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Reduced Number of Lymphocytes by X-ray Irradiation: A Problem in a Combination Therapy Trial that Elicits the Abscopal Effect in Preclinical Studies Using Electron Beam Irradiation

机译:通过X射线照射减少淋巴细胞数量:使用电子束照射在临床前研究中引发胚痛效应的组合治疗试验中的问题

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In preclinical studies with model animals, intravenous administration of a derivative of chemokine CCL3, named eMIP, after local electron-beam irradiation, not only enhanced tumor growth inhibition at a target site but also induced tumor killing beyond the treated site (a phenomenon known as the abscopal effect). eMIP works with alarmins such as high mobility group box 1 (HMGB1) and heat shock protein 70 (HSP70) released from overexpressed tumor cells by irradiation. These alarmins at the irradiated tumor bed trap injected eMIP and, by forming complexes with eMIP, play a key role to recruit and activate tumor inhibitory natural killer (NK) cells and CD4sup+/sup and CD8sup+/sup T cells. Tumor type-specific secretion of gamma interferon from splenocytes was also demonstrated, which may also activate NK cells. During Phase 1 clinical studies using X-rays, however, no apparent abscopal effect was observed.?Instead, we saw frequent reduction in numbers of lymphocytes in the peripheral blood of irradiated patients. The reduced number of lymphocytes recovered poorly once depleted, in contrast to neutrophils, and persisted for months after the treatment. This might have affected outcome after combination treatment of irradiation and eMIP. To enhance host defense mechanisms during and after photon-beam (X-ray) radiotherapy of a deep-seated tumor, it seems essential to keep lymphocytes undamaged by eliminating reactive oxygen species that are formed in the peripheral blood during irradiation.
机译:在模型动物的临床前研究中,静脉施用趋化因子CCl3的衍生物,名为Emip,局部电子束照射后,不仅在靶位部位增强了肿瘤生长抑制,而且还诱导肿瘤杀死超越治疗部位(称为现象腹腔效果)。 emip适用于诸如高迁移率组盒1(HMGB1)和通过照射的过表达肿瘤细胞释放的热休克蛋白70(HSP70)等迁移率。辐照肿瘤腔内注射emip的这些锯线,通过与emip形成复合物,发挥募集和激活肿瘤抑制天然杀伤(NK)细胞和CD4 +和CD8 +的关键作用 t细胞。还证明了来自脾细胞的γ干扰素的γ型特异性分泌,也可以激活NK细胞。然而,在使用X射线的第1阶段临床研究期间,没有观察到明显的横断面效应。敏捷,我们在辐照患者的外周血中看到淋巴细胞数量频繁减少。与中性粒细胞相比,次数耗尽次数掉以耗尽的淋巴细胞数量较差,并持续治疗后几个月。这可能会在辐照和emip的组合治疗后受到影响的结果。为了在深层肿瘤的光子束(X射线)放射治疗期间和之后增强宿主防御机制,通过消除在辐射期间在外周血中形成的反应性氧物质保持淋巴细胞似乎是必要的。

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