首页> 美国卫生研究院文献>Pharmaceutics >Minoxidil Skin Delivery from Nanoemulsion Formulations Containing Eucalyptol or Oleic Acid: Enhanced Diffusivity and Follicular Targeting
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Minoxidil Skin Delivery from Nanoemulsion Formulations Containing Eucalyptol or Oleic Acid: Enhanced Diffusivity and Follicular Targeting

机译:从含有桉油精或油酸的纳米乳剂中释放米诺地尔:增强扩散性和卵泡靶向性

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摘要

In this work, we examined enhanced skin delivery of minoxidil applied in nanoemulsions incorporating skin penetration enhancers. Aliquots of fully characterized oil-in-water nanoemulsions (1 mL), containing minoxidil (2%) and the skin penetration enhancer oleic acid or eucalyptol as oil phases, were applied to full-thickness excised human skin in Franz diffusion cells, while aqueous solutions (1 mL) containing minoxidil were used as controls. Minoxidil in the stratum corneum (SC), hair follicles, deeper skin layers, and flux through the skin over 24 h was determined, as well as minoxidil solubility in the formulations and in the SC. The nanoemulsions significantly enhanced the permeation of minoxidil through skin compared with control solutions. The eucalyptol formulations (NE) promoted minoxidil retention in the SC and deeper skin layers more than did the oleic acid formulations, while the oleic acid formulations (NO) gave the greatest hair follicle penetration. Minoxidil maximum flux enhancement was associated with increases in both minoxidil SC solubility and skin diffusivity in both nanoemulsion systems. The mechanism of enhancement appeared to be driven largely by increased diffusivity, rather than increased partitioning into the stratum corneum, supporting the concept of enhanced fluidity and disruption of stratum corneum lipids.
机译:在这项工作中,我们检查了米诺地尔在结合皮肤渗透促进剂的纳米乳剂中增强的皮肤递送。将含有米诺地尔(2%)和皮肤渗透促进剂油酸或桉油精作为油相的,具有完全特征的水包油纳米乳状液等分试样,在Franz扩散池中用于全层切除的人皮肤,含有米诺地尔的溶液(1 mL)用作对照。测定角质层(SC),毛囊,较深的皮肤层和24小时内通过皮肤的通量中的米诺地尔,以及米诺地尔在制剂和SC中的溶解度。与对照溶液相比,纳米乳剂显着增强了米诺地尔在皮肤中的渗透。桉树油配方(NE)促进米诺地尔在SC和深层皮肤中的滞留比油酸配方更有效,而油酸配方(NO)可使毛囊渗透最大。在两种纳米乳剂系统中,米诺地尔的最大通量增强与米诺地尔SC溶解度和皮肤扩散率的增加有关。增强的机制似乎主要是由增加的扩散性驱动的,而不是由增加分配到角质层的分配所驱动的,这支持了增强流动性和破坏角质层脂质的概念。

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