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        Evaluation of layers of the rat airway epithelial cell line RL-65 for permeability screening of inhaled drug candidates.

        Author
        Hutter, Victoria
        Hilgendorf, Constanze
        Cooper, Anne
        Zann, Vanessa
        Pritchard, David
        Bosquillon, Cynthia
        Attention
        2299/9566
        Abstract
        A rat respiratory epithelial cell culture system for in vitro prediction of drug pulmonary absorption is currently lacking. Such a model may however enhance the understanding of interspecies differences in inhaled drug pharmacokinetics by filling the gap between human in vitro and rat in/ex vivo drug permeability screens. The rat airway epithelial cell line RL-65 was cultured on Transwell® inserts for up to 21days at an air-liquid (AL) interface and cell layers were evaluated for their suitability as a drug permeability measurement tool. These layers were found to be morphologically representative of the bronchial/bronchiolar epithelium when cultured for 8days in a defined serum-free medium. In addition, RL-65 layers developed epithelial barrier properties with a transepithelial electrical resistance (TEER) >300Ωcm(2) and apparent (14)C-mannitol permeability (P(app)) values between 0.5-3.0×10(-6)cm/s; i.e., in the same range as established in vitro human bronchial epithelial absorption models. Expression of P-glycoprotein was confirmed by gene analysis and immunohistochemistry. Nevertheless, no vectorial transport of the established substrates (3)H-digoxin and Rhodamine123 was observed across the layers. Although preliminary, this study shows RL-65 cell layers have the potential to become a useful in vitro screening tool in the pre-clinical development of inhaled drug candidates.
        Publication date
        2012-09-29
        Published in
        European Journal of Pharmaceutical Sciences
        Published version
        https://doi.org/10.1016/j.ejps.2012.07.007
        Other links
        http://hdl.handle.net/2299/9566
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