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Radiation-induced apoptosis is modulated by the post-irradiation tumor microenvironment

机译:辐射诱导的肿瘤微环境调节辐射诱导的细胞凋亡

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The sensitivity of cells to radiation-induced apoptosis is considered to be low in solid tumors. This is thought to arise largely from inherent resistance caused by apoptotic pathway mutations. However, other factors may contribute to apoptotic resistance. Poor vasculature and abnormal tumor metabolism lead to a tumor microenvironment characterized by conditions of hypoxia, low glucose and extracellular acidosis. Hypoxia during irradiation is well known to cause resistance and is a barrier to successful treatment. We hypothesized that post-irradiation microenvironmental conditions can modulate radiation-induced apoptosis and that this may in part contribute to therapeutic resistance. In order to test this, radiation-induced apoptosis was assessed in U937 cells in suspension and in a novel multicellular agarose-diffusion-system. Post-irradiation hypoxia failed to modify the extent of apoptosis in suspension cells, suggesting that post-irradiation hypoxia may be of little consequence to apoptosis induction in this model. In contrast, low glucose post-irradiation significantly inhibited radiation-induced apoptosis. While short (five hours) exposure to acidosis also appeared to inhibit radiation-induced apoptosis, the lack of modulation after extended (20 hours) exposure suggests that acidosis may only delay apoptosis. In the more complex agarose diffusion-limitation model, radiation-induced apoptotic sensitivity was found to be reduced in cells distant from the diffusion edge representing poorly perfused tumor cells in vivo. Overall, the results suggest that the post-irradiation tumor microenvironment may affect radiation-induced apoptosis and thus may influence therapeutic response. Therefore, the post-irradiation tumor microenvironment may be a target for therapeutic intervention.
机译:在实体瘤中,细胞对辐射诱导的凋亡的敏感性被认为是低的。认为这主要是由于凋亡途径突变引起的内在抵抗。但是,其他因素也可能导致细胞凋亡。不良的脉管系统和异常的肿瘤代谢导致以缺氧,低葡萄糖和细胞外酸中毒为特征的肿瘤微环境。众所周知,辐射期间的缺氧会引起耐药性,并且是成功治疗的障碍。我们假设辐照后的微环境条件可以调节辐射诱导的细胞凋亡,这可能部分有助于治疗抵抗力。为了测试这一点,在悬浮液和新型多细胞琼脂糖扩散系统中的U937细胞中评估了辐射诱导的凋亡。辐照后缺氧不能改变悬浮细胞中的凋亡程度,这表明辐照后缺氧对该模型中的细胞凋亡诱导影响很小。相反,低葡萄糖照射后显着抑制了辐射诱导的细胞凋亡。虽然短时间(五小时)暴露于酸中毒似乎也抑制了辐射诱导的细胞凋亡,但长时间(20小时)暴露后缺乏调节作用表明酸中毒可能只会延迟细胞凋亡。在更复杂的琼脂糖扩散限制模型中,发现远离扩散边缘的细胞代表体内灌注不良的肿瘤细胞,辐射诱导的凋亡敏感性降低。总体而言,该结果表明,辐射后肿瘤微环境可能影响辐射诱导的细胞凋亡,从而可能影响治疗反应。因此,辐照后肿瘤微环境可能是治疗干预的目标。

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