4.7 Article

Consideration of Commercially Available Hepatocytes as Cell Sources for Liver-Microphysiological Systems by Comparing Liver Characteristics

Journal

PHARMACEUTICS
Volume 15, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/pharmaceutics15010055

Keywords

microphysiological systems; liver-MPS; drug-induced liver injury; ADME; commercially available alternative hepatocyte sources; hepatocyte-like cells derived from human induced pluripotent stem cells; PXB-cells; cryopreserved human hepatocytes; cytochrome P450; liver characteristics

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Microphysiological systems (MPS) have been developed to shorten drug development test periods and reduce animal experiments. This study examined different cell sources for liver-MPS, including cryo-preserved hepatocytes, hiPSC-Heps, PXB cells, and HepG2 cells. Gene expression levels and activities were compared, and a focused DNA microarray analysis was conducted. The results provided insights into the characteristics of different hepatocyte cell sources for liver-MPS and contribute to the long-term utilization of an in vitro hepatic assay system.
In recent years, microphysiological systems (MPS) have been developed to shorten the test period and reduce animal experiments for drug development. We examined cell sources for the liver-MPS, i.e., MPS mimicking liver function. For liver-MPS, liver-like cells with high liver functions are required. Cryo-preserved hepatocytes (cryoheps), the gold standard hepatocytes for in vitro drug development, present several disadvantages, including differences between lots due to individual donor variations or a limited cell supply from the same donor. As such, alternatives for cryoheps are sought. Hepatocyte-like cells derived from human induced pluripotent stem cells (hiPSC-Heps), hepatocytes derived from liver-humanized mice (PXB-cells), and human liver cancer cells (HepG2 cells) were examined as source candidates for liver-MPS. Gene expression levels of the major cytochrome P450 of hiPSC-Heps, PXB cells, and HepG2 cells were compared with 22 lots of cryoheps, and the activities of hiPSC-Heps were compared with 8 lots of cryopreserved hepatocytes. A focused DNA microarray was used for the global gene analysis of the liver-like characteristics of hiPSC-Heps, PXB-cells, cryoheps, and HepG2 cells. Gene expression data from the focused microarray were analyzed by principal component analysis, hierarchical clustering, and enrichment analysis. The results indicated the characteristics of individual hepatocyte cell source and raised their consideration points as an alternative cell source candidate for liver-MPS. The study contributes to the repetitive utilization of a robust in vitro hepatic assay system over long periods with stable functionality.

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