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Apoptotic mechanism of human leukemia K562/A02 cells induced by magnetic iron oxide nanoparticles co-loaded with daunorubicin and 5-bromotetrandrin

机译:柔红霉素和5-溴粉蛋白联合负载磁性氧化铁纳米颗粒诱导人白血病K562 / A02细胞凋亡机制

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摘要

The purpose of this study was to assess the induced apoptosis of self-assembled iron oxide magnetic nanoparticles (MNPs) co-loaded with daunorubicin (DNR) and 5-bromotetrandrin (Br Tet) (DNR/Br Tet-MNPs), acting as a drug depot system for the sustained release of the loaded DNR and BrTet, in the drug resistant human leukemia K562/A02 cells and further to explore potential mechanisms. After being incubated for 48 hours, K562/A02 cells were treated with DNR/Br Tet-MNPs or DNR and Br Tet in solution (DNR/Br Tet-Sol). Morphologic characteristics of K562/A02 cells were observed under a fluorescence microscope; cell apoptosis and intracellular accumulation of DNR were analyzed by FACS Calibur flow cytometry. Furthermore, reverse transcriptase polymerase chain reaction (RT-PCR) and Western blotting analyses were performed to study the apoptosis associated gene transcription and protein expression, respectively. Typical apoptotic characteristics, including chromatin condensation and fragmentation of nuclei, were observed and a high rate of apoptosis was detected in K562/A02 cells treated with DNR/Br Tet-MNPs and DNR/Br Tet-Sol. Detection of relative fluorescence intensity of intracellular DNR demonstrated that intracellular DNR was higher in K562/A02 cells treated with DNR/Br Tet-MNPs than that of DNR/Br Tet-Sol. Further study demonstrated that both DNR/Br Tet-MNPs and DNR/Br Tet-Sol reduced the gene transcriptions and protein expressions of bcl-2 and survivin and enhanced that of bax and caspase 3. It is concluded that self-assembled DNR/Br Tet-MNPs, as one of the potential antitumor agents for hematologic malignancies, may effectively induce apoptosis of K562/A02 cells through elevating the ratio of bax/bcl-2, activating caspase 3, and inactivating survivin.
机译:这项研究的目的是评估与柔红霉素(DNR)和5-溴丁香精(Br Tet)(DNR / Br Tet-MNPs)共同负载的自组装氧化铁磁性纳米颗粒(MNP)的诱导凋亡。药物贮库系统,用于在耐药性白血病K562 / A02细胞中持续释放负载的DNR和BrTet,并进一步探索潜在的机制。孵育48小时后,用DNR / Br Tet-MNPs或DNR和Br Tet溶液(DNR / Br Tet-Sol)处理K562 / A02细胞。在荧光显微镜下观察K562 / A02细胞的形态特征。 FACS Calibur流式细胞仪分析DNR的细胞凋亡和细胞内积累。此外,进行逆转录聚合酶链反应(RT-PCR)和蛋白质印迹分析以分别研究凋亡相关基因的转录和蛋白质表达。在用DNR / Br Tet-MNPs和DNR / Br Tet-Sol处理的K562 / A02细胞中观察到典型的凋亡特征,包括染色质浓缩和细胞核碎裂,并检测到高凋亡率。检测细胞内DNR的相对荧光强度表明,在用DNR / Br Tet-MNPs处理的K562 / A02细胞中,细胞内DNR高于DNR / Br Tet-Sol。进一步的研究表明,DNR / Br Tet-MNPs和DNR / Br Tet-Sol均降低了bcl-2和survivin的基因转录和蛋白质表达,并增强了bax和caspase 3的基因表达。 Tet-MNPs作为血液系统恶性肿瘤的潜在抗肿瘤药物之一,可以通过提高bax / bcl-2的比例,激活caspase 3和激活survivin来有效诱导K562 / A02细胞凋亡。

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