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首页> 外文期刊>British Journal of Cancer >NMR spectroscopy analysis of phosphorus metabolites and the effect of adriamycin on these metabolite levels in an adriamycin-sensitive and -resistant human small cell lung carcinoma cell line|[ast]|
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NMR spectroscopy analysis of phosphorus metabolites and the effect of adriamycin on these metabolite levels in an adriamycin-sensitive and -resistant human small cell lung carcinoma cell line|[ast]|

机译:核磁共振波谱法分析磷代谢物以及阿霉素对敏感性和耐药性的人小细胞肺癌细胞株中这些代谢物水平的影响|

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摘要

31P nuclear magnetic resonance (NMR) spectra of cells and of cell extract revealed high levels of phosphorylcholine (PC) and phosphocreatine (PCr) in an adriamycin-resistant human small cell lung carcinoma cell line (GLC4/ADR) and the adriamycin-sensitive parental cell line (GLC4). PCr levels in extracts of GLC4/ADR were increased compared to extracts of GLC4. We estimated that 11% of the total intracellular ATP is not bound to Mg2+ in both cell lines. This value corresponded to an intracellular free Mg2+ of 0.30 mM. The effects of different adriamycin concentrations, 0.05, 1 and 30 microM for GLC4 and 1, 30 and 200 microM for GLC4/ADR, on the phosphorus metabolite levels in continuously perfused cells were monitored. Significant differences between GLC4 and GLC4/ADR included: (a) a strong increase in the beta ATP level in the presence of 30 microM adriamycin in GLC4 only, followed by a fast decrease after 5 h of perfusion. (b) a less dramatic increase in the PC level in GLC4/ADR and an unchanged ATP level in the presence of increasing adriamycin concentrations. (c) an increased GPC level in GLC4/ADR in the presence of adriamycin. The changes in PC and GPC levels in the presence of adriamycin suggested that the phospholipid turnover was increased in GLC4/ADR and could be stimulated in the presence of adriamycin. In both cell lines, PCr levels decreased faster than the ATP levels after adriamycin treatment. Thus, biochemical markers for adriamycin resistance can be detected with NMR spectroscopy. However, more studies are necessary to obtain parameters to distinguish drug-sensitive from drug-resistant tumours in patients by NMR spectroscopy.
机译:细胞和细胞提取物的31P核磁共振(NMR)谱显示,在抗阿霉素的人小细胞肺癌细胞系(GLC4 / ADR)和对阿霉素敏感的亲代细胞中,磷酸胆碱(PC)和磷酸肌酸(PCr)的水平较高细胞系(GLC4)。与GLC4的提取物相比,GLC4 / ADR的提取物中的PCr水平升高。我们估计两种细胞系中总细胞内ATP的11%不与Mg2 +结合。该值对应于0.30mM的细胞内游离Mg 2+。监测了不同阿霉素浓度(对于GLC4为0.05、1和30 microM,对于GLC4 / ADR为1,30和200 microM)对连续灌流细胞中磷代谢物水平的影响。 GLC4和GLC4 / ADR之间的显着差异包括:(a)仅在GLC4中存在30 microM阿霉素的情况下,βATP含量显着增加,然后在灌注5 h后迅速下降。 (b)在阿霉素浓度增加的情况下,GLC4 / ADR中PC水平的升高幅度较小,而ATP含量保持不变。 (c)在存在阿霉素的情况下,GLC4 / ADR中的GPC水平升高。在存在阿霉素的情况下PC和GPC水平的变化表明,在GLC4 / ADR中磷脂的代谢增加,在存在阿霉素的情况下可以刺激磷脂的更新。在两种细胞系中,阿霉素处理后PCr的下降速度都快于ATP的下降速度。因此,可以通过NMR光谱检测对阿霉素抗性的生化标记。但是,需要更多的研究来获得参数,以通过NMR光谱区分患者中的药物敏感性肿瘤和耐药性肿瘤。

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