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Fabrication of degradable carboxymethyl cellulose (CMC) microneedle with laser writing and replica molding process for enhancement of transdermal drug delivery

机译:可降解羧甲基纤维素(CMC)微针的激光书写和复制成型工艺的制备,可增强透皮给药

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摘要

Transdermal drug delivery system (TDDS) may provide a more reliable method of drug delivery than oral delivery by avoiding gut absorption and first-pass metabolism, but needs a method for efficiently crossing the epidermal barrier. To enhance the delivery through the skin, we have developed a biocompatible, dissolvable microneedle array made from carboxymethyl cellulose (CMC). Using laser ablation for creating the mold greatly improved the efficiency and reduced the cost of microneedle fabrication. Mixing CMC with amylopectin (AP) enhanced the mechanical and tunable dissolution properties of the microneedle for controlled release of model compounds. Using the CMC microneedle array, we observed significant enhancement in the skin permeability of a fluorescent model compound, and also increase in the anti-oxidant activity of ascorbic acid after crossing the skin. Our dissolvable microneedle array provides a new and biocompatible method for delivery of drugs and cosmetic compounds through the skin.
机译:通过避免肠道吸收和首过代谢,透皮药物递送系统(TDDS)可以提供比口服递送更可靠的药物递送方法,但是需要一种有效穿越表皮屏障的方法。为了增强通过皮肤的输送,我们开发了一种由羧甲基纤维素(CMC)制成的可生物相容的可溶解微针阵列。使用激光烧蚀来创建模具大大提高了效率并降低了微针制造成本。将CMC与支链淀粉(AP)混合可增强微针的机械和可调溶出特性,以控制模型化合物的释放。使用CMC微针阵列,我们观察到荧光模型化合物的皮肤渗透性显着增强,并且穿过皮肤后抗坏血酸的抗氧化活性也增强。我们的可溶性微针阵列为通过皮肤输送药物和美容化合物提供了一种新的,生物相容的方法。

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