Kathuria Himanshu, Kochhar Jaspreet S, Kang Lifeng
Department of Pharmacy, National University of Singapore, Singapore 117543, Singapore.
Procter & Gamble, 70 Biopolis Street, Singapore 138547, Singapore.
Ther Deliv. 2018 Jul;9(7):489-492. doi: 10.4155/tde-2018-0012.
Delivering therapeutics in a painless manner is one of the many objectives for the treatment of clinical conditions. Micro and nanoneedles are small-scale devices that can help overcome the resistance encountered during drug diffusion by creating conduits of small dimensions through biomembranes. Microneedles for drug delivery applications were manually produced until the 1990s and after this the high precision technology from the semiconductor industry was adopted for their production [ 1 ]. Over the last decade or so, microneedles for transdermal applications have been widely studied. Currently, microneedle patches, mainly based on hyaluronates, are available over the counter for cosmetic applications. On the other hand, nanoneedles are used in atomic force microscopy, which has been explored for drug delivery and biosensing over the last two decades [ 2 , 3 ]. Micro and nanoneedle-based biosensing also poses potential for environment-responsive drug delivery. In this article, the current research, clinical studies and future perspectives of micro and nanoneedle-based systems are discussed for drug delivery and biosensing applications.
以无痛方式递送治疗药物是临床疾病治疗的众多目标之一。微针和纳米针是小型装置,它们可以通过在生物膜中创建小尺寸的通道来帮助克服药物扩散过程中遇到的阻力。用于药物递送应用的微针在20世纪90年代之前都是手工制作的,在此之后,半导体行业的高精度技术被用于其生产[1]。在过去十年左右的时间里,用于透皮应用的微针得到了广泛研究。目前,主要基于透明质酸盐的微针贴片在柜台可买到用于美容应用。另一方面,纳米针用于原子力显微镜,在过去二十年中已被探索用于药物递送和生物传感[2,3]。基于微针和纳米针的生物传感在环境响应性药物递送方面也具有潜力。在本文中,将讨论基于微针和纳米针的系统在药物递送和生物传感应用方面的当前研究、临床研究及未来前景。