Schaller-Ammann Roland, Kreß Sebastian, Feiel Jürgen, Schwagerle Gerd, Priedl Joachim, Birngruber Thomas, Kasper Cornelia, Egger Dominik
Health-Institute for Biomedicine and Health Sciences, Joanneum Research Forschungsgesellschaft mbH, Neue Stiftingtalstrasse 2, 8010 Graz, Austria.
Institute of Cell and Tissue Culture Technologies, Department of Biotechnology, University of Natural, Resources and Life Sciences, Vienna, Muthgasse 18, 1190 Vienna, Austria.
Pharmaceutics. 2022 Jul 8;14(7):1436. doi: 10.3390/pharmaceutics14071436.
Skin equivalents and skin explants are widely used for dermal penetration studies in the pharmacological development of drugs. Environmental parameters, such as the incubation and culture conditions affect cellular responses and thus the relevance of the experimental outcome. However, available systems such as the Franz diffusion chamber, only measure in the receiving culture medium, rather than assessing the actual conditions for cells in the tissue. We developed a sampling design that combines open flow microperfusion (OFM) sampling technology for continuous concentration measurements directly in the tissue with microfluidic biosensors for online monitoring of culture parameters. We tested our design with real-time measurements of oxygen, glucose, lactate, and pH in full-thickness skin equivalent and skin explants. Furthermore, we compared dermal penetration for acyclovir, lidocaine, and diclofenac in skin equivalents and skin explants. We observed differences in oxygen, glucose, and drug concentrations in skin equivalents compared to the respective culture medium and to skin explants.
皮肤等效物和皮肤外植体在药物的药理学开发中被广泛用于皮肤渗透研究。环境参数,如孵育和培养条件,会影响细胞反应,进而影响实验结果的相关性。然而,现有的系统,如弗兰兹扩散池,仅在接收培养基中进行测量,而不是评估组织中细胞的实际状况。我们开发了一种采样设计,将用于在组织中直接进行连续浓度测量的开放流微灌注(OFM)采样技术与用于在线监测培养参数的微流控生物传感器相结合。我们通过对全层皮肤等效物和皮肤外植体中的氧气、葡萄糖、乳酸和pH进行实时测量来测试我们的设计。此外,我们比较了阿昔洛韦、利多卡因和双氯芬酸在皮肤等效物和皮肤外植体中的皮肤渗透情况。我们观察到,与各自的培养基以及皮肤外植体相比,皮肤等效物中的氧气、葡萄糖和药物浓度存在差异。