Explores embryonic induction through Spemann and Mangold's experiments, highlighting organizer roles, neural plate formation, and Activin as a morphogen.
Explores organoids, miniature tissue constructs mimicking living tissues, covering derivation methods, applications, and bridging in vitro and in vivo models.
Explores the stages of neurodevelopment from induction to postnatal brain development, covering neural plate regionalization, neural tube closure, and fate commitment.
Delves into pioneer transcription factors, chromatin organization, and cell fate transitions, showcasing examples of reprogramming and discussing the potential applications in regenerative medicine.
Covers the formation and applications of organoids, including brain, skin, and intestinal organoids, as well as the engineering of tissues and the concept of organ-on-a-chip.
Explores the requirements of materials for tissue engineering, focusing on stem cells and biomaterials' role in controlling stem-cell fate and tissue regeneration.