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Metabolomic Alteration of Oral Keratinocytes and Fibroblasts in Hypoxia. | LitMetric

Metabolomic Alteration of Oral Keratinocytes and Fibroblasts in Hypoxia.

J Clin Med

Division of Biomimetics, School of Medical and Dental Sciences, Niigata University, Niigata 951-8514, Japan.

Published: March 2021

AI Article Synopsis

  • * Somatic stem cells thrive in low-oxygen environments and can be effectively cultured under these conditions, especially oral mucosal stem cells which are valuable for regenerative medicine.
  • * This study reveals significant metabolic changes in oral keratinocytes and fibroblasts when cultured in hypoxic conditions, highlighting alterations in pathways like the urea cycle and glycolysis, with keratinocytes showing more dramatic changes than fibroblasts.

Article Abstract

The oxygen concentration in normal human tissue under physiologic conditions is lower than the atmospheric oxygen concentration. The more hypoxic condition has been observed in the cells with wound healing and cancer. Somatic stem cells reside in a hypoxic microenvironment in vivo and prefer hypoxic culture conditions in vitro. Oral mucosa contains tissue-specific stem cells, which is an excellent tissue source for regenerative medicine. For clinical usage, maintaining the stem cell in cultured cells is important. We previously reported that hypoxic culture conditions maintained primary oral keratinocytes in an undifferentiated and quiescent state and enhanced their clonogenicity. However, the metabolic mechanism of these cells is unclear. Stem cell biological and pathological findings have shown that metabolic reprogramming is important in hypoxic culture conditions, but there has been no report on oral mucosal keratinocytes and fibroblasts. Herein, we conducted metabolomic analyses of oral mucosal keratinocytes and fibroblasts under hypoxic conditions. Hypoxic oral keratinocytes and fibroblasts showed a drastic change of metabolite concentrations in urea cycle metabolites and polyamine pathways. The changes of metabolic profiles in glycolysis and the pentose phosphate pathway under hypoxic conditions in the oral keratinocytes were consistent with those of other somatic stem cells. The metabolic profiles in oral fibroblasts showed only little changes in any pathway under hypoxia except for a significant increase in the antioxidant 2-oxoglutaric acid. This report firstly provides the holistic changes of various metabolic pathways of hypoxic cultured oral keratinocytes and fibroblasts.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8001958PMC
http://dx.doi.org/10.3390/jcm10061156DOI Listing

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