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利用铁-55红细胞杀灭剂对脾集落形成单位进行强制分化。

Forced differentiation of CFU-S by Iron-55 erythrocytocide.

作者信息

Reincke U, Brookoff D, Burlington H, Cronkite E P

出版信息

Blood Cells. 1979 Aug;5(3):351-76.

PMID:555693
Abstract

Cascades of Auger electrons are emitted in the decay of 55Fe and absorbed in tissue within a 1 micrometer radius. Cytocidal amounts of 55Fe can therefore eliminate erythroid precursors with minimal damage to adjacent cells. A single intravenous injection leads to continued erythrocytocide in mice because the isotope is reutilized and has a 2.7 year half-life. The cytocide evokes an early compensatory response from morphologically unrecognizable precursors which differentiate into pronormoblasts. These early events leave the granuloid series undisturbed but they are accompanied by a precipitous fall in pluripotent stem cell (CFU-S) numbers in bone marrow, spleen, and blood. The pretreatment levels of CFU-S are not restored. Gradual decline of CFU-S is associated with intermittently increased turnover rates and reduced settings of cell production, yet the capacity for quick restoration of blood loss is unimpaired. The precipitous initial stem cell decrease is not caused by irradiation damage, as shown in a separate experimental series that used the frozen-storage cytocide technique. Only over several weeks could 55Fe radiation accumulate to lethal levels in nondividing stem cells. This irradiation is attributed to incorporation of small amounts of 55Fe into CFU-S, from where it is slowly cleared. The stem cell loss immediately following 55Fe injection is in our interpretation caused by rapid differentiation along the erythroid pathway in a response that involves all progenitor populations. Data are consistent with the hypothesis of limited cell renewal capacity which thereby gains further support.

摘要

俄歇电子级联在55Fe衰变过程中发射,并在半径1微米范围内被组织吸收。因此,具有细胞杀伤剂量的55Fe能够消除红系前体细胞,同时对相邻细胞的损伤最小。单次静脉注射会使小鼠体内持续发生红细胞杀伤作用,因为该同位素会被重新利用,且半衰期为2.7年。这种细胞杀伤作用会引发形态上无法识别的前体细胞的早期代偿反应,这些前体细胞会分化为原幼红细胞。这些早期事件不会干扰粒细胞系,但会伴随着骨髓、脾脏和血液中多能干细胞(CFU-S)数量的急剧下降。CFU-S的预处理水平无法恢复。CFU-S的逐渐下降与细胞更新率的间歇性增加和细胞生成环境的减少有关,但失血后快速恢复的能力并未受损。如在另一个使用冷冻保存细胞杀伤技术的实验系列中所示,初始干细胞的急剧减少并非由辐射损伤引起。只有经过数周时间,55Fe辐射才能在不分裂的干细胞中积累到致死水平。这种辐射归因于少量55Fe掺入CFU-S中,并从那里缓慢清除。我们认为,55Fe注射后立即出现的干细胞损失是由于所有祖细胞群体在红细胞生成途径上的快速分化所致。数据与细胞更新能力有限的假说一致,从而进一步支持了该假说。

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