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首页> 外文期刊>Calcified tissue international. >A dual-radioisotope hybrid whole-body micro-positron emission tomography/computed tomography system reveals functional heterogeneity and early local and systemic changes following targeted radiation to the murine caudal skeleton
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A dual-radioisotope hybrid whole-body micro-positron emission tomography/computed tomography system reveals functional heterogeneity and early local and systemic changes following targeted radiation to the murine caudal skeleton

机译:双放射性同位素混合全身微正电子发射断层扫描/计算机断层扫描系统显示出功能异质性以及靶向放射到鼠尾骨后的早期局部和全身变化

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The purpose of this study was to develop a longitudinal non-invasive functional imaging method using a dual-radioisotope hybrid micro-positron emission tomography/computed tomography (PET/CT) scanner in order to assess both the skeletal metabolic heterogeneity and the effect of localized radiation that models therapeutic cancer treatment on marrow and bone metabolism. Skeletally mature BALB/c female mice were given clinically relevant local radiation (16 Gy) to the hind limbs on day 0. Micro-PET/CT acquisition was performed serially for the same mice on days -5 and +2 with FDG and days -4 and +3 with NaF. Serum levels of pro-inflammatory cytokines were measured. Significant differences (p < 0.0001) in marrow metabolism (measured by FDG) and bone metabolism (measured by NaF) were observed among bones before radiation, which demonstrates functional heterogeneity in the marrow and mineralized bone throughout the skeleton. Radiation significantly (p < 0.0001) decreased FDG uptake but increased NaF uptake (p = 0.0314) in both irradiated and non-irradiated bones at early time points. An increase in IL-6 was observed with a significant abscopal (distant) effect on marrow and bone metabolic function. Radiation significantly decreased circulating IGF-1 (p < 0.01). Non-invasive longitudinal imaging with dual-radioisotope micro-PET/CT is feasible to investigate simultaneous changes in marrow and bone metabolic function at local and distant skeletal sites in response to focused radiation injury. Distinct local and remote changes may be affected by several cytokines activated early after local radiation exposure. This approach has the potential for longer-term studies to clarify the effects of radiation on marrow and bone.
机译:这项研究的目的是开发一种使用双放射性同位素混合微正电子发射断层扫描/计算机断层扫描(PET / CT)扫描仪的纵向非侵入性功能成像方法,以便评估骨骼代谢异质性和局部影响辐射可以模拟针对骨髓和骨骼代谢的治疗性癌症治疗。骨骼成熟的BALB / c雌性小鼠在第0天给予后肢临床相关的局部放射(16 Gy)。在相同的小鼠的第-5天和第5天,分别用FDG和第-天对Micro-PET / CT进行连续采集。 NaF为4和+3。测量了促炎细胞因子的血清水平。在辐射之前,骨骼之间的骨髓代谢(通过FDG测量)和骨代谢(通过NaF测量)之间存在显着差异(p <0.0001),这表明整个骨骼的骨髓和矿化骨骼具有功能异质性。在早期时间点,受辐照和未辐照的骨骼均显着辐射(p <0.0001)降低FDG摄取,但增加NaF摄取(p = 0.0314)。观察到IL-6的增加,对骨髓和骨骼代谢功能有明显的(远)影响。辐射显着降低循环IGF-1(p <0.01)。用双放射性同位素微型PET / CT进行的非侵入性纵向成像对研究局部和远处骨骼部位响应聚焦放射损伤的骨髓和骨代谢功能的同时变化是可行的。局部辐射暴露后早期激活的几种细胞因子可能会影响不同的局部和远距离变化。这种方法有可能用于长期研究,以阐明放射线对骨髓和骨骼的影响。

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