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      Preconditioning of Cardiosphere-Derived Cells With Hypoxia or Prolyl-4-Hydroxylase Inhibitors Increases Stemness and Decreases Reliance on Oxidative Metabolism

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          Abstract

          Cardiosphere-derived cells (CDCs), which can be isolated from heart explants, are a promising candidate cell source for infarcted myocardium regeneration. However, current protocols used to expand CDCs require at least 1 month in vitro to obtain sufficient cells for transplantation. We report that CDC culture can be optimized by preconditioning the cells under hypoxia (2% oxygen), which may reflect the physiological oxygen level of the stem cell niche. Under hypoxia, the CDC proliferation rate increased by 1.4-fold, generating 6 × 10 6 CDCs with higher expression of cardiac stem cell and pluripotency gene markers compared to normoxia. Furthermore, telomerase (TERT), cytokines/ligands involved in stem cell trafficking (SDF/CXCR-4), erythropoiesis (EPO), and angiogenesis (VEGF) were increased under hypoxia. Hypoxic preconditioning was mimicked by treatment with two types of hypoxia-inducible factor (HIF) prolyl-4-hydroxylase inhibitors (PHDIs): dimethyloxaloylglycine (DMOG) and 2-(1-chloro-4-hydroxyisoquinoline-3-carboxamido) acetic acid (BIC). Despite the difference in specificity, both PHDIs significantly increased c-Kit expression and activated HIF, EPO, and CXCR-4. Furthermore, treatment with PHDIs for 24 h increased cell proliferation. Notably, all hypoxic and PHDI-preconditioned CDCs had decreased oxygen consumption and increased glycolytic metabolism. In conclusion, cells cultured under hypoxia could have potentially enhanced therapeutic potential, which can be mimicked, in part, by PHDIs.

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          Author and article information

          Journal
          9208854
          8477
          Cell Transplant
          Cell Transplant
          Cell transplantation
          0963-6897
          1555-3892
          3 July 2018
          06 March 2015
          2016
          12 July 2018
          : 25
          : 1
          : 35-53
          Affiliations
          [* ]Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, UK
          []School of Health Science, Health Campus, Universiti Sains Malaysia, Kelantan, Malaysia
          []Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Oxford, UK
          [§ ]School of Chemical Science, Universiti Sains Malaysia, Pulau Pinang, Malaysia
          []Department of Cardiac Surgery, University of Verona, Verona, Italy
          Author notes
          Address correspondence to Dr. Suat Cheng Tan, School of Health Science, Health Campus, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan, Malaysia. Tel: +609-7677776; Fax: +609-7677515; tansc@ 123456usm.my
          Article
          PMC6042641 PMC6042641 6042641 ems78303
          10.3727/096368915X687697
          6042641
          25751158
          6b7aa08f-dd4b-4e2b-83c7-faaf77abf9d9
          History
          Categories
          Article

          Cardiac progenitor cells,Hypoxia-inducible factor (HIF),Hypoxic preconditioning,Dimethyloxaloylglycine (DMOG),2-(1-Chloro-4-hydroxyisoquinoline-3-carboxamido) acetic acid (BIC)

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