive an estimate of approximately 6 x 10(8) s-1 for the rate of reaction of OH radicals with DNA targets involved in aberration formation.

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OH自由基清除剂DMSO对辐射诱导的染色体畸变的调节。1:人类淋巴细胞暴露于220千伏x射线的剂量反应研究。
人G0淋巴细胞暴露在220千伏x射线中,无论DMSO存在与否,DMSO是一种有效的OH自由基选择性清除剂。我们的研究表明,DMSO影响暴露于约3.0 Gy的人淋巴细胞诱导的不对称畸变的浓度依赖性调节。在DMSO浓度大于或等于1 m时,最大保护分数约为70%。在没有DMSO的情况下,急性暴露于0.51至4.98 Gy x射线剂量的淋巴细胞中双心性的剂量依赖性可以用线性二次剂量响应函数Y = α D + β D2充分描述。在1 M DMSO存在下暴露的重复培养的数据与如下修正的回归函数非常吻合:Y(+ DMSO) = α (δ D) + β (δ D)2,其中“剂量修正”因子δ = 0.501。我们将这些发现解释为提供证据,证明非循环细胞暴露于中至高剂量的低LET辐射后,DNA中OH自由基介导的损伤约占单轨或双轨事件引起的双中心的剂量依赖性的50%。这些数据可用于额外的计算,以得出约6 × 10(8) s-1的OH自由基与参与畸变形成的DNA目标的反应速率的估计。
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