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微针:经皮给药系统的一种智能方法和日益增长的潜力。

Microneedles: A smart approach and increasing potential for transdermal drug delivery system.

机构信息

Department of Pharmacy, Birla Institute of Technology & Science (BITS), Pilani Campus, Pilani, Rajasthan, 333031, India.

Department of Pharmacy, Birla Institute of Technology & Science (BITS), Pilani Campus, Pilani, Rajasthan, 333031, India.

出版信息

Biomed Pharmacother. 2019 Jan;109:1249-1258. doi: 10.1016/j.biopha.2018.10.078. Epub 2018 Nov 9.

Abstract

The most widely used methods for transdermal administration of the drugs are hypodermic needles, topical creams, and transdermal patches. The effect of most of the therapeutic agents is limited due to the stratum corneum layer of the skin, which serves as a barrier for the molecules and thus only a few molecules are able to reach the site of action. A new form of delivery system called the microneedles helps to enhance the delivery of the drug through this route and overcoming the various problems associated with the conventional formulations. The primary principle involves disruption of the skin layer, thus creating micron size pathways that lead the drug directly to the epidermis or upper dermis region from where the drug can directly go into the systemic circulation without facing the barrier. This review describes the various potential and applications of the microneedles. The various types of microneedles can be fabricated like solid, dissolving, hydrogel, coated and hollow microneedles. Fabrication method selected depends on the type and material of the microneedle. This system has increased its application to many fields like oligonucleotide delivery, vaccine delivery, insulin delivery, and even in cosmetics. In recent years, many microneedle products are coming into the market. Although a lot of research needs to be done to overcome the various challenges before the microneedles can successfully launch into the market.

摘要

最常用于药物经皮给药的方法是皮下注射针、局部乳膏和透皮贴剂。由于皮肤的角质层是一种屏障,大多数治疗剂的作用都受到限制,只有少数分子能够到达作用部位。一种名为微针的新型给药系统有助于通过这种途径增强药物的递送,并克服与常规制剂相关的各种问题。其主要原理涉及破坏皮肤层,从而创建微米大小的途径,使药物直接进入表皮或上部真皮区域,药物可以直接进入全身循环,而无需面对屏障。本文综述了微针的各种潜在用途和应用。各种类型的微针都可以像固体、溶解、水凝胶、涂层和空心微针一样进行制造。选择的制造方法取决于微针的类型和材料。该系统已将其应用扩展到许多领域,如寡核苷酸递药、疫苗递药、胰岛素递药,甚至在化妆品领域。近年来,许多微针产品已进入市场。尽管在微针成功推向市场之前,还需要做很多研究来克服各种挑战。

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