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Localized External Beam Radiation Therapy (EBRT) to the Pelvis Induces Systemic IL-1Beta and TNF-Alpha Production: Role of the TNF-Alpha Signaling in EBRT-Induced Fatigue

机译:骨盆局部外照射疗法(EBRT)诱导全身性IL-1Beta和TNF-α产生:TNF-α信号在EBRT诱发的疲劳中的作用

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摘要

Prostate cancer patients undergoing localized external beam radiation therapy (EBRT) can experience a progressive increase in fatigue, which can affect physical functioning and quality of life. The purpose of this study was to develop a mouse EBRT prostate cancer treatment model with which to determine the role of pro-inflammatory cytokines in the genesis of EBRT-related fatigue. We assessed voluntary wheel-running activity (VWRA) as a proxy for fatigue, food intake and body weight in male C57BL/6 mice undergoing EBRT to the pelvis. In the first experiment, anesthetized male C57BL/6 mice underwent fractionated EBRT to the pelvis for a total dose of 68.2 Gy, thereby mimicking a clinically relevant therapeutic dose and frequency. The day after the last treatment, levels of IL-1β and TNF-α in plasma along with mRNA levels in liver, colon and whole brain were measured. EBRT-induced fatigue resulted in reduced body weight, diminished food intake, and increased plasma and tissue levels of IL-1β and TNF-α. In a follow-up experiment, we used TNF-α-deficient mice to further delineate the role of TNF-α signaling in EBRT-induced sickness behavior. EBRT-induced changes in fatigue, food intake and body weight were no different between TNF-α deficient mice and their wild-type counterparts. Taken together our data demonstrate that a clinically relevant localized irradiation of the pelvis induces a systemic IL-1β and TNF-α response and sickness behavior in mice, but the TNF-α signaling pathway alone does not independently mediate these effects.
机译:接受局部外照射疗法(EBRT)的前列腺癌患者可能会逐渐感到疲劳,这可能会影响身体功能和生活质量。这项研究的目的是开发一种小鼠EBRT前列腺癌治疗模型,通过该模型确定促炎细胞因子在EBRT相关疲劳的发生中的作用。我们评估了自愿轮转活动(VWRA)作为EBRT到骨盆的雄性C57BL / 6小鼠疲劳,食物摄入和体重的替代指标。在第一个实验中,麻醉后的雄性C57BL / 6小鼠对骨盆进行EBRT分馏,总剂量为68.2 Gy,从而模拟了临床相关的治疗剂量和频率。最后一次治疗后的第二天,测量血浆中IL-1β和TNF-α的水平以及肝,结肠和全脑的mRNA水平。 EBRT诱发的疲劳导致体重减轻,食物摄入减少以及IL-1β和TNF-α的血浆和组织水平升高。在后续实验中,我们使用了TNF-α缺陷小鼠来进一步描述TNF-α信号传导在EBRT诱导的疾病行为中的作用。 EBRT诱导的TNF-α缺陷小鼠与野生型小鼠的疲劳,食物摄入和体重变化无差异。综合我们的数据表明,骨盆的临床相关的局部照射可诱发小鼠的全身性IL-1β和TNF-α反应及疾病行为,但仅TNF-α信号传导途径并不能独立介导这些作用。

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