Our new SSSavi system - a modular dCas9-based recruitment platform for combinatorial epigenome editing, led by @TessaASwain and @BlauerPlums https://t.co/I3oUWWiv6K
Research briefing: An innovative method reduces the retention of residual epigenetic modifications in induced pluripotent stem cells. https://t.co/s2g72ix7WY
In our new work we chart epigenome reconfiguration in human iPSC reprogramming, informing a new 'Transient Naive Treatment' (TNT) reprogramming strategy that corrects human iPSCs functionally and epigenetically. Read it here @Nature https://t.co/VZYmTt8IRe
1/ Ever wonder about differences between human induced pluripotent stem cells (hiPSC) and embryonic stem cells (hESC)? Check out our work in @Nature on hiPSC epigenome dynamics and a new reprogramming method which more fully erases hiPSC epigenetic memory https://t.co/iISspLmtOZ
Incredibly happy to share our @CellGenomics paper where we identify a disease-associated hepatocyte state (daHep). https://t.co/TyFvbMBHF9
@CHIRI_curtin @CurtinMedia
Excited to share our work on human prefrontal cortex, using single nuclei RNA and ATAC to cover development from fetal into adulthood! https://t.co/OkvFwNN8Tp Great team work with @Chuck_Herring, twitterless Becca Simmons, @SaskiaFreytag and @ry_Lister.