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首页> 外文期刊>Biomaterials >Rapid implantation of dissolving microneedles on an electrospun pillar array
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Rapid implantation of dissolving microneedles on an electrospun pillar array

机译:快速植入溶解微针在电纺柱阵列上的溶解

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Dissolving microneedles (DMNs), designed to release drugs and dissolve after skin insertion, have been spotlighted as a novel transdermal delivery system due to their advantages such as minimal pain and tissue damage, ability to self-administer, and no associated hazardous residues. The drug delivery efficacy of DMNs, however, is limited by incomplete insertion and the extended period required for DMN dissolution. Here, we introduce a novel DMN delivery system, DMN on an electrospun pillar array (DEPA), which can rapidly implant DMNs into skin. DMNs were fabricated on a pillar array covered by a fibrous sheet produced by electrospinning PLGA solution (14%, w/v). DMNs were implanted into the skin by manual application (press and vibration for 10s) by tearing of the fibers hung on the 300-μm pillars. Separation of DMNs from the fibrous sheet was dependent on both pillar height and the properties of the fibrous sheet. After evaluation of the implantation and dissolution of DMNs with diffusion of red dye by taking cross-sectional images of porcine skin, the hypoglycemic effect of insulin loaded DEPA was examined using a healthy mouse model. This DMN array overcomes critical issues associated with the low penetration efficiency of flat patch-based DMNs, and will allow realization of patient convenience with the desired drug efficacy
机译:溶解微针(DMN),设计用于释放药物并在皮肤插入后溶解,由于它们的优点是一种新的透皮递送系统,其优点是诸如最小的疼痛和组织损伤,自我管理能力,并且没有相关的危险残留物。然而,DMN的药物递送效果受到不完全插入的限制和DMN溶解所需的延长期。在这里,我们介绍了一种新型DMN递送系统DMN,在Electrom Operar阵列(Depa)上,可以将DMN迅速植入皮肤。在通过静电纺丝PLGA溶液(14%,W / V)覆盖的柱阵列上制造DMN。通过在300μm支柱上撕开悬垂的纤维,通过手动施用(压力和振动10s)植入皮肤中的DMNS。将DMN与纤维片的分离取决于柱的高度和纤维片的性质。通过采用猪皮肤的横截面图像评估DMN的植入和溶解DMN,通过横截面的图像进行横截面图像,使用健康小鼠模型检查胰岛素负载DEPA的降血糖作用。该DMN阵列克服了与基于扁平贴片的DMN的低穿透效率相关的关键问题,并将以所需的药物功效实现患者便利性

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