DUCT reveals architectural mechanisms contributing to bile duct recovery in a mouse model for Alagille syndrome

DUCT 揭示了 Alagille 综合征小鼠模型中有助于胆管恢复的结构机制

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作者:Simona Hankeova #, Jakub Salplachta #, Tomas Zikmund #, Michaela Kavkova #, Noémi Van Hul #, Adam Brinek, Veronika Smekalova, Jakub Laznovsky, Feven Dawit, Josef Jaros, Vítězslav Bryja, Urban Lendahl, Ewa Ellis, Antal Nemeth, Björn Fischler, Edouard Hannezo, Jozef Kaiser, Emma Rachel Andersson

Abstract

Organ function depends on tissues adopting the correct architecture. However, insights into organ architecture are currently hampered by an absence of standardized quantitative 3D analysis. We aimed to develop a robust technology to visualize, digitalize, and segment the architecture of two tubular systems in 3D: double resin casting micro computed tomography (DUCT). As proof of principle, we applied DUCT to a mouse model for Alagille syndrome (Jag1Ndr/Ndr mice), characterized by intrahepatic bile duct paucity, that can spontaneously generate a biliary system in adulthood. DUCT identified increased central biliary branching and peripheral bile duct tortuosity as two compensatory processes occurring in distinct regions of Jag1Ndr/Ndr liver, leading to full reconstitution of wild-type biliary volume and phenotypic recovery. DUCT is thus a powerful new technology for 3D analysis, which can reveal novel phenotypes and provide a standardized method of defining liver architecture in mouse models.

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