Department of Hematology, Erasmus University Medical Center, Rotterdam, The Netherlands.
Int J Radiat Oncol Biol Phys. 2012 Nov 1;84(3):e401-7. doi: 10.1016/j.ijrobp.2012.04.021. Epub 2012 Jun 5.
5-Androstene-3β,17β-diol (5-AED) stimulates recovery of hematopoiesis after exposure to radiation. To elucidate its cellular targets, the effects of 5-AED alone and in combination with (pegylated) granulocyte colony-stimulating factor and thrombopoietin (TPO) on immature hematopoietic progenitor cells were evaluated following total body irradiation.
BALB/c mice were exposed to radiation delivered as a single or as a fractionated dose, and recovery of bone marrow progenitors and peripheral blood parameters was assessed.
BALB/c mice treated with 5-AED displayed accelerated multilineage blood cell recovery and elevated bone marrow (BM) cellularity and numbers of progenitor cells. The spleen colony-forming unit (CFU-S) assay, representing the life-saving short-term repopulating cells in BM of irradiated donor mice revealed that combined treatment with 5-AED plus TPO resulted in a 20.1-fold increase in CFU-S relative to that of placebo controls, and a 3.7 and 3.1-fold increase in comparison to 5-AED and TPO, whereas no effect was seen of Peg-G-CSF with or without 5-AED. Contrary to TPO, 5-AED also stimulated reconstitution of the more immature marrow repopulating (MRA) cells.
5-AED potently counteracts the hematopoietic effects of radiation-induced myelosuppression and promotes multilineage reconstitution by stimulating immature bone marrow cells in a pattern distinct from, but synergistic with TPO.
5-雄烯-3β,17β-二醇(5-AED)可刺激辐射暴露后造血功能的恢复。为了阐明其细胞靶标,评估了 5-AED 单独以及与(聚乙二醇化)粒细胞集落刺激因子和血小板生成素(TPO)联合对全身照射后未成熟造血祖细胞的影响。
BALB/c 小鼠接受单次或分次照射,并评估骨髓祖细胞和外周血参数的恢复情况。
用 5-AED 治疗的 BALB/c 小鼠表现出多谱系血细胞恢复加速,骨髓(BM)细胞增多和祖细胞数量增加。脾集落形成单位(CFU-S)测定法代表了受照射供体小鼠 BM 中的短期救命造血细胞,结果表明,5-AED 加 TPO 的联合治疗使 CFU-S 相对于安慰剂对照增加了 20.1 倍,与 5-AED 和 TPO 相比,分别增加了 3.7 倍和 3.1 倍,而 Peg-G-CSF 联合或不联合 5-AED 均无作用。与 TPO 相反,5-AED 还刺激了更不成熟的骨髓重建(MRA)细胞的重建。
5-AED 可有效抵抗辐射诱导的骨髓抑制的造血作用,并通过刺激未成熟的骨髓细胞以不同于但与 TPO 协同的方式促进多谱系重建。