Ripolin Anastasia, Quinn James, Larrañeta Eneko, Vicente-Perez Eva Maria, Barry Johanne, Donnelly Ryan F
School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.
School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.
Int J Pharm. 2017 Apr 15;521(1-2):92-101. doi: 10.1016/j.ijpharm.2017.02.011. Epub 2017 Feb 16.
We describe, for the first time, the design, production and evaluation of large microneedle patches. Such systems, based on 16 individual microneedle arrays (needle height 600μm), were prepared from aqueous blends of 15% w/w Gantrez S97 and 7.5% w/w poly(ethyleneglycol) 10,000Da. Ester-based crosslinking was confirmed by FTIR and mechanical strength was good. Insertion depths in a validated skin model were approximately 500μm. Ten human volunteers successfully self-inserted the microneedles of these larger patches in their skin, following appropriate instruction, as confirmed by transepidermal water loss measurements. The mean insertion depth ranged between 300 and 450μm over the area of the large patches. That this was not significantly different to a single unit MN patch self-applied by the same volunteers is encouraging. Microneedle patch sizes much larger than the 1-2cm will be required if this technology is to be successfully translated to clinic for delivery of drug substances. The work described here suggests that use of such larger patches by patients can be successful, potentially opening up the possibility for a significant expansion of the size of the market for transdermal drug delivery.
我们首次描述了大型微针贴片的设计、生产和评估。此类系统基于16个独立的微针阵列(针高600μm),由15% w/w的甘膦S97和7.5% w/w的聚乙二醇10,000Da的水性混合物制备而成。通过傅里叶变换红外光谱(FTIR)证实了酯基交联,且机械强度良好。在经过验证的皮肤模型中的插入深度约为500μm。经表皮水分流失测量证实,十名人类志愿者在接受适当指导后成功地将这些较大贴片的微针自行插入皮肤。在大型贴片区域内,平均插入深度在300至450μm之间。这与同一志愿者自行使用的单个单元微针贴片相比无显著差异,这令人鼓舞。如果该技术要成功转化为临床用于药物递送,将需要比1 - 2厘米大得多的微针贴片尺寸。此处所述的工作表明患者使用此类较大贴片可能会成功,这有可能为透皮药物递送市场规模的显著扩大开辟可能性。