3D Culture System for Liver Tissue Mimicking Hepatic Plates for Improvement of Human Hepatocyte (C3A) Function and Polarity

Author:

Jia Zhidong12,Cheng Yuan1,Jiang Xinan13,Zhang Chengyan4,Wang Gaoshang1,Xu Jiecheng1,Li Yang1,Peng Qing1,Gao Yi15ORCID

Affiliation:

1. Department of Hepatobiliary Surgery II, Guangdong Provincial Research Center for Artificial Organ and Tissue Engineering, Guangzhou Clinical Research and Transformation Center for Artificial Liver, Institute of Regenerative Medicine, Zhujiang Hospital, Southern Medical University, Guangzhou, 510280 Guangdong Province, China

2. Guangzhou Overseas Chinese Hospital, The First Affiliated Hospital of Jinan University, 613 W. Huangpu Avenue, Guangzhou 510630, China

3. Department of Urology Surgery, The Affiliated Hospital of Guizhou Medical University, Guiyang, 550004 Guizhou Province, China

4. Clifford Hospital, Guangzhou University of Chinese Medicine, Guangzhou, 511495 Guangdong Province, China

5. State Key Laboratory of Organ Failure Research, Co-Innovation Center for Organ Failure Research, Southern Medical University, Guangzhou, 510515 Guangdong Province, China

Abstract

In vitro 3D hepatocyte culture constitutes a core aspect of liver tissue engineering. However, conventional 3D cultures are unable to maintain hepatocyte polarity, functional phenotype, or viability. Here, we employed microfluidic chip technology combined with natural alginate hydrogels to construct 3D liver tissues mimicking hepatic plates. We comprehensively evaluated cultured hepatocyte viability, function, and polarity. Transcriptome sequencing was used to analyze changes in hepatocyte polarity pathways. The data indicate that, as culture duration increases, the viability, function, polarity, mRNA expression, and ultrastructure of the hepatic plate mimetic 3D hepatocytes are enhanced. Furthermore, hepatic plate mimetic 3D cultures can promote changes in the bile secretion pathway via effector mechanisms associated with nuclear receptors, bile uptake, and efflux transporters. This study provides a scientific basis and strong evidence for the physiological structures of bionic livers prepared using 3D cultures. The systems and cultured liver tissues described here may serve as a better in vitro 3D culture platform and basic unit for varied applications, including drug development, hepatocyte polarity research, bioartificial liver bioreactor design, and tissue and organ construction for liver tissue engineering or cholestatic liver injury.

Funder

Guangzhou Science and Technology Program key projects

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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