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Simple one-pot fabrication of ultra-stable core-shell superparamagnetic nanoparticles for potential application in drug delivery

机译:简单的一锅制造超稳定的核 - 壳超顺磁性纳米粒子,可用于药物输送

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摘要

Ultrastable superparamagnetic core-shell nanoparticles of average diameter 80 nm have been fabricated via a simple one-pot method involving superparamagnetic iron oxide nanoparticles (SPIONs) core ([similar]50 nm in diameter) and lipid bilayer shell by high energy ultrasonication. The surface charges (zeta potentials) were measured to be between −15 mV and + 16 mV depending on the batch composition. Anticancer drug mitomycin C (MMC) was loaded into four different samples of variable surface charges in aqueous solution (pH = 6.8) and released in PBS buffer (pH = 7.2) at room temperature. The kinetics of drug loading and releasing data indicated that the stable lipid bilayer coated SPIONs (LBCSPIONs) of nearly neutral surface exhibited the highest loading (10.9 μg of MMC/mg of materials), whereas uncoated or partially coated SPIONs of positive zeta potential exhibited the lowest loading (2.8 and 3.5 μg MMC/mg of materials, respectively). The release behavior of MMC was observed to be highest (5.8 μg MMC/mg of materials) from materials of negative zeta potential compared to materials of near neutral surfaces (3.68 μg MMC/mg of materials). The plausible mechanism of MMC loading and releasing behavior has been explained based on the electrostatic interaction and diffusion through the lipid bilayers. To ensure biocompatibility, the interaction of the prepared SPIONs with human cervical cancer cell line (HeLa) was also investigated using an MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay and ROS (reactive oxygen species) production assay and the results confirmed the super-compatibility of LBCSPIONs.
机译:已经通过简单的一锅法通过高能超声制造了包括超顺磁性氧化铁纳米颗粒(SPIONs)核(直径约50nm)和脂质双层壳的简单的一锅法,制造了平均直径为80nm的超稳定超顺磁性核-壳纳米颗粒。根据批料组成,表面电荷(ζ电位)经测量介于-15 mV和+ 16 mV之间。将抗癌药物丝裂霉素C(MMC)装入水溶液中(pH = 6.8)的四个不同表面电荷的不同样品中,并在室温下于PBS缓冲液(pH = 7.2)中释放。药物上载和释放动力学的数据表明,接近中性表面的稳定脂质双层包被的SPIONs(LBCSPIONs)表现出最高的装载量(10.9μgMMC / mg材料),而未包被或部分包被的具有正ζ电势的SPIONs表现出最大的载药量。最低负载(分别为2.8和3.5μgMMC / mg材料)。与近中性表面附近的材料(3.68μgMMC / mg的材料)相比,具有负ζ电势的材料的MMC的释放行为最高(5.8μgMMC / mg的材料)。基于静电相互作用和通过脂质双层的扩散,已经解释了MMC加载和释放行为的合理机制。为了确保生物相容性,还使用MTT(3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑鎓溴化物)分析法和ROS对制备的SPION与人宫颈癌细胞系(HeLa)的相互作用进行了研究。 (活性氧)生产测定法和结果证实了LBCSPIONs的超相容性。

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