Delves into pioneer transcription factors, chromatin organization, and cell fate transitions, showcasing examples of reprogramming and discussing the potential applications in regenerative medicine.
Explores transcription factors in reprogramming somatic cells to induced pluripotent stem cells and the correlation between Hox gene expression and morphological boundaries.
Explores the applications of embryonic stem cells in biomedical research, disease modeling, and potential therapeutic interventions, including the types of stem cells and the challenges they face.
Explores organoids, miniature tissue constructs mimicking living tissues, covering derivation methods, applications, and bridging in vitro and in vivo models.
Delves into neuroepigenetics, covering chromatin structure, histone modifications, DNA methylation, and their impact on gene transcription and inheritance.
Explores neurodevelopment in human embryos, from neurulation to adult neurogenesis, highlighting the influence of environmental factors and the connection to depression.