Ameri Mahmoud, Lewis Hayley, Lehman Paul
Zosano Pharma, 34790 Ardentech Court, Fremont, CA 94555, USA.
QPS LLC, Dermal and Transdermal Research Laboratory, 4837 Amber Valley Parkway, Fargo, ND 58104, USA.
J Pharm (Cairo). 2018 Jun 3;2018:7459124. doi: 10.1155/2018/7459124. eCollection 2018.
Franz cell studies, utilizing different human skin and an artificial membrane, evaluating the influence of skin model on permeation of zolmitriptan coated on an array of titanium microprojections, were evaluated. Full thickness and dermatomed human skin, as well as a synthetic hydrophobic membrane (Strat-M®), were assessed. It was found that the choice of model demonstrated different absorption kinetics for the permeation of zolmitriptan. For the synthetic membrane only 11% of the zolmitriptan coated dose permeated into the receptor media, whilst for the dermatomed skin 85% permeated into the receptor. The permeation of zolmitriptan through full thickness skin had a significantly different absorption profile and time to maximum flux in comparison to the dermatomed skin and synthetic model. On the basis of these results dermatomed skin may be a better estimate of performance of drug-coated metallic microprojections.
对利用不同人类皮肤和人工膜的弗兰兹细胞研究进行了评估,该研究评估了皮肤模型对涂覆在一系列钛微突上的佐米曲普坦渗透的影响。评估了全层和分层的人类皮肤以及一种合成疏水膜(Strat-M®)。结果发现,模型的选择显示出佐米曲普坦渗透的不同吸收动力学。对于合成膜,仅11%的涂覆佐米曲普坦剂量渗透到受体介质中,而对于分层皮肤,85%渗透到受体中。与分层皮肤和合成模型相比,佐米曲普坦透过全层皮肤的吸收曲线和达到最大通量的时间有显著差异。基于这些结果,分层皮肤可能是药物涂层金属微突性能的更好评估模型。