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Novel hybrid three-dimensional artificial liver using human induced pluripotent stem cells and a rat decellularized liver scaffold.


ABSTRACT:

Introduction

Liver transplantation is currently the only curative therapy for end-stage liver failure; however, establishment of alternative treatments is required owing to the serious donor organ shortage. Here, we propose a novel model of hybrid three-dimensional artificial livers using both human induced pluripotent stem cells (hiPSCs) and a rat decellularized liver serving as a scaffold.

Methods

Rat liver harvesting and decellularization were performed as reported in our previous studies. The decellularized liver scaffold was recellularized with hiPSC-derived hepatocyte-like cells (hiPSC-HLCs) through the biliary duct. The recellularized liver graft was continuously perfused with the culture medium using a pump at a flow rate of 0.5 mL/min in a standard CO2 (5%) cell incubator at 37 °C.

Results

After 48 h of continuous perfusion culture, the hiPSC-HLCs of the recellularized liver distributed into the parenchymal space. Furthermore, the recellularized liver expressed the albumin (ALB) and CYP3A4 genes, and secreted human ALB into the culture medium.

Conclusion

Novel hybrid artificial livers using hiPSCs and rat decellularized liver scaffolds were successfully generated, which possessed human hepatic functions.

SUBMITTER: Minami T 

PROVIDER: S-EPMC6477477 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Publications

Novel hybrid three-dimensional artificial liver using human induced pluripotent stem cells and a rat decellularized liver scaffold.

Minami Takahito T   Ishii Takamichi T   Yasuchika Kentaro K   Fukumitsu Ken K   Ogiso Satoshi S   Miyauchi Yuya Y   Kojima Hidenobu H   Kawai Takayuki T   Yamaoka Ryoya R   Oshima Yu Y   Kawamoto Hiroshi H   Kotaka Maki M   Yasuda Katsutaro K   Osafune Kenji K   Uemoto Shinji S  

Regenerative therapy 20190330


<h4>Introduction</h4>Liver transplantation is currently the only curative therapy for end-stage liver failure; however, establishment of alternative treatments is required owing to the serious donor organ shortage. Here, we propose a novel model of hybrid three-dimensional artificial livers using both human induced pluripotent stem cells (hiPSCs) and a rat decellularized liver serving as a scaffold.<h4>Methods</h4>Rat liver harvesting and decellularization were performed as reported in our previ  ...[more]

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