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首页> 外文期刊>International Journal of Pharmaceutics >Super-short solid silicon microneedles for transdermal drug delivery applications.
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Super-short solid silicon microneedles for transdermal drug delivery applications.

机译:用于透皮药物递送应用的超短固体硅微针。

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In this study, the super-short microneedles with a length of 70-80 microm were fabricated using silicon wet etching technology. As evident from the visual inspection of pierced human skin, appearance of blue spots array after Evans Blue (EB) application indicated that the super-short microneedles were able to pierce into skin by pressing and swaying against the microneedles backing layer continually with a finger. The micro-conduits created in skin were validated by histological examination. Transport studies revealed that: (i) skin pretreated with super-short microneedles resulted in a remarkable enhancement of the galanthamine (GAL) transport, and the permeated amount increased as the insertion force increased; (ii) the super-short microneedles with flat tips were better than that with sharp tips for enhancing skin permeability; (iii) the longer time of super-short microneedles detained in skin resulted in a higher increase of skin permeability; (iv) there was no linear correlation between the GAL permeated through skin and the number of microneedles. The EIIIA(+) (526 bp) segment, a very sensitive marker of tissue injury, did not expressed in the skin pierced by super-short microneedles. Meanwhile, the skin pretreated with super-short microneedles did not infected after incubation with the Staphylococcus aureus. These results suggest that super-short microneedles may be a safe and efficient alternative for transdermal drug delivery of hydrophilic molecules.
机译:在该研究中,使用硅湿法蚀刻技术制造长度为70-80微米的超短微针。从刺穿的人体皮肤的目视检查中明显看出,埃文斯蓝(EB)应用后的蓝色斑点阵列的外观表明,通过手指连续地压靠微针背衬层,超短微针能够刺穿皮肤。通过组织学检查验证皮肤中产生的微导管。运输研究表明:(i)用超短微酮预处理的皮肤导致Galanthamine(GAL)运输的显着增强,随着插入力增加,渗透量增加; (ii)具有扁平尖端的超短微针优于尖锐的尖端,以提高皮肤渗透性; (iii)皮肤释放的超短微针的时间较长,导致皮肤渗透率提高; (iv)通过皮肤渗透到皮肤和微针数之间没有线性相关性。 EIIIA(+)(526bp)段是一种非常敏感的组织损伤标记,在超短微针的皮肤上没有表达。同时,与金黄色葡萄球菌孵育后,用超短微针的皮肤预处理皮肤。这些结果表明,超短微针可以是亲水性分子的透皮药物递送的安全有效的替代方案。

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