Martin Janik, Rittersberger Rebecca, Treitler Simon, Kopp Patrick, Ibraimi Anit, Koslowski Gabriel, Sickinger Max, Dabbars Annabelle, Schindowski Katharina
Institute of Applied Biotechnology, University of Applied Science Biberach, Hubertus-Liebrecht Strasse 35, 88400 Biberach, Germany.
Faculty of Natural Science, University of Ulm, Albert-Einstein-Allee 11, 89081 Ulm, Germany.
In Vitro Model. 2024 Nov 25;3(4-6):183-203. doi: 10.1007/s44164-024-00079-y. eCollection 2024 Dec.
For optimization of respiratory drug delivery, the selection of suitable in vitro cell models plays an important role in predicting the efficacy and safety of (bio)pharmaceutics and pharmaceutical formulations. Therefore, an in-depth comparison of different primary and permanent in vitro cellular airway models was performed with a focus on selecting a suitable model for inhalative antibodies.
Primary cells isolated from the porcine trachea were compared with the established human cell lines CaLu3 and RPMI 2650. The in vitro models were characterized for different epithelial markers by real-time quantitative polymerase chain reaction, which provides insight into the cellular composition of each model. For a few selected markers, the results from RT-qPCR were confirmed via immunofluorescence. Barrier integrity was assessed by transepithelial electrical resistance measurements and FITC-dextran permeability.
Primary cell models retain key features of the respiratory epithelium, e.g., the formation of a tight epithelial barrier, mucin production, and the presence of club/basal cells. Furthermore, the expression of Fc receptors in the primary cell models closely resembles that in respiratory mucosal tissue, an essential parameter to consider when developing therapeutic antibodies for inhalation.
The study underlines the importance of selecting wisely appropriate in vitro models. Despite the greater effort and variability in cultivating primary airway cells, they are far superior to permanent cells and a suitable model for drug development.
The online version contains supplementary material available at 10.1007/s44164-024-00079-y.
为优化呼吸道药物递送,选择合适的体外细胞模型对于预测(生物)药物制剂和药物配方的疗效和安全性起着重要作用。因此,对不同的原代和永久性体外细胞气道模型进行了深入比较,重点是为吸入性抗体选择合适的模型。
将从猪气管分离的原代细胞与已建立的人细胞系CaLu3和RPMI 2650进行比较。通过实时定量聚合酶链反应对体外模型的不同上皮标志物进行表征,这有助于深入了解每个模型的细胞组成。对于一些选定的标志物,通过免疫荧光证实了RT-qPCR的结果。通过跨上皮电阻测量和FITC-葡聚糖通透性评估屏障完整性。
原代细胞模型保留了呼吸道上皮的关键特征,例如紧密上皮屏障的形成、粘蛋白的产生以及俱乐部/基底细胞的存在。此外,原代细胞模型中Fc受体的表达与呼吸道黏膜组织中的表达非常相似,这是开发吸入性治疗性抗体时需要考虑的一个重要参数。
该研究强调了明智选择合适体外模型的重要性。尽管培养原代气道细胞的工作量更大且存在变异性,但它们远优于永久性细胞,是药物开发的合适模型。
在线版本包含可在10.1007/s44164-024-00079-y获取的补充材料。