外周血淋巴细胞在暴露于具有不同物理性质的X射线后的DNA损伤反应不同。

Simon Sioen, Louise D'Hondt, Fien Van Houte, Robin Demuynck, Klaus Bacher, Carlos De Wagter, Anne Vral, Barbara Vanderstraeten, Dmitri V Krysko, Ans Baeyens
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引用次数: 0

摘要

引言:在放射学中,低X射线能量(从体外研究到临床实践。然而,X射线的能量沉积取决于其能谱,这可能会导致生物反应的变化。因此,本研究比较了暴露于不同光束质量的X射线的外周血淋巴细胞的DNA损伤反应(DDR),平均光子能量(MPE)和剂量率。方法:采用H2AX病灶法、胞质分裂阻断微核法和基于SYTOX的细胞死亡法,结合特异性细胞死亡抑制剂,对外周血淋巴细胞(PBL)的DDR进行评估。用220 kV X射线研究柜(SARRP、X-Strahl)或6 MV X射线线性加速器(Elekta Synergy)。研究了三个主要物理参数:光束质量(V)、MPE(eV)和剂量率(Gy/min)。额外的铜(Cu)过滤导致MPE(78 keV,94 keV,118 keV);剂量率通过调节220 kV X射线(0.33-3 Gy/min)或6 MV设置(3-6 Gy/min)。结果:诱导的染色体损伤和初始(30 分钟)DNA双链断裂(DSBs)显著高于220 kV X射线与6 MV X射线,而细胞死亡诱导相似。细胞凋亡、坏死和脱铁的特异性细胞死亡抑制剂在使用低能量或高能X射线照射后不能阻断细胞死亡。额外的Cu过滤增加了MPE,这显著降低了染色体损伤和DSBs的数量。在测试范围内,未观察到剂量率变化的具体影响。结论:PBLs的DDR受光束质量和MPE的影响。这项研究强调了在辐射相关研究中考虑和纳入所有物理参数的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peripheral blood lymphocytes differ in DNA damage response after exposure to X-rays with different physical properties.

Introduction: In radiology, low X-ray energies (<140 keV) are used to obtain an optimal image while in radiotherapy, higher X-ray energies (MeV) are used to eradicate tumor tissue. In radiation research, both these X-ray energies being used to extrapolate in vitro research to clinical practice. However, the energy deposition of X-rays depends on their energy spectrum, which might lead to changes in biological response. Therefore, this study compared the DNA damage response (DDR) in peripheral blood lymphocytes (PBLs) exposed to X-rays with varying beam quality, mean photon energy (MPE) and dose rate.Methods: The DDR was evaluated in peripheral blood lymphocytes (PBLs) by the ɣ-H2AX foci assay, the cytokinesis-block micronucleus assay and an SYTOX-based cell death assay, combined with specific cell death inhibitors. Cell cultures were irradiated with a 220 kV X-ray research cabinet (SARRP, X-Strahl) or a 6 MV X-ray linear accelerator (Elekta Synergy). Three main physical parameters were investigated: beam quality (V), MPE (eV) and dose rate (Gy/min). Additional copper (Cu) filtration caused variation in the MPE (78 keV, 94 keV, 118 keV) at SARRP; dose rates were varied by adjusting tube current for 220 kV X-rays (0.33-3 Gy/min) or water-phantom depth in the 6 MV set-up (3-6 Gy/min).Results: The induction of chromosomal damage and initial (30 min) DNA double-stranded breaks (DSBs) were significantly higher for 220 kV X-rays compared to 6 MV X-rays, while cell death induction was similar. Specific cell death inhibitors for apoptosis, necroptosis and ferroptosis were not capable of blocking cell death after irradiation using low or high-energy X-rays. Additional Cu filtration increased the MPE, which significantly decreased the amount of chromosomal damage and DSBs. Within the tested ranges no specific effects of dose rate variation were observed.Conclusion: The DDR in PBLs is influenced by the beam quality and MPE. This study reinforces the need for consideration and inclusion of all physical parameters in radiation-related studies.

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