微流控
细胞生物学
芯片上器官
上皮
细胞外基质
微流控芯片
体外
纳米技术
肠上皮
生物
膜
化学
材料科学
生物化学
遗传学
作者
Kinga Kosim,Iris Schilt,Henriëtte L. Lanz,Paul Vulto,Dorota Kurek
标识
DOI:10.1007/978-1-0716-1693-2_6
摘要
The study of epithelial barrier properties in the human body is of paramount interest to a range of disciplines, including disease modeling, drug transport studies, toxicology, developmental biology, and regenerative biology. Current day in vitro studies largely rely on growing epithelial cells in a static environment on membrane cell culture inserts. With the advancement of microfluidic and organ-on-a-chip techniques it became possible to culture 3D intestinal tubules directly against an extracellular matrix (ECM) under flow and without the need for artificial membranes. Here we describe detailed protocols for culturing epithelial tubules in a high-throughput format, assessing their permeability and marker expression. The platform harbors 40 independent microfluidic chips in a microtiter plate format. The resulting 40 epithelial tubules are analyzed in parallel using a high-content microscopy. Protocols described here allow for adoption and routine application of microfluidic techniques by nonspecialized end-users.
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