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Analysis of doxorubicin uptake in single human leukemia K562 cells using capillary electrophoresis coupled with laser-induced fluorescence detection

机译:毛细管电泳结合激光诱导的荧光检测分析单个人白血病K562细胞中的阿霉素摄取

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The doxorubicin (DOX) uptake in single human leukemia K562 cells with changes in both drug dosage and exposure period was studied using capillary electrophoresis (CE) coupled with laser-induced fluorescence (LIF) detection. The cells were treated with DOX at different concentrations (1, 3, 10, 20, 30, and 50 μM) and for different exposure times (1, 3, 5, 24, and 48 h). At least 20 cells were analyzed for each DOX-treated cell population. A marked heterogeneity in DOX uptake among single cells was observed, because the relative standard deviation of the uptake of DOX by single cells ranged from 24.0% to 61.1% within each cell population. The cell-to-cell heterogeneity in DOX uptake first decreased and then became constant with increasing drug concentration, but it did not exhibit regular variation with increasing exposure time. The mean DOX uptake was a linear function of drug concentration (r ≥ 0.9667). In terms of the correlation with exposure time, the mean DOX uptake reached its maximum at 3 h for the cell populations treated with 1–10 μM DOX, while it kept increasing during 48 h exposure of cell populations to 20–50 μM DOX. Because it eliminates DOX fluorescence quenching and sample loss, the CE-LIF method directly detects the true DOX uptake by single cells, and thus presents accurate information on both the cell-to-cell heterogeneity in DOX uptake and the patterns of DOX uptake in K562 cells as functions of drug concentration and exposure time.
机译:使用毛细管电泳(CE)结合激光诱导荧光(LIF)检测研究了单个人白血病K562细胞中阿霉素(DOX)的摄取,并且药物剂量和暴露时间均发生了变化。用不同浓度(1、3、10、20、30和50μM)的DOX处理细胞,并使用不同的暴露时间(1、3、5、24和48 h)。对于每个DOX处理的细胞群,至少分析了20个细胞。观察到单细胞吸收DOX的显着异质性,因为在每个细胞群体中,单细胞吸收DOX的相对标准偏差为24.0%至61.1%。随着药物浓度的增加,DOX吸收中的细胞间异质性首先下降,然后变得恒定,但是随着暴露时间的增加,它没有表现出规则的变化。平均DOX摄取量是药物浓度的线性函数(r≥0.9667)。就与暴露时间的相关性而言,用1–10μMDOX处理的细胞群体在3小时内的平均DOX摄取量达到最大值,而在暴露于20–50μMDOX的细胞48小时内,其平均摄取量却不断增加。因为它消除了DOX荧光猝灭和样品丢失的问题,所以CE-LIF方法直接检测单个细胞的真实DOX摄取,从而提供有关DOX摄取中的细胞间异质性和K562中DOX摄取模式的准确信息细胞作为药物浓度和暴露时间的函数。

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