Literature DB >> 33000764

Flow enhances phenotypic and maturation of adult rat liver organoids.

Da Jung Jung1, Jae Hee Byeon, Gi Seok Jeong.   

Abstract

A biologically relevant in vitro model of hepatic microtissue would be a valuable tool for the preclinical study of pharmacokinetics and metabolism. Although considerable advances have been made in recent years in the establishment of alternative in vitro culture systems that mimic liver tissue, generating an effective liver model remains challenging. Specifically, existing model systems still exhibit limited functions for hepatocellular differentiation potential and cellular complexity. It is essential to improve the in vitro differentiation of liver progenitor cells (LPCs) for disease modeling and preclinical pharmatoxicological research. Here, we describe a rat liver organoid culture system under in vivo-like steady-state flow conditions; this system is capable of controlling the expansion and differentiation of rat liver organoids over 10-15 d. LPCs cultured in medium flow conditions become self-assembled liver organoids that exhibit phenotypic and functional hepato-biliary modeling. In addition, hepatocytes that are differentiated using liver organoids produced albumin and maintained polygonal morphology, which is characteristic of mature hepatocytes.

Entities:  

Year:  2020        PMID: 33000764     DOI: 10.1088/1758-5090/abb538

Source DB:  PubMed          Journal:  Biofabrication        ISSN: 1758-5082            Impact factor:   9.954


  2 in total

1.  Generation of functional fat organoid from rat superficial fascia.

Authors:  Yanfei Zhang; Yuanyuan Zhang; Yingyue Dong; Tongsheng Chen; Guoheng Xu
Journal:  Adipocyte       Date:  2022-05-12       Impact factor: 3.553

2.  Establishing a 3D In Vitro Hepatic Model Mimicking Physiologically Relevant to In Vivo State.

Authors:  Hyun Kyoung Kang; Madina Sarsenova; Da-Hyun Kim; Min Soo Kim; Jin Young Lee; Eun-Ah Sung; Myung Geun Kook; Nam Gyo Kim; Soon Won Choi; Vyacheslav Ogay; Kyung-Sun Kang
Journal:  Cells       Date:  2021-05-20       Impact factor: 6.600

  2 in total

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