Positive effects of dialyzable leukocyte extract (DLE) on recovery of mouse haemopoiesis suppressed by ionizing radiation and on proliferation of haemopoietic progenitor cells in vitro

Antonı́n Vacek , Michal Hofer , Karel Barnet , Karel C̆ech , Josef Pekárek , Helena Schneiderová
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引用次数: 19

Abstract

Dialyzed leukocyte extract (DLE) (Immodin SEVAC, Czech Republic) was shown to enhance the recovery of the pools of hemopoietic stem cells (CFUs) and of granulocyte–macrophage hemopoietic progenitor cells (GM-CFC) in the bone marrow in vivo, as well as to increase the numbers of leukocytes and thrombocytes in the peripheral blood of mice exposed to a sublethal dose of gamma-rays, with an ensuing increase in the numbers of mice surviving the lethal radiation dose. In experiments performed in vitro, DLE or sera of mice administered with DLE were added to cultures of intact mouse bone marrow cells containing suboptimal concentrations of hemopoietic stimulatory cytokines, namely recombinant mouse interleukin-3 (rmIL-3) or recombinant mouse granulocyte–macrophage colony-stimulating factor (rmGM-CSF); under these experimental conditions, both DLE and sera of mice administered DLE were found to increase the counts of GM-CFC colonies in the cultures. It can be hypothesized on the basis of the findings obtained in vitro that the described co-stimulating activity (CoSA) of DLE may play a role also under in vivo conditions; the enhancement of the recovery of hemopoiesis suppressed by ionizing radiation may be due to a co-operation of the stimulatory effects of DLE with the action of cytokines endogenously produced in irradiated tissues.

可透析白细胞提取物(DLE)对电离辐射抑制小鼠造血功能恢复和体外造血祖细胞增殖的积极作用
透析白细胞提取物(DLE) (Immodin SEVAC,捷克共和国)被证明可以促进体内骨髓中造血干细胞(cfs)和粒细胞-巨噬细胞造血祖细胞(GM-CFC)的恢复,并增加暴露于亚致死剂量γ射线的小鼠外周血中白细胞和血小板的数量,随后增加小鼠在致死辐射剂量下存活的数量。在体外进行的实验中,将DLE或给予DLE的小鼠血清添加到含有亚理想浓度造血刺激细胞因子的完整小鼠骨髓细胞中,即重组小鼠白细胞介素-3 (rmIL-3)或重组小鼠粒细胞-巨噬细胞集落刺激因子(rmGM-CSF);在这些实验条件下,发现DLE和给予DLE的小鼠血清中培养物中GM-CFC菌落的数量增加。根据在体外获得的结果,可以假设所描述的DLE的共刺激活性(CoSA)在体内条件下也可能起作用;受电离辐射抑制的造血功能恢复的增强可能是由于电离辐射的刺激作用与受辐射组织内源性产生的细胞因子的作用的合作。
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