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Biological Response of Positron Emission Tomography Scan Exposure and Adaptive Response in Humans

机译:正电子发射断层扫描扫描暴露的生物反应和人类的适应性反应

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The biological effects of exposure to radioactive fluorodeoxyglucose (18F-FDG) were investigated in the lymphocytes of patients undergoing positron emission tomography (PET) procedures. Low-dose, radiation-induced cellular responses were measured using 3 different end points: (1) apoptosis; (2) chromosome aberrations; and (3) γH2AX foci formation. The results showed no significant change in lymphocyte apoptosis, or chromosome aberrations, as a result of in vivo 18F-FDG exposure, and there was no evidence the PET scan modified the apoptotic response of lymphocytes to a subsequent 2 Gy in vitro challenge irradiation. However, lymphocytes sampled from patients following a PET scan showed an average of 22.86% fewer chromosome breaks and 39.16% fewer dicentrics after a subsequent 2 Gy in vitro challenge irradiation. The effect of 18F-FDG exposure on phosphorylation of histone H2AX (γH2AX) in lymphocytes of patients showed a varied response between individuals. The relationship between γH2AX foci formation and increasing activity of 18F-FDG was not directly proportional to dose. This variation is most likely attributed to differences in the factors that combine to constitute an individual’s radiation response. In summary, the results of this study indicate18F-FDG PET scans may not be detrimental but can elicit variable responses between individuals and can modify cellular response to subsequent radiation exposures.
机译:研究了接受正电子发射断层扫描(PET)程序的患者淋巴细胞中放射性氟脱氧葡萄糖( 18 F-FDG)的生物学效应。低剂量,辐射诱导的细胞反应使用3个不同的终点进行测量:(1)细胞凋亡; (2)染色体畸变; (3)γH2AX灶的形成。结果显示,体内 18 F-FDG暴露不会导致淋巴细胞凋亡或染色体畸变的显着变化,也没有证据表明PET扫描能改变淋巴细胞对随后凋亡的反应2 Gy体外激发辐射。然而,在随后的2 Gy体外激发照射后,从PET扫描后的患者那里采集的淋巴细胞显示平均染色体断裂减少了22.86%,双着丝粒减少了39.16%。 18 F-FDG暴露对患者淋巴细胞中组蛋白H2AX(γH2AX)磷酸化的影响在个体之间表现出不同的反应。 γH2AX灶形成与 18 F-FDG活性增加之间的关系与剂量不成正比。这种变化很可能归因于构成个体辐射响应的因素差异。总而言之,这项研究的结果表明, 18 F-FDG PET扫描可能无害,但可以引起个体之间的可变反应,并且可以改变细胞对后续辐射暴露的反应。

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