Journal of Molecular and Cellular Cardiology
Volume 48, Issue 6 , Pages 1215-1224, June 2010

Derivation and characterization of human fetal MSCs: An alternative cell source for large-scale production of cardioprotective microparticles

  • Ruenn Chai Lai

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
    • National University of Singapore Graduate School of Integrative Sciences and Engineering, Singapore
  • ,
  • Fatih Arslan

      Affiliations

    • Laboratory of Experimental Cardiology, University Medical Center Utrecht, the Netherlands
  • ,
  • Soon Sim Tan

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
  • ,
  • Betty Tan

      Affiliations

    • Bioinformatics Institute, A⁎STAR, Singapore
  • ,
  • Andre Choo

      Affiliations

    • Bioprocessing Technology Institute, A⁎STAR, Singapore
  • ,
  • May May Lee

      Affiliations

    • Bioprocessing Technology Institute, A⁎STAR, Singapore
  • ,
  • Tian Sheng Chen

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
  • ,
  • Bao Ju Teh

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
  • ,
  • John Kun Long Eng

      Affiliations

    • Nanyang Technological University, Singapore
  • ,
  • Harwin Sidik

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
  • ,
  • Vivek Tanavde

      Affiliations

    • Bioinformatics Institute, A⁎STAR, Singapore
  • ,
  • Wei Sek Hwang

      Affiliations

    • Department of Laboratory Medicine (Histopathology), KK Women's and Children's Hospital, Singapore
  • ,
  • Chuen Neng Lee

      Affiliations

    • Department of Surgery, NUS, Singapore
  • ,
  • Reida Menshawe El Oakley

      Affiliations

    • Department of Surgery, NUS, Singapore
  • ,
  • Gerard Pasterkamp

      Affiliations

    • Laboratory of Experimental Cardiology, University Medical Center Utrecht, the Netherlands
  • ,
  • Dominique P.V. de Kleijn

      Affiliations

    • Laboratory of Experimental Cardiology, University Medical Center Utrecht, the Netherlands
    • Interuniversity Cardiology Institute of the Netherlands, Utrecht, the Netherlands
  • ,
  • Kok Hian Tan

      Affiliations

    • Department of Maternal Fetal Medicine, KK Women's and Children's Hospital, Singapore
  • ,
  • Sai Kiang Lim

      Affiliations

    • Institute of Medical Biology, Agency for Science Technology and Research (A⁎STAR), Singapore
    • Department of Surgery, NUS, Singapore
    • Corresponding Author InformationCorresponding author. Institute of Medical Biology, 8A Biomedical Grove, #05-05 Immunos, Singapore 138648. Tel.: +65 6407 0150; fax: +65 6464 2048.

Received 11 September 2009; received in revised form 15 December 2009; accepted 28 December 2009. published online 11 January 2010.

Abstract 

The therapeutic effects of mesenchymal stem cells (MSCs) transplantation are increasingly thought to be mediated by MSC secretion. We have previously demonstrated that human ESC-derived MSCs (hESC-MSCs) produce cardioprotective microparticles in pig model of myocardial ischemia/reperfusion (MI/R) injury. As the safety and availability of clinical grade human ESCs remain a concern, MSCs from fetal tissue sources were evaluated as alternatives. Here we derived five MSC cultures from limb, kidney and liver tissues of three first trimester aborted fetuses and like our previously described hESC-derived MSCs; they were highly expandable and had similar telomerase activities. Each line has the potential to generate at least 1016–19 cells or 107–10 doses of cardioprotective secretion for a pig model of MI/R injury. Unlike previously described fetal MSCs, they did not express pluripotency-associated markers such as Oct4, Nanog or Tra1-60. They displayed a typical MSC surface antigen profile and differentiated into adipocytes, osteocytes and chondrocytes in vitro. Global gene expression analysis by microarray and qRT-PCR revealed a typical MSC gene expression profile that was highly correlated among the five fetal MSC cultures and with that of hESC-MSCs (r2>0.90). Like hESC-MSCs, they produced secretion that was cardioprotective in a mouse model of MI/R injury. HPLC analysis of the secretion revealed the presence of a population of microparticles with a hydrodynamic radius of 50–65 nm. This purified population of microparticles was cardioprotective at ∼1/10 dosage of the crude secretion.

Keywords: Fetal mesenchymal stem cells, Paracrine secretion, Microparticles, Cardioprotection

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PII: S0022-2828(09)00568-9

doi:10.1016/j.yjmcc.2009.12.021

Journal of Molecular and Cellular Cardiology
Volume 48, Issue 6 , Pages 1215-1224, June 2010