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首页> 外文期刊>Journal of nanoscience and nanotechnology >Hollow Fe3O4/Graphene Oxide Nanocomposites as Novel Rapamycin Carrier: Formulation Optimization and In Vitro Characterization
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Hollow Fe3O4/Graphene Oxide Nanocomposites as Novel Rapamycin Carrier: Formulation Optimization and In Vitro Characterization

机译:中空Fe3O4 /石墨烯氧化物纳米复合材料作为新型雷帕霉素载体:配方优化和体外表征

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In the present research an attempt was made to develop and optimize rapamycin (Rapa) loaded hollow magnetic Fe3O4/graphene oxide (Fe3O4/GO) nanocomposites using solvent evaporation technique and response surface methodology (RSM). A Box-Behnken design (BBD) with a three-level, three-factor was used to determine preparation parameters that would achieve the highest encapsulation efficiency (EE) and drug loading capacity (DLC). At optimum conditions such as mass ratio of Rapa to Fe3O4/GO (Rapa: Fe3O4/GO) 0.45, oscillation rate 144.0, and volume ratio of water to solvent (W/S) 4.2, the EE and DLC of experimentally prepared particles reached 84.92 +/- 5.50% and 28.68 +/- 2.54% respectively. The morphological assessment results showed that hollow Fe3O4 nano-aggregates were evenly and tightly dispersed on the layer of GO membrane. After the addition of GO and encapsulation of Rapa, the Fe3O4/GO nanocomposites and Rapa loaded magnetic Fe3O4/GO (Fe3O4/GO-Rapa) nanocomposites showed saturation magnetization of 57.77 and 40.71 emu/g respectively. The drug releasing experiment indicated a slightly acidic atmosphere, which was suitable for Rapa releasing from the obtained Fe3O4/GO nanocomposites. The cell counting Kit-8 (CCK-8) assays demonstrated the hollow Fe3O4/GO nanocomposites could effectively improve the efficacy of Rapa in killing HepG2 cells, which displayed a concentration-dependent manner. All these results suggested the prepared Fe3O4/GO nanocomposites have a potential application in drug delivery system.
机译:在本研究中,尝试使用溶剂蒸发技术和响应表面方法(RSM)来开发和优化雷帕霉素(RAPA)负载的中空磁性Fe3O4 /石墨烯(Fe3O4 / Go)纳米复合材料。具有三级的Box-Behnken设计(BBD)三个因素用于确定将获得最高封装效率(EE)和药物负载能力(DLC)的制备参数。在最佳条件下,如RAPA至Fe3O4 / Go / Go的质量比(Rapa:Fe3O4 / Go)0.45,振荡速率144.0和水的水与溶剂(w / s)的体积比4.2,EE和DLC的实验制备的颗粒达到84.92 +/- 5.50%和28.68 +/- 2.54%。形态学评估结果表明,中空Fe3O4纳米聚集体均匀且紧密地分散在去膜层上。添加和封装RAPA的封装后,FE3O4 / GO纳米复合材料和RAPA负载磁FE3O4 / GO(FE3O4 / GO-RAPA)纳米复合材料分别显示为57.77和40.71 emu / g的饱和磁化强度。药物释放实验表明略微酸性气氛,适用于从所得Fe 3 O 4 / Go纳米复合材料中释放的RAPA。细胞计数试剂盒-8(CCK-8)测定证明中空Fe3O4 / Go纳米复合材料可以有效地提高RAPA在杀死HepG2细胞中的功效,其呈浓缩依赖性方式。所有这些结果表明制备的Fe3O4 / Go纳米复合材料在药物递送系统中具有潜在的应用。

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