透皮
材料科学
药物输送
药品
水溶液
渗透
卡比多巴
色谱法
化学
药理学
纳米技术
有机化学
左旋多巴
医学
生物化学
疾病
病理
膜
帕金森病
作者
Emma McAlister,Bridie Dutton,Lalitkumar K. Vora,Li Zhao,Anastasia Ripolin,Dk Siti Zawanah Binti Pg Hj Zahari,Helen L. Quinn,Ismaiel A. Tekko,Aaron J. Courtenay,Stephen A. Kelly,Aoife M. Rodgers,Lilach Steiner,Galit Levin,Etgar Levy‐Nissenbaum,Nava Shterman,Helen O. McCarthy,Ryan F. Donnelly
标识
DOI:10.1002/adhm.202001256
摘要
Abstract Microneedle (MN) patches consist of a hydrogel‐forming MN array and a drug‐containing reservoir. Drug‐containing reservoirs documented in the literature include polymeric films and lyophilized wafers. While effective, both reservoir formulations are aqueous based, and so degradation can occur during formulation and drying for drugs inherently unstable in aqueous media. The preparation and characterization of novel, nonaqueous‐based, directly compressed tablets (DCTs) for use in combination with hydrogel‐forming MN arrays are described for the first time. In this work, a range of drug molecules are investigated. Precipitation of amoxicillin (AMX) and primaquine (PQ) in conventional hydrogel‐forming MN arrays leads to use of poly(vinyl alcohol)‐based MN arrays. Following in vitro permeation studies, in vivo pharmacokinetic studies are conducted in rats with MN patches containing AMX, levodopa/carbidopa (LD/CD), and levofloxacin (LVX). Therapeutically relevant concentrations of AMX (≥2 µg mL −1 ), LD (≥0.5 µg mL −1 ), and LVX (≥0.2 µg mL −1 ) are successfully achieved at 1, 2, and 1 h, respectively. Thus, the use of DCTs offers promise to expand the range of drug molecules that can be delivered transdermally using MN patches.
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