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首页> 外文期刊>Nanoscale Research Letters >Effect of Paclitaxel-Mesoporous Silica Nanoparticles with a Core-Shell Structure on the Human Lung Cancer Cell Line A549
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Effect of Paclitaxel-Mesoporous Silica Nanoparticles with a Core-Shell Structure on the Human Lung Cancer Cell Line A549

机译:核壳结构紫杉醇介孔二氧化硅纳米粒子对人肺癌细胞A549的影响

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摘要

A nanodrug delivery system of paclitaxel-mesoporous silica nanoparticles with a core-shell structure (PAC-csMSN) was used to increase the dissolution of paclitaxel (PAC) and improve its treatment of lung cancer. PAC was loaded into the core-shell mesoporous silica nanoparticles (csMSN) by the adsorption equilibrium method and was in an amorphous state in terms of its mesoporous structure. In vitro and in vivo studies showed that csMSN increased the dissolution rate of PAC and improved its lung absorption. The area under concentration-time curve (AUC) value of PAC-csMSN used for pulmonary delivery in rabbits was 2.678-fold higher than that obtained with the PAC. After continuous administration for 3?days, a lung biopsy showed no signs of inflammation. Cell apoptosis results obtained by flow cytometry indicated that PAC-csMSN was more potent than pure PAC in promoting cell apoptosis. An absorption investigation of PAC-csMSN in A549 cells was carried out by transmission electron microscopy (TEM) and laser scanning confocal microscopy (LSCM). The obtained results indicated that the cellular uptake was time-dependent and csMSN was uptaken into the cytoplasm. All these results demonstrate that csMSN have the potential to achieve pulmonary inhalation administration of poorly water-soluble drugs for the treatment of lung cancer.
机译:具有核-壳结构的紫杉醇-中孔二氧化硅纳米粒子的纳米药物递送系统(PAC-csMSN)用于增加紫杉醇(PAC)的溶出度并改善其对肺癌的治疗。 PAC通过吸附平衡法被装载到核-壳介孔二氧化硅纳米颗粒(csMSN)中,并且就其介孔结构而言处于非晶态。体外和体内研究表明,csMSN可提高PAC的溶出度并改善其肺吸收。用于肺部递送的PAC-csMSN的浓度-时间曲线下面积(AUC)值比PAC所获得的高2.678倍。连续给药3天后,肺活检无炎症迹象。通过流式细胞术获得的细胞凋亡结果表明,PAC-csMSN在促进细胞凋亡方面比纯PAC更有效。用透射电子显微镜(TEM)和激光扫描共聚焦显微镜(LSCM)对PAC-csMSN在A549细胞中的吸收进行了研究。获得的结果表明细胞摄取是时间依赖性的,而csMSN被摄取到细胞质中。所有这些结果表明,csMSN具有实现水溶性差的药物用于肺部吸入治疗肺癌的潜力。

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