Division of Drug Delivery Technology, Leiden/Amsterdam Center for Drug Research (LACDR), Leiden University, PO Box 2300 RA, Leiden, The Netherlands.
J Control Release. 2012 Jul 20;161(2):645-55. doi: 10.1016/j.jconrel.2012.01.042. Epub 2012 Feb 4.
Microneedles have been used for the dermal and transdermal delivery of a broad range of drugs, such as small molecular weight drugs, oligonucleotides, DNA, peptides, proteins and inactivated viruses. However, until now there are no microneedle-based (trans)dermal drug delivery systems on the market. In the past decade various types of microneedles have been developed by a number of production processes. Numerous geometries of microneedles have been designed from various materials. These microneedles have been used for different approaches of microneedle-based (trans)dermal drug delivery. Following a brief introduction about dermal and transdermal drug delivery, this review describes different production methods for solid and hollow microneedles as well as conditions that influence skin penetration. Besides, the four microneedle-based (trans)dermal drug delivery approaches are discussed: "poke and flow", "poke and patch", "poke and release", and "coat and poke". A separate section of this review is devoted to the use of microneedles for the delivery of therapeutic proteins and vaccines. Finally, we give our view on research and development that is needed to render microneedle-based (trans)dermal drug delivery technologies clinically useful in the near future.
微针已被用于多种药物的经皮和透皮给药,如小分子药物、寡核苷酸、DNA、肽、蛋白质和失活病毒。然而,直到现在,市场上还没有基于微针的(经皮)药物输送系统。在过去的十年中,通过多种生产工艺开发了各种类型的微针。从各种材料设计了许多不同几何形状的微针。这些微针已被用于基于微针的(经皮)药物输送的不同方法。在简要介绍经皮和透皮药物输送之后,本综述描述了实心和空心微针的不同生产方法以及影响皮肤穿透的条件。此外,还讨论了基于微针的(经皮)药物输送的四种方法:“戳破和流动”、“戳破和贴附”、“戳破和释放”以及“涂层和戳破”。本综述的一个单独部分专门讨论了微针在治疗性蛋白质和疫苗传递中的应用。最后,我们对未来实现基于微针的(经皮)药物输送技术在临床上的应用所需的研究和开发提出了看法。