» Articles » PMID: 24222008

Co-regulation of Primary Mouse Hepatocyte Viability and Function by Oxygen and Matrix

Overview
Publisher Wiley
Specialty Biochemistry
Date 2013 Nov 14
PMID 24222008
Citations 14
Authors
Affiliations
Soon will be listed here.
Abstract

Although oxygen and extracellular matrix cues both influence differentiation state and metabolic function of primary rat and human hepatocytes, relatively little is known about how these factors together regulate behaviors of primary mouse hepatocytes in culture. To determine the effects of pericellular oxygen tension on hepatocellular function, we employed two methods of altering oxygen concentration in the local cellular microenvironment of cells cultured in the presence or absence of an extracellular matrix (Matrigel) supplement. By systematically altering medium depth and gas phase oxygen tension, we created multiple oxygen regimes (hypoxic, normoxic, and hyperoxic) and measured the local oxygen concentrations in the pericellular environment using custom-designed oxygen microprobes. From these measurements of oxygen concentrations, we derived values of oxygen consumption rates under a spectrum of environmental contexts, thus providing the first reported estimates of these values for primary mouse hepatocytes. Oxygen tension and matrix microenvironment were found to synergistically regulate hepatocellular survival and function as assessed using quantitative image analysis for cells stained with vital dyes, and assessment of secretion of albumin. Hepatocellular viability was affected only at strongly hypoxic conditions. Surprisingly, albumin secretion rates were greatest at a moderately supra-physiological oxygen concentration, and this effect was mitigated at still greater supra-physiological concentrations. Matrigel enhanced the effects of oxygen on retention of function. This study underscores the importance of carefully controlling cell density, medium depth, and gas phase oxygen, as the effects of these parameters on local pericellular oxygen tension and subsequent hepatocellular function are profound.

Citing Articles

Reproducibility and Robustness of a Liver Microphysiological System PhysioMimix LC12 under Varying Culture Conditions and Cell Type Combinations.

Lim A, Kato Y, Sakolish C, Valdiviezo A, Han G, Bajaj P Bioengineering (Basel). 2023; 10(10).

PMID: 37892925 PMC: 10603899. DOI: 10.3390/bioengineering10101195.


Reactive oxygen species limit intestinal mucosa-bacteria homeostasis in vitro.

Luchan J, Choi C, Carrier R Sci Rep. 2021; 11(1):23727.

PMID: 34887444 PMC: 8660821. DOI: 10.1038/s41598-021-02080-x.


Hepatitis B virus infection modeling using multi-cellular organoids derived from human induced pluripotent stem cells.

Cao D, Ge J, Wang Y, Oda T, Zheng Y World J Gastroenterol. 2021; 27(29):4784-4801.

PMID: 34447226 PMC: 8371505. DOI: 10.3748/wjg.v27.i29.4784.


A 3D Cell Culture Organ-on-a-Chip Platform With a Breathable Hemoglobin Analogue Augments and Extends Primary Human Hepatocyte Functions .

Shoemaker J, Zhang W, Atlas S, Bryan R, Inman S, Vukasinovic J Front Mol Biosci. 2020; 7:568777.

PMID: 33195413 PMC: 7645268. DOI: 10.3389/fmolb.2020.568777.


Technical Feasibility and Physiological Relevance of Hypoxic Cell Culture Models.

Pavlacky J, Polak J Front Endocrinol (Lausanne). 2020; 11:57.

PMID: 32153502 PMC: 7046623. DOI: 10.3389/fendo.2020.00057.


References
1.
Matoba S, Kang J, Patino W, Wragg A, Boehm M, Gavrilova O . p53 regulates mitochondrial respiration. Science. 2006; 312(5780):1650-3. DOI: 10.1126/science.1126863. View

2.
Kantrow S, Taylor D, Carraway M, Piantadosi C . Oxidative metabolism in rat hepatocytes and mitochondria during sepsis. Arch Biochem Biophys. 1997; 345(2):278-88. DOI: 10.1006/abbi.1997.0264. View

3.
Jones D, Mason H . Gradients of O2 concentration in hepatocytes. J Biol Chem. 1978; 253(14):4874-80. View

4.
Harper M, Monemdjou S, Ramsey J, Weindruch R . Age-related increase in mitochondrial proton leak and decrease in ATP turnover reactions in mouse hepatocytes. Am J Physiol. 1998; 275(2):E197-206. DOI: 10.1152/ajpendo.1998.275.2.E197. View

5.
Khan Z, Michalopoulos G, Stolz D . Peroxisomal localization of hypoxia-inducible factors and hypoxia-inducible factor regulatory hydroxylases in primary rat hepatocytes exposed to hypoxia-reoxygenation. Am J Pathol. 2006; 169(4):1251-69. PMC: 1698853. DOI: 10.2353/ajpath.2006.060360. View