AI Article Synopsis

  • Primary cultured hepatocytes are essential for studying liver metabolism and toxicity, but they often lose function after isolation due to an unnatural environment.
  • Polydimethylsiloxane (PDMS) enhances hepatocyte function due to its high oxygen permeability, but its tendency to absorb chemicals has limited its application in drug development.
  • A new material, 4-polymethyl-1-pentene polymer (PMP), maintains liver function effectively for at least a week and shows promise as a superior alternative to PDMS and traditional polystyrene for drug testing.

Article Abstract

In the pharmaceutical industry, primary cultured hepatocytes is a standard tool used to assess hepatic metabolisms and toxicity . Drawbacks, however, include their functional deterioration upon isolation, mostly due to the lack of a physiological environment. Polydimethylsiloxane (PDMS) has been reported to improve the function of isolated hepatocytes by its high oxygen permeability when used as a material of microphysiological systems (MPS). However, its high chemical sorption property has impeded its practical use in drug development. In this study, we evaluated a new culture material, 4-polymethyl-1-pentene polymer (PMP), in comparison with PDMS and conventional tissue culture polystyrene (TCPS). First, we confirmed the high oxygen permeability and low sorption of PMP, and these properties were comparable with PDMS and TCPS, respectively. Moreover, using primary rat hepatocytes, we demonstrated maintained high levels of liver function at least for 1 week on PMP, with its low chemical sorption and high oxygen permeability being key factors in both revealing the potential of primary cultured hepatocytes and in performing an accurate evaluation of hepatic metabolisms. Taken together, we conclude that PMP is a superior alternative to both PDMS and TCPS, and a promising material for a variety of drug testing systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9208656PMC
http://dx.doi.org/10.3389/ftox.2022.810478DOI Listing

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