Stem Cell Biology

Stem cell biology is the study of stem cells, specialized cells that can self-renew and produce differentiated cell types, making them central to tissue development, maintenance, and repair. Their behavior depends on intrinsic gene-regulatory networks and signals from the surrounding cellular niche, which balance self-renewal with commitment through processes such as symmetric or asymmetric cell division. Research in this field uses embryonic, adult, and induced pluripotent stem cells to model development, investigate disease mechanisms, test drugs, and develop regenerative therapies. Understanding how stem cells maintain potency and respond to signals may improve tissue engineering and personalized medicine.

Stem Cell Biology - Related Videos

Education

JoVE Science Education - Advanced Biology

An Introduction to Stem Cell Biology

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2023

Cells that can differentiate into a variety of cell types, known as stem cells, are at the center of one of the most exciting fields of science today. Stem cell biologists are working to understand the basic mechanisms that regulate how these cells function. These researchers are also interested in harnessing the remarkable potential of stem cells to treat human diseases. Here, JoVE presents an introduction to the captivating world of stem cell biology. We begin with a timeline of landmark...

Research

JoVE Journal - Biology

Derivation of Hematopoietic Stem Cells from Murine Embryonic Stem Cells

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Cited by 8 •

2007

This protocol details the derivation of transplantable hematopoietic stem cells from mouse embryonic stem cells (ESC) and their subsequent injection into lethally irradiated recipient mice. Briefly, ESC are differentiated as embryoid bodies, which are then infected with retroviral HoxB4 and co-cultured with OP9 stromal cells and hematopoietic cytokines.

Development of Organoids from Mouse Pituitary as In Vitro Model to Explore Pituitary Stem Cell Biology

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Cited by 11 •

2022

The pituitary gland is the key regulator of the body's endocrine system. This article describes the development of organoids from the mouse pituitary as a novel 3D in vitro model to study the gland's stem cell population of which the biology and function remain poorly understood.

Research

JoVE Journal - Biology
Free Sample

Transfecting and Nucleofecting Human Induced Pluripotent Stem Cells

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Cited by 26 •

2011

Despite recent advancements in genetic modification, transfection of human embryonic stem cells (HESCs) remains a capricious process. To our knowledge, systematic and efficient methods to transfect human induced pluripotent stem cells (iPSCs) have not been reported. Here, we describe robust protocols to efficiently transfect and nucleofect human iPSCs.

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