医学
骨髓
放射病
电离辐射
粒细胞巨噬细胞集落刺激因子
细胞因子
免疫学
骨髓衰竭
内科学
全身照射
造血
生理学
干细胞
化疗
辐照
环磷酰胺
生物
遗传学
物理
核物理学
作者
Nicholas P. Clayton,Richard Khan-Malek,Charles A. Dangler,Donghui Zhang,Alexis Ascah,Malcolm Gains,Brent Gardner,Colleen Mockbee,Joan Keutzer,J McManus,Simon Authier
标识
DOI:10.1667/rade-20-00131.1
摘要
Exposure to acute, high-dose, whole-body ionizing radiation results in bone marrow failure (hematopoietic acute radiation syndrome with resultant infection, bleeding, anemia, and increased risk of death). Sargramostim (yeast-derived rhu GM-CSF), a yeast-derived, molecularly cloned, hematopoietic growth factor and pleiotropic cytokine supports proliferation, differentiation, maturation and survival of cells of several myeloid lineages. We evaluated the efficacy of sargramostim in non-human primates (rhesus macaques) exposed to whole-body ionizing radiation at a 50–60% lethal dose. The primary end point was day 60 survival. Non-human primates received daily subcutaneous sargramostim (7 mcg/kg/day) or control. To reflect the anticipated setting of a nuclear or radiologic event, treatment began 48 h postirradiation, and non-human primates received only moderate supportive care (no whole blood transfusions or individualized antibiotics). Sargramostim significantly increased day 60 survival to 78% (95% confidence interval, 61–90%) vs. 42% (26–59%; P = 0.0018) in controls. Neutrophil, platelet and lymphocyte recovery rates were accelerated and infection rates decreased. Improved survival when sargramostim was started 48 h postirradiation, without use of intensive supportive care, suggests sargramostim may be effective in treating humans exposed to acute, high-dose whole-body, ionizing radiation in a scenario such as a mass casualty event.
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