Differences of 3D and Mixed 2D and 3D Culture in the Generation of Human iPSC‐Derived Hepatocytes

ABSTRACT Hepatocytes are cells of the hepatic parenchyma that perform a series of essential functions, representing about 80% of its mass. Due to their importance, the use of hepatocytes has gained prominence in scientific research, mainly in the prediction of hepatotoxic drugs. As primary hepatocyte culture presents limitations, human induced pluripotent stem cells (hiPSC) have been used as a promising alternative. However, the differences between 2D and 3D culture during the differentiation of iPSCs into hepatocytes is limitedly explored. In this context, this study compared the differentiation of hepatocytes‐like (iHep) from hiPSC in two‐dimensional (iHep‐2D), three‐dimensional (iHep‐3D) and mixed (iHep 2D‐3D) cultures to evaluate their impact on the acquisition of hepatocyte‐like characteristics. After 2D differentiation, transcriptomic analysis revealed that iHep‐2D has a gene profile very similar to that of primary human hepatocytes, demonstrating that this could be a valuable protocol to use as a starting point for iHep 2D‐3D differentiation. The cells were also evaluated for the presence of hepatocyte‐associated markers by immunofluorescence and our results showed that, although all three cultures generated iHep cells that were able to express specific hepatocyte markers, the iHep 2D‐3D differentiation generated cells displaying a more pronounced hepatocyte‐like phenotype, based on Albumin and CYP3A4 expression. Therefore, in this study we suggest that combining 2D and 3D differentiation may promote a more pronounced hepatocyte‐like phenotype in iHeps derived from human iPSCs, which could serve as a valuable model to investigate liver disease.

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Journal
Biotechnology and Bioengineering
Published
2026-09-16
DOI
https://doi.org/10.1002/bit.70384
Primary Topic
Pluripotent Stem Cells Research
Type
article
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article

Differences of 3D and Mixed 2D and 3D Culture in the Generation of Human iPSC‐Derived Hepatocytes

Lucas Pires Guarnier, Karina Dutra Asensi, Marlon Lemos Dias, Cibele Ferreira Pimentel et al.
Biotechnology and Bioengineering
Pluripotent Stem Cells Research
article

Differences of 3D and Mixed 2D and 3D Culture in the Generation of Human iPSC‐Derived Hepatocytes

Lucas Pires Guarnier, Karina Dutra Asensi, Marlon Lemos Dias, Cibele Ferreira Pimentel, Regina Coeli dos Santos Goldenberg, Victor Hoff, Giulia Roldão B. Freire, Turán P. Ürményi, Lanuza Allaby Pinheiro Faccioli, Rafael Campos da Silva Menezes
article en

Abstract

ABSTRACT Hepatocytes are cells of the hepatic parenchyma that perform a series of essential functions, representing about 80% of its mass. Due to their importance, the use of hepatocytes has gained prominence in scientific research, mainly in the prediction of hepatotoxic drugs. As primary hepatocyte culture presents limitations, human induced pluripotent stem cells (hiPSC) have been used as a promising alternative. However, the differences between 2D and 3D culture during the differentiation of iPSCs into hepatocytes is limitedly explored. In this context, this study compared the differentiation of hepatocytes‐like (iHep) from hiPSC in two‐dimensional (iHep‐2D), three‐dimensional (iHep‐3D) and mixed (iHep 2D‐3D) cultures to evaluate their impact on the acquisition of hepatocyte‐like characteristics. After 2D differentiation, transcriptomic analysis revealed that iHep‐2D has a gene profile very similar to that of primary human hepatocytes, demonstrating that this could be a valuable protocol to use as a starting point for iHep 2D‐3D differentiation. The cells were also evaluated for the presence of hepatocyte‐associated markers by immunofluorescence and our results showed that, although all three cultures generated iHep cells that were able to express specific hepatocyte markers, the iHep 2D‐3D differentiation generated cells displaying a more pronounced hepatocyte‐like phenotype, based on Albumin and CYP3A4 expression. Therefore, in this study we suggest that combining 2D and 3D differentiation may promote a more pronounced hepatocyte‐like phenotype in iHeps derived from human iPSCs, which could serve as a valuable model to investigate liver disease.

Biotechnology and Bioengineering
Universidade de Ribeirão Preto (BR), Universidade de São Paulo (BR), State University of Norte Fluminense (BR), Czech Academy of Sciences, Institute of Biophysics (CZ), Clinics Hospital of Ribeirão Preto (BR), National Institute of Science and Technology (ID)
Openalex Percentile: Top 18%
Pluripotent Stem Cells Research
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