Lee Jeong Woo, Han Mee-Ree, Park Jung-Hwan
a School of Chemical and Biomolecular Engineering, Georgia Institute of Technology , Atlanta, GA 30332, USA.
b Department of BioNano Technology and Gachon BioNano Research Institute, Gachon University , Seongnam, Gyeonggi-Do, Republic of Korea.
J Drug Target. 2013 Apr;21(3):211-223. doi: 10.3109/1061186X.2012.741136. Epub 2012 Nov 20.
A microneedle system has been developed to deliver chemical and biological agents through the stratum corneum, which is the main barrier to drug delivery. Recently, microneedles have been fabricated from various kinds of polymers, including biocompatible polymer, biodegradable polymer, and water-soluble polymer. Polymer microneedles offer the benefits of ease of fabrication, cost-effectiveness, and mass production, as well as controlled drug release using the water solubility and degradation properties of polymer. In this review, the key features of polymer microneedles are discussed, including fabrication, materials, mechanical properties, drug delivery properties, and applications. Polymer microneedles provide a promising method for transdermal drug delivery by utilizing various physical and chemical properties of polymer.
一种微针系统已被开发出来,用于通过角质层递送化学和生物制剂,角质层是药物递送的主要屏障。最近,微针已由各种聚合物制成,包括生物相容性聚合物、可生物降解聚合物和水溶性聚合物。聚合物微针具有易于制造、成本效益高、可大规模生产的优点,以及利用聚合物的水溶性和降解特性实现药物控释的优点。在这篇综述中,讨论了聚合物微针的关键特性,包括制造、材料、机械性能、药物递送性能和应用。聚合物微针通过利用聚合物的各种物理和化学性质,为透皮给药提供了一种有前景的方法。