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In Vitro Cutaneous Application of ISCOMs on Human Skin Enhances Delivery of Hydrophobic Model Compounds Through the Stratum Corneum

机译:ISCOM在人体皮肤上的体外皮肤应用可增强疏水性模型化合物通过角质层的递送。

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摘要

This study aimed to investigate the effect of a novel kind of immune-stimulating complexes (ISCOMs) on human skin penetration of model compounds in vitro to evaluate their potential as a delivery system, ultimately for transcutaneous vaccination. Special focus was on elucidating the mechanisms of penetration. Preparation of ISCOMs was done by dialysis and subsequent purification in a sucrose density gradient. The penetration pathways of acridine-labeled ISCOMs were visualized using confocal laser scanning microscopy (CLSM). Transmission electron microscopy (TEM) was used to evaluate the ultrastructural changes in the skin after application of the ISCOMs with or without hydration. Transcutaneous permeation of the model compound, methyl nicotinate, was evaluated in diffusion cells. The prepared ISCOMs were 42–52 nm in diameter as evaluated by dynamic light scattering with zeta potentials of −33 to −26.1 mV. TEM investigations verified the presence of ISCOM structures. Penetration of acridine into skin was greatly increased by incorporation into ISCOMs as visualized by CLSM. Permeation of methyl nicotinate was enhanced in the presence of ISCOMs. Ultrastructural changes of the intercellular space in the stratum corneum after exposure of ISCOMs were observed on micrographs, especially for hydrated skin. In conclusion, cutaneous application of ISCOMs leads to increased penetration of hydrophobic model compounds through human stratum corneum and thus shows potential as a transcutaneous delivery system. The increased penetration seems to be reflected by a change in the intercellular space between the corneocytes, and the effect is most likely caused by the components of the ISCOMs rather than intact ISCOMs.
机译:这项研究旨在研究新型免疫刺激复合物(ISCOM)在体外对模型化合物对人皮肤的渗透作用,以评估其作为递送系统(最终用于经皮疫苗接种)的潜力。特别侧重于阐明渗透机制。通过透析并随后在蔗糖密度梯度中纯化来完成ISCOM的制备。使用共聚焦激光扫描显微镜(CLSM)观察a啶标记的ISCOM的渗透途径。透射电子显微镜(TEM)用于评估ISCOM在有水合或无水合后的皮肤超微结构变化。在扩散池中评估了模型化合物烟酸甲酯的透皮渗透性。通过动态光散射评估了制备的ISCOM的直径为42-52 nm,ζ电位为-33至-26.1 mV。 TEM研究证实了ISCOM结构的存在。如CLSM所见,通过掺入ISCOM中,大大增加了skin啶对皮肤的渗透。在ISCOM的存在下,烟酸甲酯的渗透增强。在显微照片上观察到ISCOM暴露后角质层细胞间空间的超微结构变化,特别是对于水合皮肤。总之,ISCOM的皮肤应用导致疏水性模型化合物通过人角质层的渗透增加,因此显示出作为透皮递送系统的潜力。渗透的增加似乎是由角质细胞之间的细胞间空间的变化所反映的,并且这种作用很可能是由ISCOM的组件而不是完整的ISCOM引起的。

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