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Dose-rate plays a significant role in synchrotron radiation X-ray-induced damage of rodent testes

机译:剂量率在同步辐射X射线诱导的啮齿动物睾丸损伤中起重要作用

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摘要

Synchrotron radiation (SR) X-ray has significant potential for applications in medical imaging and cancer treatment. However, the mechanisms underlying SR X-ray-induced tissue damage remain unclear. Previous studies on regular X-ray-induced tissue damage have suggested that dose-rate could affect radiation damage. Because SR X-ray has exceedingly high dose-rate compared to regular X-ray, it remains to be determined if dose-rate may affect SR X-ray-induced tissue damage. We used rodent testes as a model to investigate the role of dose-rate in SR X-ray-induced tissue damage. One day after SR X-ray irradiation, we determined the effects of the irradiation of the same dosage at two different dose-rates, 0.11 Gy/s and 1.1 Gy/s, on TUNEL signals, caspase-3 activation and DNA double-strand breaks (DSBs) of the testes. Compared to those produced by the irradiation at 0.11 Gy/s, irradiation at 1.1 Gy/s produced higher levels of DSBs, TUNEL signals, and caspase-3 activation in the testes. Our study has provided the first evidence suggesting that dose-rate could be a significant factor in SR X-ray-induced tissue damage, which may establish a valuable base for utilizing this factor to manipulate the tissue damage in SR X-ray-based medical applications.
机译:同步辐射(SR)X射线在医学成像和癌症治疗中具有巨大的潜力。然而,SR X射线引起的组织损伤的潜在机制仍不清楚。以前对常规X射线引起的组织损伤的研究表明,剂量率可能会影响辐射损伤。由于SR X射线与常规X射线相比具有极高的剂量率,因此仍有待确定剂量率是否会影响SR X射线引起的组织损伤。我们使用啮齿动物睾丸作为模型来研究剂量率在SR X射线诱导的组织损伤中的作用。 SR X射线辐照后的一天,我们确定了相同剂量的两种不同剂量率(0.11 Gy / s和1.1 Gy / s)的辐照对TUNEL信号,caspase-3激活和DNA双链的影响断裂(DSB)。与以0.11 Gy / s的辐射产生的辐射相比,以1.1 Gy / s的辐射产生的睾丸DSBs,TUNEL信号和caspase-3活化水平更高。我们的研究提供了第一个证据,表明剂量率可能是SR X射线引起的组织损伤的重要因素,这可能为利用该因子操纵基于SR X射线的医学损伤提供了有价值的基础应用程序。

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