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Study of magnetic silk fibroin nanoparticles for massage-like transdermal drug delivery

机译:磁性丝素蛋白纳米颗粒用于按摩样透皮给药的研究

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摘要

A synergistic approach by the combination of magnetic nanoparticles with an alternating magnetic field for transdermal drug delivery was investigated. Methotrexate-loaded silk fibroin magnetic nanoparticles were prepared using suspension-enhanced dispersion by supercritical CO2. The physiochemical properties of the magnetic nanoparticles were characterized. In vitro studies on drug permeation across skin were performed under different magnetic fields in comparison with passive diffusion. The permeation flux enhancement factor was found to increase under a stationary magnetic field, while an alternating magnetic field enhanced drug permeation more effectively; the combination of stationary and alternating magnetic fields, which has a massage-like effect on the skin, achieved the best result. The mechanistic studies using attenuated total reflection Fourier-transform infrared spectroscopy demonstrate that an alternating magnetic field can change the ordered structure of the stratum corneum lipid bilayers from the gel to the lipid-crystalline state, which can increase the fluidity of the stratum corneum lipids, thus enhancing skin penetration. Compared with the other groups, the fluorescence signal with a bigger area detected in deeper regions of the skin also reveals that the simulated massage could enhance the drug permeation across the skin by increasing the follicular transport. The combination of magnetic nanoparticles with stationary/alternating magnetic fields has potential for effective massage-like transdermal drug delivery.
机译:研究了将磁性纳米粒子与交变磁场结合用于透皮药物递送的协同方法。负载甲氨蝶呤的丝素蛋白磁性纳米粒子是通过超临界CO2悬浮增强的分散液制备的。表征了磁性纳米颗粒的理化性质。与被动扩散相比,在不同磁场下进行了药物跨皮肤渗透的体外研究。发现在固定磁场下渗透通量增强因子增加,而交变磁场更有效地增强了药物渗透。固定磁场和交变磁场的结合对皮肤具有按摩般的效果,达到了最佳效果。使用衰减全反射傅里叶变换红外光谱的机理研究表明,交变磁场可以将角质层脂质双层的有序结构从凝胶改变为脂质晶体状态,从而可以增加角质层脂质的流动性,从而增强皮肤渗透力。与其他组相比,在皮肤较深区域检测到的具有更大面积的荧光信号也表明,模拟按摩可以通过增加卵泡转运来增强药物在皮肤上的渗透。磁性纳米颗粒与固定/交替磁场的结合具有有效进行按摩式透皮药物递送的潜力。

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