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首页> 外文期刊>BioMed research international >Mitogenic Effects of Phosphatidylcholine Nanoparticles on MCF-7 Breast Cancer Cells
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Mitogenic Effects of Phosphatidylcholine Nanoparticles on MCF-7 Breast Cancer Cells

机译:磷脂酰胆碱纳米颗粒对MCF-7乳腺癌细胞的致突变作用

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Lecithins, mainly composed of the phospholipids phosphatidylcholines (PC), have many different uses in the pharmaceutical and clinical field. PC are involved in structural and biological functions as membrane trafficking processes and cellular signaling. Considering the increasing applications of lecithin-based nanosystems for the delivery of therapeutic agents, the aim of the present work was to determine the effects of phosphatidylcholine nanoparticles over breast cancer cellular proliferation and signaling. PC dispersions at 0.01 and 0.1% (w/v) prepared in buffer pH 7.0 and 5.0 were studied in the MCF-7 breast cancer cell line. Neutral 0.1% PC-derived nanoparticles induced the activation of the MEK-ERK1/2 pathway, increased cell viability and induced a 1.2 fold raise in proliferation. These biological effects correlated with the increase of epidermal growth factor receptor (EGFR) content and its altered cellular localization. Results suggest that nanoparticles derived from PC dispersion prepared in buffer pH 7.0 may induce physicochemical changes in the plasma membrane of cancer cells which may affect EGFR cellular localization and/or activity, increasing activation of the MEK-ERK1/2 pathway and inducing proliferation. Results from the present study suggest that possible biological effects of delivery systems based on lecithin nanoparticles should be taken into account in pharmaceutical formulation design.
机译:卵磷脂主要由磷脂磷脂酰胆碱(PC)组成,在制药和临床领域具有许多不同的用途。 PC作为膜运输过程和细胞信号传导参与结构和生物学功能。考虑到基于卵磷脂的纳米系统在递送治疗剂方面的日益增加的应用,本工作的目的是确定磷脂酰胆碱纳米颗粒对乳腺癌细胞增殖和信号传导的影响。在MCF-7乳腺癌细胞系中研究了在pH 7.0和5.0的缓冲液中制备的0.01和0.1%(w / v)的PC分散液。中性的0.1%PC衍生的纳米粒子诱导了MEK-ERK1 / 2途径的激活,提高了细胞活力,并诱导了1.2倍的增殖增加。这些生物学效应与表皮生长因子受体(EGFR)含量的增加及其细胞定位的改变有关。结果表明,在pH 7.0的缓冲液中制备的PC分散液衍生的纳米颗粒可能会诱导癌细胞质膜发生物理化学变化,从而影响EGFR细胞的定位和/或活性,增加MEK-ERK1 / 2途径的激活并诱导增殖。本研究的结果表明,在药物制剂设计中应考虑基于卵磷脂纳米颗粒的递送系统的可能的生物学效应。

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