Area of research
Molecular Biology · Developmental Neuroscience
Research interest
Research interests include Pluripotent Stem Cells Research, CRISPR and Genetic Engineering, Neurogenesis and neuroplasticity mechanisms, and Animal Genetics and Reproduction.
An atlas of transcription initiation reveals regulatory principles of gene and transposable element expression in early mammalian development
Elimination of tumorigenic pluripotent stem cells from their differentiated cell therapy products: An important step toward ensuring safe cell therapy
Efficient generation of germline chimeras in a non-rodent species using rabbit induced pluripotent stem cells.
An expedition in the jungle of pluripotent stem cells of non-human primates.
Major transcriptomic, epigenetic and metabolic changes underlie the pluripotency continuum in rabbit preimplantation embryos
Major transcriptomic, epigenetic and metabolic changes underlie the pluripotency continuum in rabbit preimplantation embryos.
Murine AGM single-cell profiling identifies a continuum of hemogenic endothelium differentiation marked by ACE
Global hyperactivation of enhancers stabilizes human and mouse naive pluripotency through inhibition of CDK8/19 Mediator kinases
Apoptosis, G1 Phase Stall, and Premature Differentiation Account for Low Chimeric Competence of Human and Rhesus Monkey Naive Pluripotent Stem Cells
Regulation of Cyclin E by transcription factors of the naïve pluripotency network in mouse embryonic stem cells.
Reinforcement of STAT3 activity reprogrammes human embryonic stem cells to naive-like pluripotency
Klf4 and Klf5 differentially inhibit mesoderm and endoderm differentiation in embryonic stem cells
Induced pluripotent stem cells derived from rabbits exhibit some characteristics of naïve pluripotency
A short G1 phase is an intrinsic determinant of naïve embryonic stem cell pluripotency