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3D 打印微针用于透皮给药:二十年简要回顾。

3D printed microneedles for transdermal drug delivery: A brief review of two decades.

机构信息

Department of Materials Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.

Department of Materials Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.

出版信息

Int J Pharm. 2021 Mar 15;597:120301. doi: 10.1016/j.ijpharm.2021.120301. Epub 2021 Feb 1.

Abstract

Microneedle (MN) technology shows excellent potential in controlled drug delivery, which has got rising attention from investigators and clinics. MNs can pierce through the stratum corneum layer of the skin into the epidermis, evading interaction with nerve fibers. MN patches have been fabricated using various types of materials and application processes. Recently, three-dimensional (3D) printing gives the prototyping and manufacturing methods the flexibility to produce the MN patches in a one-step manner with high levels of shape complexity and duplicability. This review aims to go through the last successes in 3D printed MN-based patches. In this regard, after the evaluation of various types of MNs and fabrication techniques, we will study different 3D printing approaches applied for MN patch fabrication. We further highlight the state of the art of the long-acting MNs and related progress with a specific look at what should come within the scope of upcoming researches.

摘要

微针(MN)技术在控制药物输送方面显示出巨大的潜力,引起了研究人员和临床医生的广泛关注。MN 可以穿透皮肤的角质层进入表皮,避免与神经纤维相互作用。MN 贴片已经使用各种类型的材料和应用工艺制造出来。最近,三维(3D)打印技术为原型制作和制造方法提供了灵活性,可以一步式生产具有高度形状复杂性和可复制性的 MN 贴片。本文旨在回顾基于 3D 打印的 MN 贴片的最新成果。为此,在评估了各种类型的 MN 和制造技术之后,我们将研究应用于 MN 贴片制造的不同 3D 打印方法。我们进一步强调了长效 MN 的现状以及相关进展,并特别关注即将开展的研究范围内的内容。

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