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高能临床 3 和 6 MeV X 射线对人淋巴细胞微核诱导的相对生物效应。

The relative biological effectiveness of high-energy clinical 3 and 6 MV X-rays for micronucleus induction in human lymphocytes.

机构信息

Central Research Lab, K.S. Hegde Medical Academy, Nitte (Deemed to be University), Mangalore, India.

Department of Human Genetics, Sri Ramachandra Institute of Higher Education and Research (Deemed to be University), Chennai, India.

出版信息

Int J Radiat Biol. 2021;97(5):687-694. doi: 10.1080/09553002.2021.1906972. Epub 2021 Apr 2.

Abstract

PURPOSE

In the modern era of radiotherapy, use of conventional radiation modalities (based on γ-rays) is being replaced by high-energy linear accelerator-based X-rays. As a result of mishandling of equipment or mechanical errors, health workers can be exposed to these high-energy X-rays. Especially in the absence of personnel monitoring devices, biodosimetry with a lower energy X-ray calibration curve may not provide an acceptable dose estimate. Moreover, the relative biological effectiveness (RBE) value assigned for X-rays is the same (ONE) regardless of beam energy (V), employed in diagnosis, interventional medicine, and radiotherapy. Therefore, the purpose of the study is to examine the induced biological effects, measured through micronucleus (MN) formation, of X-rays of different energies (3 and 6 MV X-rays), and to investigate the RBE relative to 225 kVp X-rays.

MATERIALS AND METHODS

Peripheral blood lymphocytes (PBLs) from healthy donors ( = 6), were irradiated with 225 kVp, 3 MV, and 6 MV energy X-rays and induced biological damage was quantified as MN formation using the cytokinesis blocked MN (CBMN) assay.

RESULTS

The MN per cell in the X-irradiated samples for the three different X-ray energies showed a significant (<.0001) dose-dependent increase, when compared to unexposed samples. Aberration frequencies obtained at the same dose for the three different energies showed significant (<.05) difference for the MN per cell among the energy levels; however, the in vitro dose-response curve parameters (slope, intercept, and coefficient) did not show any significant differences. The estimated dose in the blinded sample was within the 95% confidence intervals of each of the calibration curves. However, overall, the 6 MV dose-response curve coefficients yielded the closest dose estimate to that of the true dose. The calculated RBE values at 5% induced MN for 3 and 6 MV LINAC X-rays were 2.0 ± 0.04 and 0.70 ± 0.01, respectively, and the average RBE for the complete dose-response curves were 1.13 ± 0.04 and 0.80 ± 0.02 relative to 225 kVp X-rays as standard radiation.

CONCLUSION

The established dose-response curves obtained for PBL exposed to different energy levels of X-rays of 225 kVp, 3 MV, and 6 MV are ready to use for biological dosimetry purposes. The calculated RBE values for the higher energies of X-rays relative to 225 kVp X-rays in this study suggest that RBE of X-rays may not be equal to one, with the true value dependent on the beam energy, the dose and dose rate, and the endpoint investigated.

摘要

目的

在现代放射治疗时代,传统的放射方式(基于γ射线)正被高能直线加速器 X 射线所取代。由于设备操作不当或机械故障,医务人员可能会接触到这些高能 X 射线。特别是在没有人员监测设备的情况下,使用较低能量 X 射线校准曲线进行生物剂量测定可能无法提供可接受的剂量估算。此外,用于诊断、介入医学和放射治疗的 X 射线的相对生物效应(RBE)值相同(ONE),无论所采用的射线能量(V)如何。因此,本研究的目的是研究不同能量(3 和 6 MV X 射线)的 X 射线诱导的生物效应,通过微核(MN)形成进行测量,并研究与 225 kVp X 射线相比的 RBE。

材料和方法

来自健康供体(n = 6)的外周血淋巴细胞(PBL)用 225 kVp、3 MV 和 6 MV 能量 X 射线照射,使用胞质分裂阻断微核(CBMN)测定法定量 X 射线诱导的生物损伤作为 MN 形成。

结果

与未暴露的样本相比,三种不同 X 射线能量照射的 X 射线照射样本中的 MN 细胞明显(<.0001)呈剂量依赖性增加。在相同剂量下获得的三种不同能量的畸变频率在细胞水平上的 MN 之间显示出显著(<.05)差异;然而,体外剂量反应曲线参数(斜率、截距和系数)没有显示出任何能量水平之间的显著差异。在盲样中估计的剂量在每个校准曲线的 95%置信区间内。然而,总体而言,6 MV 剂量反应曲线系数得出的剂量估计最接近真实剂量。3 和 6 MV LINAC X 射线在 5%诱导 MN 时的计算 RBE 值分别为 2.0±0.04 和 0.70±0.01,完整剂量反应曲线的平均 RBE 分别为 225 kVp X 射线的 1.13±0.04 和 0.80±0.02。

结论

为不同能量水平的 225 kVp、3 MV 和 6 MV X 射线暴露的 PBL 建立的剂量反应曲线已准备好用于生物剂量测定目的。本研究中计算的较高 X 射线能量相对于 225 kVp X 射线的 RBE 值表明,X 射线的 RBE 可能不等于 1,其真实值取决于射线能量、剂量和剂量率以及所研究的终点。

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