Diagenode

Distinct and Shared Determinants of Cardiomyocyte Contractility in Multi-Lineage Competent Ethnically Diverse Human iPSCs


Tomov M.L. et al.

The realization of personalized medicine through human induced pluripotent stem cell (iPSC) technology can be advanced by transcriptomics, epigenomics, and bioinformatics that inform on genetic pathways directing tissue development and function. When possible, population diversity should be included in new studies as resources become available. Previously we derived replicate iPSC lines of African American, Hispanic-Latino and Asian self-designated ethnically diverse (ED) origins with normal karyotype, verified teratoma formation, pluripotency biomarkers, and tri-lineage in vitro commitment. Here we perform bioinformatics of RNA-Seq and ChIP-seq pluripotency data sets for two replicate Asian and Hispanic-Latino ED-iPSC lines that reveal differences in generation of contractile cardiomyocytes but similar and robust differentiation to multiple neural, pancreatic, and smooth muscle cell types. We identify shared and distinct genes and contributing pathways in the replicate ED-iPSC lines to enhance our ability to understand how reprogramming to iPSC impacts genes and pathways contributing to cardiomyocyte contractility potential.

Tags
Bioruptor
IP-Star Compact

Share this article

Published
December, 2016

Source

Events

  • London Calling 2024
    London, UK
    May 21-May 24, 2024
  • Symposium of the Young Scientist Association
    Vienna, Austria
    May 28-May 29, 2024
  • ESHG 2024
    Berlin, Germany
    Jun 1-Jun 4, 2024
  • CLEPIC 2024
    Warsaw, Poland
    Jun 5-Jun 7, 2024
  • EACR 2024
    Rotterdam, Netherlands
    Jun 10-Jun 13, 2024
  • Chromatin meets South 2024
    Marseille, France
    Jun 13-Jun 14, 2024
 See all events

 


       Site map   |   Contact us   |   Conditions of sales   |   Conditions of purchase   |   Privacy policy   |   Diagenode Diagnostics