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Radiation combined with thermal injury induces immature myeloid cells

机译:辐射结合热损伤诱发不成熟的髓细胞

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摘要

The continued development of nuclear weapons and the potential for thermonuclear injury necessitates the further understanding of the immune consequences after radiation combined with injury (RCI). We hypothesized that sublethal ionization radiation exposure combined with a full-thickness thermal injury would result in the production of immature myeloid cells. Mice underwent either a full-thickness contact burn of 20% total body surface area or sham procedure followed by a single whole-body dose of 5-Gy radiation. Serum, spleen, and peripheral lymph nodes were harvested at 3 and 14 days after injury. Flow cytometry was performed to identify and characterize adaptive and innate cell compartments. Elevated proinflammatory and anti-inflammatory serum cytokines and profound leukopenia were observed after RCI. A population of cells with dual expression of the cell surface markers Gr-1 and CD11b were identified in all experimental groups, but were significantly elevated after burn alone and RCI at 14 days after injury. In contrast to the T-cell-suppressive nature of myeloid-derived suppressor cells found after trauma and sepsis, myeloid cells after RCI augmented T-cell proliferation and were associated with a weak but significant increase in interferon γ and a decrease in interleukin 10. This is consistent with previous work in burn injury indicating that a myeloid-derived suppressor cell-like population increases innate immunity. Radiation combined injury results in the increase in distinct populations of Gr-1CD11b cells within the secondary lymphoid organs, and we propose these immature inflammatory myeloid cells provide innate immunity to the severely injured and immunocompromised host.
机译:核武器和持续发展潜在的热损伤需要进一步的了解免疫辐射结合后的后果受伤(RCI)。电离辐射结合全层热损伤会导致不成熟的髓细胞的生产。经历了一个燃烧的全层接触全身20%面积或虚假的过程一个全身剂量的5-Gy紧随其后辐射。节点在3和收获后的14天受伤。和描述的适应性和先天的细胞隔间。血清抗炎细胞因子和深远的白血球减少症RCI后观察。细胞与细胞表面的双重表达标记Gr-1和CD11b被确定实验小组,但明显高架独自燃烧,RCI后14天后受伤。T-cell-suppressive myeloid-derived性质抑制细胞发现创伤后脓毒症,髓细胞后RCI增强t细胞扩散与弱,但有关在干扰素γ和显著增加减少白介素10。与之前在燃烧伤害表明工作一种myeloid-derived抑制细胞样的人口增加先天免疫。损伤导致明显的增加人口Gr-1CD11b细胞内二级淋巴器官,我们提出这些不成熟的炎症髓细胞提供先天免疫和严重受伤免疫功能不全的主机。

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