Bioengineered bile ducts recapitulate key cholangiocyte functions

Publication date

2018-06-12

Authors

Chen, Chen
Jochems, Paulus G MISNI 0000000492896325
Salz, Lucia
Schneeberger-Verjaal, KerstinISNI 0000000492920436
Penning, L.C.ISNI 000000039077188X
van de Graaf, Stan F J
Beuers, Ulrich
Clevers, HansORCID 0000-0002-3077-5582ISNI 0000000043961208
Geijsen, NielsISNI 0000000396192432
Masereeuw, RosalindeORCID 0000-0002-1560-1074ISNI 0000000369326917

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Advisors

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Document Type

Article
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License

taverne

Abstract

Investigation of diseases of the bile duct system and identification of potential therapeutic targets are hampered by the lack of tractable in vitro systems to model cholangiocyte biology. Here, we show a step-wise method for the differentiation of murine Lgr5+ liver stem cells (organoids) into cholangiocyte-like cells (CLCs) using a combination of growth factors and extracellular matrix components. Organoid-derived CLCs display key properties of primary cholangiocytes, such as expressing cholangiocyte markers, forming primary cilia, transporting small molecules and responding to farnesoid X receptor (FXR) agonist. Integration of organoid-derived cholangiocytes with collagen-coated polyethersulfone hollow fiber membranes (HFM) yielded bioengineered bile ducts that morphologically resembled native bile ducts and possessed polarized bile acid transport activity. As such, we present a novel in vitro model for studying and therapeutically modulating cholangiocyte function.

Keywords

liver organoid, cholangiocyte, bioengineered bile duct, bile acid transport, Taverne

Citation

Chen, C, Jochems, P, Salz, L, Schneeberger, K, Penning, L C, van de Graaf, S F J, Beuers, U, Clevers, H, Geijsen, N, Masereeuw, R & Spee, B 2018, 'Bioengineered bile ducts recapitulate key cholangiocyte functions', Biofabrication, vol. 10, no. 3, 034103. https://doi.org/10.1088/1758-5090/aac8fd