首页> 外文期刊>Bone marrow transplantation >Peripheral blood progenitor cell mobilisation alters myeloid, but not erythroid, progenitor cell self-renewal kinetics.
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Peripheral blood progenitor cell mobilisation alters myeloid, but not erythroid, progenitor cell self-renewal kinetics.

机译:外周血祖细胞动员改变了髓样,但不改变红系祖细胞的自我更新动力学。

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Transplantation of progenitor cells which have been mobilised into the bloodstream (PBPC) following the administration of G-CSF results in more rapid neutrophil recovery than transplantation of bone marrow (BM). The reasons for the accelerated neutrophil engraftment are not clear, but would be explained by increased self-replication of myeloid progenitor cells (CFU-GM). We have used a CFU-GM replating assay to investigate myeloid progenitor self-replication, and quantification of subcolony formation during erythroid burst formation to quantify erythroid progenitor self-renewal. Secondary colony formation by CFU-GM, grown from PBPC and then replated was increased compared with secondary colony formation by BM CFU-GM (P = 0.0001); erythroid subcolony formation was not altered. There was no difference between the replating abilities of PBPC CFU-GM derived from allogeneic donors (normal individuals) and autologous donors (patients with malignant disease) although differences were found between subgroups of autologous donors. The increased replication of PBPC could not be accounted for by a reduction in progenitor cell apoptosis; PBPC CFU-GM contained slightly fewer apoptotic CD34+ cells than BM CFU-GM. The increased replication by PBPC CFU-GM was reversible because it declined when CFU-GM colonies were passaged through three sequential CFU-GM replating cycles. This decline in self-replication was more rapid than the decline seen in replated BM CFU-GM. The self-replication of PBPC CFU-GM, and subcolony formation by BFU-E could be further enhanced by exposure to cytokines in vitro. We conclude that mobilisation alters the replication kinetics of myeloid, but not of erythroid, progenitor cells, that mobilisation-induced events are of limited duration and that in vitro exposure to cytokines may modify PBPC progenitor cell kinetics.
机译:施用G-CSF后已动员进入血液(PBPC)的祖细胞移植比骨髓(BM)移植能更快地恢复中性粒细胞。嗜中性粒细胞植入加速的原因尚不清楚,但可以通过髓样祖细胞(CFU-GM)自我复制增加来解释。我们已经使用了CFU-GM重铺试验来研究髓样祖细胞的自我复制,并量化红系爆发形成过程中亚菌落的形成,以量化红系祖细胞的自我更新。与BM CFU-GM形成的次级菌落形成相比,CFU-GM形成的次级菌落形成数量增加(从PBPC生长,然后重新形成)(P = 0.0001);红系亚菌落的形成没有改变。尽管异体供体亚组之间存在差异,但异体供体(正常人)和自体供体(恶性肿瘤患者)的PBPC CFU-GM的重铸能力没有差异。 PBPC复制的增加不能通过祖细胞凋亡的减少来解释。 PBPC CFU-GM的凋亡CD34 +细胞比BM CFU-GM少。 PBPC CFU-GM的复制增加是可逆的,因为当CFU-GM菌落经过三个连续的CFU-GM重铺循环时,复制减少了。与复制的BM CFU-GM相比,这种自我复制的下降速度更快。 PBPC CFU-GM的自我复制和BFU-E的亚菌落形成可通过在体外暴露于细胞因子来进一步增强。我们得出的结论是,动员会改变髓样而非红系祖细胞的复制动力学,动员诱导的事件持续时间有限,并且体外暴露于细胞因子可能会改变PBPC祖细胞的动力学。

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