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Updated: Aug 8, 2025

Using Human Induced Pluripotent Stem Cell-derived Hepatocyte-like Cells for Drug Discovery
Published on: May 19, 2018
Small molecule drugs promote repopulation of transplanted hepatocytes by stimulating cell dedifferentiation
Mengmeng Jiang1,2,3, Ren Guo2, Yan Ai4
1School of Life Science and Technology, Shanghai Tech University, Shanghai 201210, China.
Background & Aims:
Hepatocyte transplantation has emerged as a possible treatment option for end-stage liver disease. However, an important obstacle to therapeutic success is the low level of engraftment and proliferation of transplanted hepatocytes, which do not survive long enough to exert therapeutic effects. Thus, we aimed to explore the mechanisms of hepatocyte proliferation in vivo and find a way to promote the growth of transplanted hepatocytes.
Methods:
Hepatocyte transplantation was performed in Fah -/- mice to explore the mechanisms of hepatocyte proliferation in vivo. Guided by in vivo regeneration mechanisms, we identified compounds that promote hepatocyte proliferation in vitro. The in vivo effects of these compounds on transplanted hepatocytes were then evaluated.
Results:
The transplanted mature hepatocytes were found to dedifferentiate into hepatic progenitor cells (HPCs), which proliferate and then convert back to a mature state at the completion of liver repopulation. The combination of two small molecules Y-27632 (Y, ROCK inhibitor) and CHIR99021 (C, Wnt agonist) could convert mouse primary hepatocytes into HPCs, which could be passaged for more than 30 passages in vitro. Moreover, YC could stimulate the proliferation of transplanted hepatocytes in Fah -/- livers by promoting their conversion into HPCs. Netarsudil (N) and LY2090314 (L), two clinically used drugs which target the same pathways as YC, could also promote hepatocyte proliferation in vitro and in vivo, by facilitating HPC conversion.
Conclusions:
Our work suggests drugs promoting hepatocyte dedifferentiation may facilitate the growth of transplanted hepatocytes in vivo and may facilitate the application of hepatocyte therapy.
Impact And Implications:
Hepatocyte transplantation may be a treatment option for patients with end-stage liver disease. However, one important obstacle to hepatocyte therapy is the low level of engraftment and proliferation of the transplanted hepatocytes. Herein, we show that small molecule compounds which promote hepatocyte proliferation in vitro by facilitating dedifferentiation, could promote the growth of transplanted hepatocytes in vivo and may facilitate the application of hepatocyte therapy.
Insights
Promoting hepatocyte dedifferentiation with specific small molecules enhances transplanted cell growth. This breakthrough could significantly advance hepatocyte therapy for liver diseases.
Area of Science:
- Hepatology
- Regenerative Medicine
- Drug Discovery
Background:
- Hepatocyte transplantation shows promise for end-stage liver disease.
- Limited engraftment and proliferation of transplanted hepatocytes hinder therapeutic success.
- Understanding hepatocyte proliferation mechanisms is crucial for improving transplantation outcomes.
Purpose of the Study:
- To investigate in vivo hepatocyte proliferation mechanisms.
- To identify compounds that promote transplanted hepatocyte growth.
- To explore therapeutic strategies for enhancing hepatocyte transplantation efficacy.
Main Methods:
- Hepatocyte transplantation in Fah–/– mice to study in vivo regeneration.
- Identification of proliferation-promoting compounds using in vitro assays guided by in vivo data.
- Evaluation of compound efficacy on transplanted hepatocyte proliferation in vivo.
Main Results:
- Transplanted hepatocytes dedifferentiate into hepatic progenitor cells (HPCs), proliferate, and redifferentiate.
- A combination of Y-27632 (ROCK inhibitor) and CHIR99021 (Wnt agonist) induced HPC conversion in vitro and in vivo.
- Clinically relevant drugs Netarsudil and LY2090314 also promoted hepatocyte proliferation by facilitating HPC conversion.
Conclusions:
- Drugs that promote hepatocyte dedifferentiation can enhance transplanted hepatocyte proliferation in vivo.
- This approach may overcome major obstacles in hepatocyte therapy.
- Findings pave the way for improved clinical applications of hepatocyte transplantation.
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