首页> 外文期刊>Journal of biomaterials science >A novel transdermal drug delivery system based on self-adhesive Janus nanofibrous film with high breathability and monodirectional water-penetration
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A novel transdermal drug delivery system based on self-adhesive Janus nanofibrous film with high breathability and monodirectional water-penetration

机译:一种基于自粘Janus纳米纤维膜的新型透皮给药系统,具有高透气性和单向渗透性

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Transdermal drug delivery systems (TDDS) had achieved significant success in medical practice, but still suffered from adhesion failure and skin reaction due to the occlusive properties of hydrophobic pressure sensitive adhesives (PSAs). In order to solve these problems, a novel TDDS patch based on self-adhesive Janus nanofibrous film was prepared by a multilayered electrospinning. This multifunctional patch was a bilayer, structure. The subjacent layer was a hydrophobic and adhesive fibrous layer electrospun from polyacrylate PSA (HPSA), and the upper backing layer was a hydrophilic cross-linked poly (vinyl alcohol) (c-PVA) nanofibrous film. The structures of the HPSA/c-PVA composite fibrous films were characterized and their application properties, including adherence performance; water vapor permeability, water-penetration, release characteristics, and skin irritation were evaluated. The. results indicated that the HPSA/c-PVA composite fibrous films could provide suitable adhesive properties for TDDS application, excellent capacity for drug loading and release, aesthetical appearance and high safety for use on the skin. Especially, due to the nanofibrous network structures and the hydrophobic-hydrophilic wettability gradient from hydrophobic HPSA layer to the hydrophilic c-PVA layer, the Janus films possessed high breathability and monodirectional water-penetration. Water could penetrate from the hydrophobic to the hydrophilic side, but could not permeate through in the opposite direction. This may provide a feasible solution to the problems caused by the water, sweat, or wound exudate on the skin, when the hydrophobic PSAs were used as matrix for TDDS and wound dressing patches.
机译:透皮药物递送系统(TDDS)在医学实践中取得了巨大的成功,但由于疏水性压敏胶粘剂(PSA)的吸留特性,其仍遭受粘附失败和皮肤反应的困扰。为了解决这些问题,通过多层静电纺丝制备了一种基于自粘Janus纳米纤维膜的新型TDDS贴剂。该多功能贴剂是双层结构。下层是由聚丙烯酸酯PSA(HPSA)纺制的疏水性粘合纤维层,上衬层是亲水性交联聚乙烯醇(c-PVA)纳米纤维膜。表征了HPSA / c-PVA复合纤维薄膜的结构及其应用性能,包括附着性能;评价了水蒸气渗透性,水渗透性,释放特性和皮肤刺激性。的。结果表明,HPSA / c-PVA复合纤维膜可为TDDS应用提供合适的粘合性能,优异的载药量和释放能力,美观的外观以及在皮肤上使用的高度安全性。特别地,由于纳米纤维网络结构和从疏水性HPSA层到亲水性c-PVA层的疏水性-亲水性润湿性梯度,Janus膜具有高透气性和单向水渗透性。水可以从疏水侧渗透到亲水侧,但不能沿相反方向渗透。当疏水性PSA用作TDDS和伤口敷料贴片的基质时,这可以为水,汗水或皮肤上的伤口渗出液引起的问题提供可行的解决方案。

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