Gastrointestinal synthetic epithelial linings

医学 生物 计算生物学
作者
Junwei Li,Thomas J. Wang,Ameya R. Kirtane,Yunhua Shi,Alexis Jones,Zaina L. Moussa,Aaron Lopes,Joy Collins,Siddartha Tamang,Kaitlyn Hess,Rameen Shakur,Paramesh Karandikar,Jung Seung Lee,Hen‐Wei Huang,Alison Hayward,Giovanni Traverso
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:12 (558) 被引量:68
标识
DOI:10.1126/scitranslmed.abc0441
摘要

Epithelial tissues line the organs of the body, providing an initial protective barrier as well as a surface for nutrient and drug absorption. Here, we identified enzymatic components present in the gastrointestinal epithelium that can serve as selective means for tissue-directed polymerization. We focused on the small intestine, given its role in drug and nutrient absorption and identified catalase as an essential enzyme with the potential to catalyze polymerization and growth of synthetic biomaterial layers. We demonstrated that the polymerization of dopamine by catalase yields strong tissue adhesion. We characterized the mechanism and specificity of the polymerization in segments of the gastrointestinal tracts of pigs and humans ex vivo. Moreover, we demonstrated proof of concept for application of these gastrointestinal synthetic epithelial linings for drug delivery, enzymatic immobilization for digestive supplementation, and nutritional modulation through transient barrier formation in pigs. This catalase-based approach to in situ biomaterial generation may have broad indications for gastrointestinal applications.
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