J Radiat Res. 2022 Jan 20;63(1):30-35. doi: 10.1093/jrr/rrab099.
Ionizing radiation exposure affects the redox state in vivo. Recently, whole-blood antioxidant capacity (WBAC) has been reported to decrease in a dose-dependent manner after acute total body irradiation (TBI). However, changes in WBAC after localized and chronic irradiations have not been reported. This study analyzed changes to WBAC in mice after either localized irradiation (irradiation of the left hind leg only) or chronic TBI using the i-STrap method. Leg-localized irradiation exerted limited effects on WBAC, while WBAC decreased in a dose rate-dependent manner after TBI. Further, the WBAC reached the minimum value in a shorter period at a smaller dose rate. Our results suggest that changes in WBAC do not directly reflect absorbed dose, but may reflect radiation-induced biological damage at the systemic level. This study will contribute to the understanding of radiation-induced injuries and diseases, and will facilitate the establishment of biomarkers for radiation exposure.
电离辐射暴露会影响体内的氧化还原状态。最近,据报道,急性全身照射(TBI)后全血抗氧化能力(WBAC)会呈剂量依赖性下降。然而,局部照射和慢性照射后 WBAC 的变化尚未报道。本研究使用 i-STrap 方法分析了局部照射(仅照射左后腿)或慢性 TBI 后小鼠 WBAC 的变化。局部照射对 WBAC 的影响有限,而 TBI 后 WBAC 呈剂量率依赖性下降。此外,在较小的剂量率下,WBAC 在更短的时间内达到最小值。我们的结果表明,WBAC 的变化并不直接反映吸收剂量,而可能反映全身水平的辐射诱导的生物损伤。本研究将有助于了解辐射诱导的损伤和疾病,并有助于建立辐射暴露的生物标志物。