首页> 外文期刊>Breast cancer research and treatment. >Liposomal 4-hydroxy-tamoxifen: effect on cellular uptake and resulting cytotoxicity in drug resistant breast cancer cells in vitro.
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Liposomal 4-hydroxy-tamoxifen: effect on cellular uptake and resulting cytotoxicity in drug resistant breast cancer cells in vitro.

机译:脂质体4-羟基-他莫昔芬:对体外耐药药物性乳腺癌细胞的细胞吸收及由此产生的细胞毒性作用。

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The study was performed to investigate the potency of liposomal formulations to reduce or to overcome tamoxifen resistance. Therefore, estrogen receptor (ER) positive MCF-7 and ER deficient NCI/ADR cells with different sensitivity to tamoxifen were used. Instead of the parent compound, 4-hydroxytamoxifen (HT) was used as drug, because this metabolite is the most cytotoxic derivative in vitro . Liposomes further contained the membrane-active alkylphospholipid octadecyl-(1,1-dimethyl-piperidino-4-yl)-phosphate (OPP).Cellular uptake of HT during 3-24 h was determined by high performance thin layer chromatography technique (HPTLC). Free HT was taken up time independently by the two cell lines at 1.5-2.1 g HT/g cellular phosphate. Liposomal HT was taken up at a significantly higher degree than free HT in both cell lines, but the uptake was delayed in the sensitive MCF-7 cell line with the highest concentration detected after 24 h (3.5 g/g). Oppositely, the highest amount in the resistant' line (2.3 g/g) wasalready measured after 3 h in NCI/ADR cells. It successively decreased with incubation time.The faster uptake of liposomal HT by the NCI/ADR cells correlated with a stronger and earlier destruction of resistant NCI/ADR cells whereas the sensitive MCF-7 cells were mainly inhibited in their proliferation. Cytolytic effects were observed in both cell lines after extended incubation periods. The combination of HT with an alkylphospholipid further enhanced the cytotoxicity of the formulation. The IC50 in the NCI/ADR cells could be significantly reduced by liposomes combining both drugs to 15.1muM compared with the IC50 of the free drugs (HT:28.9 muM; OPP: 36.8 muM).It is assumed that the enhanced and accelerated uptake of liposomal HT in the cell line with relative drug resistance can increase the intracellular bioavailability of HT. The results of this study demonstrated that liposomes with encapsulated antiestrogen have a superior cytotoxic effect in resistant breast cancer cells. That coincided with the enhanced therapeutic effect of these vesicles observed in vivo .
机译:进行该研究以研究脂质体制剂降低或克服他莫昔芬抗性的效力。因此,使用对他莫昔芬敏感性不同的雌激素受体(ER)阳性MCF-7和ER缺陷型NCI / ADR细胞。代替母体化合物,使用4-羟基他莫昔芬(HT)作为药物,因为这种代谢物是体外最具细胞毒性的衍生物。脂质体还包含具有膜活性的烷基磷脂十八烷基-(1,1-二甲基-哌啶子基-4-基)-磷酸酯(OPP)。通过高效薄层色谱技术(HPTLC)测定3-24小时内HT的细胞吸收。两种细胞系分别以1.5-2.1 g HT / g细胞磷酸盐吸收游离HT的时间。在两种细胞系中,脂质体HT的吸收程度均显着高于游离HT,但是在敏感的MCF-7细胞系中吸收被延迟,在24 h后检测到最高浓度(3.5 g / g)。相反,已经在NCI / ADR细胞中检测了3小时后抗药性系中的最高量(2.3 g / g)。随着培养时间的延长,其逐渐降低。NCI/ ADR细胞对脂质体HT的更快吸收与抗性NCI / ADR细胞的更强和更早的破坏有关,而敏感的MCF-7细胞的增殖主要受到抑制。延长孵育时间后,在两种细胞系中均观察到细胞溶解作用。 HT与烷基磷脂的组合进一步增强了制剂的细胞毒性。与游离药物的IC 50 相比,两种药物组合的脂质体可将NCI / ADR细胞中的IC 50 显着降低至15.1μM(HT:28.9μM; OPP:36.8μM)。假定具有相对耐药性的细胞株脂质体HT的增强和加速摄取可以增加HT的细胞内生物利用度。这项研究的结果表明,带有抗雌激素胶囊的脂质体在耐药乳腺癌细胞中具有优异的细胞毒性作用。这与体内观察到的这些囊泡的增强的治疗作用相吻合。

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