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Ultrathin Porated Elastic Hydrogels As a Biomimetic Basement Membrane for Dual Cell Culture
Published on: December 26, 2017
A novel polymer planar biomimetic membrane with self-differentiating intestinal-like structural for drug permeability
Weishuo Ju1, Ran Zhang1, Jingxuan Guo1
1Department of Pharmacy, School of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology, Shijiazhuang , China.
Abstract:
Accurately and efficiently assessing drug permeability has emerged as a critical challenge in early drug discovery and development, prompting the development of various models. In this study, a polymer planar biomimetic membrane permeation assay (PPBMPA) model was established using a Transwell chamber, and its permeability assessment capability was evaluated using model drugs with high, medium, and low permeability. The underlying permeation mechanism was also investigated. The results demonstrated that the biomimetic membrane spontaneously differentiated into an intestinal-like structure comprising a hydrated layer, a polymersome layer, and a basal layer, thereby mimicking the sequential process of drug permeation across the mucus layer, intestinal epithelium, interstitial space, and into the bloodstream. This highly biomimetic permeation pattern enabled effective differentiation between high and low absorption drugs, exhibiting a strong correlation with Caco-2 permeability (R2 = 0.85). Collectively, these findings suggest that the novel PPBMPA model holds promise as a reliable tool for rapid and reproducible drug permeability prediction.
