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首页> 外文期刊>Scientific reports. >Ionizing radiation modulates human macrophages towards a pro-inflammatory phenotype preserving their pro-invasive and pro-angiogenic capacities
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Ionizing radiation modulates human macrophages towards a pro-inflammatory phenotype preserving their pro-invasive and pro-angiogenic capacities

机译:电离辐射可将人类巨噬细胞调节为促炎表型,从而保留其促入侵和促血管生成能力

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In order to improve the efficacy of conventional radiotherapy, attention has been paid to immune cells, which not only modulate cancer cell response to therapy but are also highly recruited to tumours after irradiation. Particularly, the effect of ionizing radiation on macrophages, using therapeutically relevant doses, is not well understood. To evaluate how radiotherapy affects macrophage behaviour and macrophage-mediated cancer cell activity, human monocyte derived-macrophages were subjected, for a week, to cumulative ionizing radiation doses, as used during cancer treatment (2?Gy/fraction/day). Irradiated macrophages remained viable and metabolically active, despite DNA damage. NF-kappaB transcription activation and increased Bcl-xL expression evidenced the promotion of pro-survival activity. A significant increase of pro-inflammatory macrophage markers CD80 , CD86 and HLA-DR, but not CCR7 , TNF and IL1B was observed after 10?Gy cumulative doses, while anti-inflammatory markers CD163 , MRC1 , VCAN and IL-10 expression decreased, suggesting the modulation towards a more pro-inflammatory phenotype. Moreover, ionizing radiation induced macrophage morphological alterations and increased their phagocytic rate, without affecting matrix metalloproteases (MMP)2 and MMP9 activity. Importantly, irradiated macrophages promoted cancer cell-invasion and cancer cell-induced angiogenesis. Our work highlights macrophage ability to sustain cancer cell activities as a major concern that needs to be addressed to improve radiotherapy efficacy.
机译:为了提高常规放射疗法的功效,已经关注免疫细胞,其不仅调节癌细胞对治疗的反应,而且在辐射后也被高度招募至肿瘤。特别地,使用治疗相关剂量的电离辐射对巨噬细胞的影响尚不十分清楚。为了评估放疗如何影响巨噬细胞行为和巨噬细胞介导的癌细胞活性,对人类单核细胞衍生的巨噬细胞进行了一周的累积电离放射剂量,如在癌症治疗期间所用(2?Gy /馏分/天)。尽管DNA受损,但受辐照的巨噬细胞仍保持活力并具有代谢活性。 NF-κB的转录激活和Bcl-xL表达的增加证明了生存活动的促进。 10μGy累积剂量后,观察到促炎性巨噬细胞标志物CD80,CD86和HLA-DR显着增加,但未观察到CCR7,TNF和IL1B,而抗炎标志物CD163,MRC1,VCAN和IL-10表达降低,提示对更炎性表型的调节。此外,电离辐射诱导巨噬细胞形态变化并增加其吞噬率,而不会影响基质金属蛋白酶(MMP)2和MMP9活性。重要的是,辐照的巨噬细胞促进癌细胞侵袭和癌细胞诱导的血管生成。我们的工作强调了巨噬细胞维持癌细胞活性的能力,这是提高放射疗法疗效所需要解决的主要问题。

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