Related Experiment Video
Updated: Jun 22, 2026

Oct4GiP Reporter Assay to Study Genes that Regulate Mouse Embryonic Stem Cell Maintenance and Self-renewal
Published on: May 30, 2012
Transcription factors and neural stem cell self-renewal, growth and differentiation
Sohail Ahmed1, Hui Theng Gan, Chen Sok Lam
1Institute of Medical Biology, Immunos, Singapore. sohail.ahmed@imb.a-star.edu.sg
Abstract:
The central nervous system (CNS) is a large network of interconnecting and intercommunicating cells that form functional circuits. Disease and injury of the CNS are prominent features of the healthcare landscape. There is an urgent unmet need to generate therapeutic solutions for CNS disease/injury. To increase our understanding of the CNS we need to generate cellular models that are experimentally tractable. Neural stem cells (NSCs), cells that generate the CNS during embryonic development, have been identified and propagated in vitro. To develop NSCs as a cellular model for the CNS we need to understand more about their genetics and cell biology. In particular, we need to define the mechanisms of self-renewal, proliferation and differentiation--i.e. NSC behavior. The analysis of pluripotency of embryonic stem cells through mapping regulatory networks of transcription factors has proven to be a powerful approach to understanding embryonic development. Here, we discuss the role of transcription factors in NSC behavior.
More Related Videos
Related Concept Videos
Maintenance of the ES Cell State
Somatic to iPS Cell Reprogramming
Transcription Factors
Methods of Nuclear Reprogramming
Master Transcription Regulators
General Transcription Factors

