Cholangiocyte organoids to study drug-induced injury

Publication date

2024-03-13

Authors

Wang, ZhenguoISNI 0000000512658747
Xing, Chen
Laan, Luc J. W. van der
Verstegen, Monique M. A.
Spee, BORCID 0000-0002-8114-0560ISNI 0000000395759855
Masereeuw, RosalindeORCID 0000-0002-1560-1074ISNI 0000000369326917

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Advisors

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Document Type

Article
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cc_by

Abstract

Background: Drug induced bile duct injury is a frequently observed clinical problem leading to a wide range of pathological features. During the past decades, several agents have been identified with various postulated mechanisms of bile duct damage, however, mostly still poorly understood. Methods: Here, we investigated the mechanisms of chlorpromazine (CPZ) induced bile duct injury using advanced in vitro cholangiocyte cultures. Intrahepatic cholangiocyte organoids (ICOs) were driven into mature cholangiocyte like cells (CLCs), which were exposed to CPZ under cholestatic or non-cholestatic conditions through the addition of a bile acid cocktail. Results: CPZ caused loss of monolayer integrity by reducing expression levels of tight junction protein 1 (TJP1), E-cadherin 1 (CDH1) and lysyl oxidase homolog 2 (LOXL2). Loss of zonula occuludens-1 (ZO-1) and E-cadherin was confirmed by immunostaining after exposure to CPZ and rhodamine-123 leakage further confirmed disruption of the cholangiocyte barrier function. Furthermore, oxidative stress seemed to play a major role in the early damage response by CPZ. The drug also decreased expression of three main basolateral bile acid transporters, ABCC3 (ATP binding cassette subfamily C member 3), SLC51A/B (solute carrier family 51 subunit alpha/beta) and multidrug resistance transporter ABCB1 (ATP binding cassette subfamily B member 1), thereby contributing to bile acid accumulation. CPZ did not induce an inflammatory response by itself, but addition of TNFα revealed a synergistic effect. Conclusion: These results show that ICOs present a model to identify toxic drugs affecting the bile ducts while providing mechanistic insights into hepatotoxicity.

Keywords

Advanced in vitro model, Barrier disruption, Bile acid, Chlorpromazine, Cholangiocytes, Drug induced bile duct injury, Intrahepatic cholangiocyte organoids, Transporter, Molecular Medicine, Biochemistry, Genetics and Molecular Biology (miscellaneous), Medicine (miscellaneous), Cell Biology

Citation

Wang, Z, Xing, C, Laan, L J W V D, Verstegen, M M A, Spee, B & Masereeuw, R 2024, 'Cholangiocyte organoids to study drug-induced injury', Stem cell research & therapy, vol. 15, no. 1, 78, pp. 1-15. https://doi.org/10.1186/s13287-024-03692-6