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经氢氟烷烃定量气雾剂喷雾递送至人体皮肤的局部皮质类固醇。

Topical corticosteroid delivery into human skin using hydrofluoroalkane metered dose aerosol sprays.

机构信息

Institute of Pharmaceutical Science, King's College, London, 150 Stamford Street, London SE1 9NH, United Kingdom.

出版信息

Int J Pharm. 2013 Aug 16;452(1-2):157-65. doi: 10.1016/j.ijpharm.2013.04.083. Epub 2013 May 14.

Abstract

Drug loaded hydrofluoroalkane (HFA) sprays can generate effective pharmaceutical formulations, but a deeper understanding of the manner in which these dynamic systems drive the process of in situ semi-solid dosage form assembly is required. The aim of this study was to investigate the effect of the matrix assembly and composition on drug localisation in human skin. Comparing the characteristics of sprays constituting HFA 134a, ethanol (EtOH), poly(vinyl pyrrolidone) K90, isopropyl myristate (IPM), and poly(ethylene glycol) (PEG) demonstrated that the addition of non-volatile solvents acted to delay EtOH evaporation, control the degree of drug saturation (DS) and enhance the corticosteroid delivery from HFA spray formulations. In a dose matched skin penetration study the HFA sprays containing only EtOH as a co-solvent delivered 2.1 μg BMV (DS 13.5) into the tissue, adding IPM to the EtOH HFA delivered 4.03 μg BMV (DS 11.2), whist adding PEG to the EtOH HFA delivered 6.1 μg BMV (DS 0.3). Compared to commercial cream (delivering 0.91 μg BMV) the EtOH/PEG HFA spray deposited over 6 times (p<0.05) more drug into the skin. Post spray deposition characterisation of the semi-solid suggested that the superior performance of the EtOH/PEG HFA spray was a consequence of retarding EtOH evaporation and presenting the drug in an EtOH rich PEG residual phase, which promoted BMV passage through the SC and into epidermis.

摘要

载药氢氟烷烃(HFA)喷雾剂可以生成有效的药物制剂,但需要更深入地了解这些动态系统驱动原位半固体制剂组装过程的方式。本研究旨在研究基质组装和组成对药物在人体皮肤中定位的影响。比较构成 HFA 134a、乙醇(EtOH)、聚乙烯吡咯烷酮 K90、肉豆蔻异丙酯(IPM)和聚乙二醇(PEG)的喷雾剂的特性表明,添加非挥发性溶剂可延迟 EtOH 蒸发,控制药物饱和度(DS)并增强皮质类固醇从 HFA 喷雾制剂中的传递。在剂量匹配的皮肤渗透研究中,仅含有 EtOH 作为共溶剂的 HFA 喷雾剂将 2.1μg BMV(DS 13.5)递送到组织中,向 EtOH HFA 中添加 IPM 可递送 4.03μg BMV(DS 11.2),而向 EtOH HFA 中添加 PEG 可递送 6.1μg BMV(DS 0.3)。与商业乳膏(递送 0.91μg BMV)相比,EtOH/PEG HFA 喷雾剂沉积到皮肤中的药物多 6 倍(p<0.05)。半固体喷雾后的沉积特性表明,EtOH/PEG HFA 喷雾的优异性能是由于延迟 EtOH 蒸发并将药物呈现在富含 EtOH 的 PEG 残留相中,这促进了 BMV 通过 SC 并进入表皮。

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