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用于糖尿病大鼠经皮递送二甲双胍的近红外光触发且可分离的微针

Near-infrared light triggered and separable microneedles for transdermal delivery of metformin in diabetic rats.

作者信息

Yu Weijiang, Jiang Guohua, Zhang Yang, Liu Depeng, Xu Bin, Zhou Junyi

机构信息

Department of Polymer Materials, Zhejiang Sci Tech University, Hangzhou 310018, China.

出版信息

J Mater Chem B. 2017 Dec 28;5(48):9507-9513. doi: 10.1039/c7tb02236k. Epub 2017 Dec 4.

Abstract

Near-infrared light triggered and separable microneedles (MNs) were fabricated by a unique molding method. The photothermal conversion agent (Prussian blue nanoparticles, PB NPs) and hypoglycemic drug (metformin) were embedded into the separable polycaprolactone (PCL) MNs arrowheads. These MNs arrowheads were capped on dissolving polyvinyl alcohol/polyvinyl pyrrolidone (PVA/PVP) solid supporting substrate. The as-fabricated MNs exhibited excellent photothermal conversion properties under near-infrared light (NIR) irradiation, causing the MNs arrowheads to melt due to the photothermal conversion of PB NPs. After applying on skin, the separable MNs arrowheads could be embedded in the skin due to the dissolution of supporting substrates after absorbing the interstitial fluid. When the embedded MNs arrowheads were exposed to NIR irradiation, the MNs arrowheads underwent a rapid thermal ablation from a solid to a liquid state, thus enabling the release of encapsulated metformin to be NIR modulated. They allowed on-demand control of timing and dose of the drug released. This suggests that the developed NIR-triggered and separable MNs are a promising transdermal drug delivery system that enables the patient or physician to adjust therapy precisely in an active manner, thus improving treatment efficiency and reducing side-effects.

摘要

通过一种独特的成型方法制备了近红外光触发且可分离的微针(MNs)。将光热转换剂(普鲁士蓝纳米颗粒,PB NPs)和降糖药物(二甲双胍)嵌入可分离的聚己内酯(PCL)微针箭头中。这些微针箭头覆盖在可溶解的聚乙烯醇/聚乙烯吡咯烷酮(PVA/PVP)固体支撑基质上。所制备的微针在近红外光(NIR)照射下表现出优异的光热转换性能,由于PB NPs的光热转换导致微针箭头熔化。应用于皮肤后,由于支撑基质在吸收组织液后溶解,可分离的微针箭头能够嵌入皮肤。当嵌入的微针箭头受到近红外光照射时,微针箭头从固态迅速热消融成液态,从而使包封的二甲双胍的释放受到近红外光调制。它们能够按需控制药物释放的时间和剂量。这表明所开发的近红外光触发且可分离的微针是一种有前景的透皮给药系统,能够使患者或医生以主动方式精确调整治疗,从而提高治疗效率并减少副作用。

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