Directed Differentiation

Directed differentiation is the controlled process of guiding unspecialized cells, particularly stem cells, toward a defined mature cell type, making it a valuable tool for studying how cellular identities arise during development. In developmental biology, researchers apply timed changes in signaling molecules, growth factors, culture conditions, and physical cues to activate or suppress lineage-specific gene programs. These interventions can reproduce key stages of embryonic patterning and generate populations such as neurons, cardiomyocytes, or pancreatic cells for investigation. Directed differentiation supports disease modeling, drug screening, tissue engineering, and regenerative medicine while providing experimental insight into cell fate decisions and developmental mechanisms.

Directed Differentiation - Related Videos

Research

JoVE Journal - Immunology and Infection

Directed Differentiation of Induced Pluripotent Stem Cells towards T Lymphocytes

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Cited by 20 •

2012

Generation of T lymphocytes from induced pluripotent stem (iPS) cells gives an alternative approach of using embryonic stem cells for T cell-based immunotherapy. The method shows that by utilizing either in vitro or in vivo induction system, iPS cells are able to differentiate into both conventional and antigen-specific T lymphocytes.

Directed Dopaminergic Neuron Differentiation from Human Pluripotent Stem Cells

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Cited by 58 •

2014

We, based on knowledge from developmental biology and published research, developed an optimized protocol to efficiently generate A9 midbrain dopaminergic neurons from both human embryonic stem cells and human induced pluripotent stem cells, which would be useful for disease modeling and cell replacement therapy for Parkinson’s disease.

Research

JoVE Journal - Genetics
Free Sample

Genome Editing and Directed Differentiation of hPSCs for Interrogating Lineage Determinants in Human Pancreatic Development

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Cited by 3 •

2017

Protocols to generate hPSC mutant lines using the iCRISPR platform and to differentiate hPSCs into glucose-responsive β-like cells are described. Combining genome editing technology with hPSC-directed differentiation provides a powerful platform for the systematic analysis of the role of lineage determinants in human development and disease progression.

Directed Differentiation of Primitive and Definitive Hematopoietic Progenitors from Human Pluripotent Stem Cells

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Cited by 19 •

2017

Here, we present human pluripotent stem cell (hPSC) culture protocols, used to differentiate hPSCs into CD34+ hematopoietic progenitors. This method uses stage-specific manipulation of canonical WNT signaling to specify cells exclusively to either the definitive or primitive hematopoietic program.

Rapid, Directed Differentiation of Retinal Pigment Epithelial Cells from Human Embryonic or Induced Pluripotent Stem Cells

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Cited by 53 •

2017

This protocol describes how to produce retinal pigment epithelial cells (RPE) from pluripotent stem cells. The method uses a combination of growth factors and small molecules to direct the differentiation of stem cells into immature RPE in fourteen days and mature, functional RPE after three months.

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