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顺铂载磁 Fe3O4 纳米粒逆转 A549/DDP 肺癌细胞多药耐药的体内外研究。

Reversal of multidrug resistance by cisplatin-loaded magnetic Fe3O4 nanoparticles in A549/DDP lung cancer cells in vitro and in vivo.

机构信息

Department of Hematology, Key Medical Disciplines of Jiangsu Province, Zhongda Hospital, Medical School, Southeast University, Nanjing.

出版信息

Int J Nanomedicine. 2013;8:1867-77. doi: 10.2147/IJN.S43752. Epub 2013 May 9.

Abstract

The purpose of this study was to explore whether magnetic Fe(3)O(4) nanoparticles (Fe(3)O(4)-MNP) loaded with cisplatin (Fe(3)O(4)-MNP-DDP) can reverse DDP resistance in lung cancer cells and to investigate mechanisms of multidrug resistance in vitro and in vivo. MTT assay showed that DDP inhibited both A549 cells and DDP-resistant A549 cells in a time-dependent and dose-dependent manner, and that this inhibition was enhanced by Fe(3)O(4)-MNP. An increased rate of apoptosis was detected in the Fe(3)O(4)-MNP-DDP group compared with a control group and the Fe(3)O(4)-MNP group by flow cytometry, and typical morphologic features of apoptosis were confirmed by confocal microscopy. Accumulation of intracellular DDP in the Fe(3)O(4)-MNP-DDP group was greater than that in the DDP group by inductively coupled plasma mass spectrometry. Further, lower levels of multidrug resistance-associated protein-1, lung resistance-related protein, Akt, and Bad, and higher levels of caspase-3 genes and proteins, were demonstrated by reverse transcriptase polymerase chain reaction and Western blotting in the presence of Fe(3)O(4)-MNP-DDP. We also demonstrated that Fe(3)O(4)-MNP enhanced the effect of DDP on tumor growth in BALB/c nude mice bearing DDP-resistant human A549 xenografts by decreasing localization of lung resistance-related protein and Ki-67 immunoreactivity in cells. There were no apparent signs of toxicity in the animals. Overall, these findings suggest potential clinical application of Fe(3)O(4)-MNP-DDP to increase cytotoxicity in lung tumor xenografts.

摘要

本研究旨在探讨载顺铂的磁性四氧化三铁纳米粒子(Fe(3)O(4)-MNP-DDP)能否逆转肺癌细胞中的 DDP 耐药,并研究体外和体内多药耐药的机制。MTT 法检测结果显示,DDP 呈时间和剂量依赖性地抑制 A549 细胞和 DDP 耐药的 A549 细胞,而 Fe(3)O(4)-MNP 可增强这种抑制作用。流式细胞术检测到,与对照组和 Fe(3)O(4)-MNP 组相比,Fe(3)O(4)-MNP-DDP 组的细胞凋亡率明显升高,激光共聚焦显微镜证实了凋亡的典型形态特征。电感耦合等离子体质谱法检测到,Fe(3)O(4)-MNP-DDP 组细胞内 DDP 的蓄积量明显高于 DDP 组。进一步通过逆转录聚合酶链反应和 Western blot 检测发现,Fe(3)O(4)-MNP-DDP 存在时,多药耐药相关蛋白-1、肺耐药相关蛋白、Akt 和 Bad 的水平降低,caspase-3 基因和蛋白的水平升高。我们还证明,Fe(3)O(4)-MNP 降低了肺耐药相关蛋白和 Ki-67 免疫反应性细胞中的定位,从而增强了 DDP 对荷有 DDP 耐药人 A549 异种移植瘤的 BALB/c 裸鼠肿瘤生长的抑制作用。动物没有明显的毒性迹象。总的来说,这些发现表明,Fe(3)O(4)-MNP-DDP 具有增加肺肿瘤异种移植物细胞毒性的潜在临床应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e05d/3656817/957e355e5bd8/ijn-8-1867f1.jpg

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