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Alternation of adriamycin penetration kinetics in MCF-7 cells from 2D to 3D culture based on P-gp expression through the Chk2/p53/NF-kappa B pathway

机译:基于Chk2 / p53 / NF-kappa B途径的P-gp表达,从2D培养到3D培养的MCF-7细胞中阿霉素渗透动力学的变化

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Monolayer cells are largely different from tumor masses, and might misguide drug screenings. 3D in vitro cell culture models simulate the characteristics of tumor masses in vivo and have recently been used in many studies of anti-cancer drugs. Among various 3D cell culture models, multi-cellular layer (MCL) models allow for the direct quantitative assessment of the penetration of chemotherapeutic agents through solid tissue environments without requiring the use of fluorescently labeled drugs or imaging molecules. Therefore, in our present study, a 3D-no base and embedded MCF-7 MCL model was successfully developed for a 14-day culture. Over time, its thickness and cell layers increased and exhibited highly proliferative properties and drug resistance to adriamycin (ADR) with markedly elevated IC50 values. Meanwhile, G2/M stage cycle arrest was also observed, which likely up-regulated P-gp expression through the Chk2/p53/NF-kappa B pathway. The elevated P-gp expression altered the ADR penetration kinetics in MCF-7 MCLs in vitro by accelerating the apparent penetration of ADR through the intercellular spaces of the MCLs. Additionally, a decreased ADR retention within tumor cells was observed, but could be significantly reversed by a P-gp inhibitor. The attenuated ADR retention in the deeper cells of tumor masses was confirmed in xenografted mice in vivo. This phenomenon could be elucidated by the mathematical modeling of penetration kinetics parameters. Our study provided a new model that evaluated and improved the quantification of the drug penetration kinetics, revealed the relationship between P-gp and drug penetration through tumor masses, and suggested the potential molecular mechanisms. (C) 2014 Elsevier Inc. All rights reserved.
机译:单层细胞与肿瘤块有很大不同,可能会误导药物筛选。 3D体外细胞培养模型可模拟体内肿瘤块的特征,最近已用于许多抗癌药物研究中。在各种3D细胞培养模型中,多细胞层(MCL)模型允许直接定量评估化学疗法药物在实体组织环境中的渗透,而无需使用荧光标记的药物或成像分子。因此,在我们目前的研究中,成功​​开发了一种14天文化的3D无基础嵌入式MCF-7 MCL模型。随着时间的流逝,它的厚度和细胞层增加,并表现出高度的增殖特性和对阿霉素(ADR)的耐药性,IC50值明显升高。同时,还观察到了G2 / M期周期停滞,这可能通过Chk2 / p53 /NF-κB途径上调了P-gp的表达。通过加速ADR通过MCL细胞间空间的表观渗透,升高的P-gp表达改变了MCF-7 MCL在体外的ADR渗透动力学。另外,观察到肿瘤细胞内的ADR保留减少,但是可以被P-gp抑制剂显着逆转。在体内异种移植小鼠中证实了ADR在肿瘤块深层细胞中的保留减弱。这种现象可以通过渗透动力学参数的数学建模来阐明。我们的研究提供了一个新模型,该模型评估并改善了药物渗透动力学的定量,揭示了P-gp与通过肿瘤块的药物渗透之间的关系,并提出了潜在的分子机制。 (C)2014 Elsevier Inc.保留所有权利。

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