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RB 6145对人肿瘤细胞系的细胞毒性作用:对缺氧、细胞内外pH值及药物摄取的依赖性

Cytotoxic effect of RB 6145 in human tumour cell lines: dependence on hypoxia, extra- and intracellular pH and drug uptake.

作者信息

Skarsgard L D, Acheson D K, Vinczan A, Wouters B G, Heinrichs B E, Loblaw D A, Minchinton A I, Chaplin D J

机构信息

Department of Medical Biophysics, B.C. Cancer Research Centre, Vancouver, Canada.

出版信息

Br J Cancer. 1995 Dec;72(6):1479-86. doi: 10.1038/bjc.1995.533.

Abstract

Low pH and hypoxia are a common feature of many solid tumours. This study examined the effect of these two conditions on the cytotoxic properties of the bifunctional agent RB 6145, the prodrug of RSU 1069. The effect of acidic pH on RB 6145 toxicity was examined in six human tumour cell lines under hypoxic conditions and was found to have little effect in HT 29, A549, U373 and HT 144 cells. Treatment was for 1 h at 37 degrees C, pH 6.4 or 7.4. Significant potentiation of RB 6145 toxicity was observed in SiHa cells (enhancement ratio; ERpH approximately 1.6) and in U1 cells (ERpH approximately 1.4). In these two cell lines the potentiation of RB 6145 toxicity arising from hypoxia was large, with ERHyp approximately 11 and 15 in SiHa and U1 cells respectively. SiHa cells, which show a pH effect and HT 29 cells, which do not, were chosen for further comparative studies of drug uptake )nd regulation of intracellular pH. High-performance liquid chromatography (HPLC) determinations of the uptake of RB 6145 and its dervatives showed that in SiHa cells, intracellular to extracellular drug concentration ratio (Ci/Ce) at 1 h was approximately 40% higher at pH 6.4 than at pH 7.4, whereas in HT 29 cells Ci/Ce was approximately 25% lower. Under conditions of acidic extracellular pH, regulation of pH was somewhat less effective in SiHa cells, where pHi dropped to within 0.2 pH units of the extracellular pH over a 2.5 h treatment at pH 6.4. It seems likely that increased drug uptake was at least part of the basis for the observed potentiation of RB 6145 toxicity in SiHa cells. A model which would better explain the results for both cell lines might also include the possibility that low pH per se potentiates cytotoxic damage to a modest extent and that it is offset or augmented by altered uptake in HT 29 and SiHa cells respectively.

摘要

低pH值和缺氧是许多实体瘤的共同特征。本研究考察了这两种条件对双功能药物RB 6145(RSU 1069的前体药物)细胞毒性特性的影响。在缺氧条件下,对六种人类肿瘤细胞系研究了酸性pH值对RB 6145毒性的影响,发现其对HT 29、A549、U373和HT 144细胞几乎没有影响。在37℃、pH值为6.4或7.4的条件下处理1小时。在SiHa细胞(增强比;ERpH约为1.6)和U1细胞(ERpH约为1.4)中观察到RB 6145毒性的显著增强。在这两种细胞系中,缺氧引起的RB 6145毒性增强幅度很大,SiHa和U1细胞中的ERHyp分别约为11和15。选择显示pH效应的SiHa细胞和不显示pH效应的HT 29细胞进行药物摄取和细胞内pH调节的进一步比较研究。高效液相色谱(HPLC)测定RB 6145及其衍生物的摄取情况表明,在SiHa细胞中,1小时时细胞内与细胞外药物浓度比(Ci/Ce)在pH 6.4时比pH 7.4时高约40%,而在HT 29细胞中Ci/Ce约低25%。在细胞外酸性pH条件下,SiHa细胞中的pH调节效果稍差,在pH 6.4处理2.5小时后,细胞内pH(pHi)降至比细胞外pH低0.2个pH单位以内。药物摄取增加似乎至少是SiHa细胞中观察到的RB 6145毒性增强的部分原因。一个能更好解释两种细胞系结果的模型可能还包括这样一种可能性,即低pH值本身在一定程度上增强了细胞毒性损伤,并且分别被HT 29和SiHa细胞中摄取的改变所抵消或增强。

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本文引用的文献

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