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A Comparison of In Vivo Cellular Responses to Cs-137 Gamma Rays And 320-kV X Rays

机译:Cs-137伽玛射线和320-kV X射线体内细胞反应的比较

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摘要

Research reported here relates to comparing the relative effectiveness of 320-kV X rays compared to Cs-137 gamma rays for two in vivo endpoints in C.B-17 mice after whole-body exposure: (1) cytotoxicity to bone marrow cells and splenocytes evaluated at 24-hours post exposure and (2) bone marrow and spleen reconstitution deficits (repopulation shortfalls) evaluated at 6 weeks post exposure. We show that cytotoxicity dose-response relationships for bone marrow cells and splenocytes are complex, involving negative curvature (decreasing slope as dose increases), presumably implicating a mixed cell population comprised of large numbers of hypersensitive, modestly radiosensitive, and resistant cells. The radiosensitive cells appear to respond with 50% being killed by a dose < 0.5 Gy. The X-ray relative biological effectiveness (RBE), relative to gamma rays, for destroying bone marrow cells in vivo is > 1, while for destroying splenocytes it is < 1. In contrast, dose-response relationships for reconstitution deficits in the bone marrow and spleen of C.B-17 mice at 6 weeks after radiation exposure were of the threshold type with gamma rays being more effective in causing reconstitution deficit.
机译:本文报道的研究涉及在全身暴露于CB-17小鼠体内后,比较320 kV X射线和Cs-137γ射线对两个体内终点的相对有效性:(1)评估对骨髓细胞和脾细胞的细胞毒性暴露后24小时和(2)暴露后6周评估骨髓和脾脏重建缺陷(人口减少)。我们表明,骨髓细胞和脾细胞的细胞毒性剂量反应关系很复杂,涉及负曲率(随着剂量增加斜率减小),推测牵连着由大量超敏,适度放射敏感性和耐药性细胞组成的混合细胞群。放射敏感性细胞似乎有反应,50%的剂量<0.5 Gy被杀死。相对于伽玛射线,体内破坏骨髓细胞的X射线相对生物学有效性(RBE)> 1,而破坏脾细胞的X射线相对生物学有效性<1。相反,骨髓重建缺陷的剂量反应关系辐射暴露后6周时CB-17小鼠的脾脏和脾脏属于阈值类型,伽马射线更有效地引起重建缺陷。

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