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Transport Mechanisms of Idarubicin an Anthracycline Derivative in Human Leukemia HL60 Cells and Mononuclear Cells and Comparison with Those of Its Analogs

机译:蒽环类衍生物伊达比星在人白血病HL60细胞和单核细胞中的转运机制及其类似物的比较

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摘要

Transport mechanisms of idaruhicin (IDA) in HL60 cells, as leukemia cells, and human mononuclear cells (MNCs), as normal cells, were investigated, and compared with those of its analogs. The uptake of IDA by both cell types was temperature‐ and concentration‐dependent, was inhibited competitively by daunorubicin (DNR) and noncompetitively by adriamycin (ADR), and was stimulated by preloading of the cells with DNR and ADR, indicating the partial involvement of a carrier‐mediated mechanism. On pretreatment of the cells with 2,4‐dinitrophenol, IDA uptake by HL60 cells increased, but that by MNCs decreased, suggesting that IDA was partially taken up into HL60 cells via an energy‐independent carrier system, and into MNCs via an energy‐dependent one. We speculated that in HL60 cells the carrier concerned with IDA uptake was common to DNR and ADR, and that the binding site of IDA on the carrier was the same as that for DNR, but not that for ADR, while in MNCs the carrier system consisted of, at least in part, a carrier for DNR uptake and one for ADR uptake, and the binding site of IDA was identical to that for DNR in the former, but different from that for ADR in the latter. It appeared that the uptake of IDA was greater than those of pirarubicin, DNR and ADR in both HL60 cells and MNCs, and that IDA was incorporated into MNCs more efficiently than into HL60 cells because of the higher uptake efficacy of the carrier(s).
机译:研究了柔红霉素(IDA)在HL60细胞(如白血病细胞)和人单核细胞(MNC)(如正常细胞)中的转运机制,并将其与其类似物进行了比较。两种细胞类型对IDA的吸收均取决于温度和浓度,柔红霉素(DNR)竞争性抑制阿霉素(ADR)竞争性抑制,DNR和ADR预加载细胞刺激IDA吸收,表明载体介导的机制。用2,4-二硝基苯酚预处理细胞后,HL60细胞对IDA的吸收增加,但MNC吸收的IDA减少,这表明IDA通过能量独立的载体系统部分吸收到HL60细胞中,并通过能量独立的载体吸收到MNC中。依赖的。我们推测,在HL60细胞中,与IDA摄取有关的载体是DNR和ADR共有的,IDA在载体上的结合位点与DNR相同,但与ADR的结合位点相同,而在MNC中,载体系统由至少部分是DNR摄取的载体和ADR摄取的载体,IDA的结合位点与前者的DNR相同,但与后者的ADR不同。似乎在HL60细胞和MNC中IDA的吸收均比吡柔比星,DNR和ADR的吸收大,并且IDA与HL60细胞的结合效率要比HL60细胞高,因此IDA被更有效地掺入MNC中。

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