Dermal Stem Cells

Dermal stem cells are self-renewing, multipotent cells found within the skin’s connective tissue and associated structures, where they help maintain and repair dermal components. They proliferate in response to local signals and can generate specialized progeny, including fibroblast-like cells that produce extracellular matrix proteins such as collagen. In bioengineering, researchers use these cells in biomaterials, three-dimensional culture systems, and engineered skin constructs to model tissue development and support wound repair. Their capacity for regeneration makes them valuable for studying cell-matrix interactions, testing therapies, and developing personalized approaches to skin reconstruction.

Dermal Stem Cells - Related Videos

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JoVE EoE - Neuronal Culture Techniques

Generating Neurons by Reprogramming Human Dermal Fibroblast Cells

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2025

The video demonstrates the generation of neurons from adult human dermal fibroblasts (aHDFs). The aHDFs are reprogrammed using a lentiviral vector carrying genes for neuronal transcription factors and short hairpin RNAs (shRNAs). The shRNAs inhibit the expression of a neuronal transcriptional repressor, and the neuronal transcription factors activate genes to differentiate aHDFs into neurons. These reprogrammed aHDFs are cultured in an early and a late neuronal conversion medium to generate...

Derivation of Hematopoietic Stem Cells from Murine Embryonic Stem Cells

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Cited by 7 •

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.

Murine Dermal Fibroblast Isolation by FACS

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Cited by 28 •

2016

Fibroblast behavior underlies a spectrum of clinical entities, but they remain poorly characterized, largely due to their inherent heterogeneity. Traditional fibroblast research relies upon in vitro manipulation, masking in vivo fibroblast behavior. We describe a FACS-based protocol for the isolation of mouse skin fibroblasts that does not require cell culture.

Research

JoVE Journal - Biology
Free Sample

Derivation of Human Embryonic Stem Cells by Immunosurgery

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Cited by 12 •

2007

The ability of human embryonic stem cells to self-renew and differentiate into all cell types of the body suggests that they hold great promise for both medical applications and as a research tool for addressing fundamental questions in development and disease. Here, we provide a concise, step-by-step protocol for the derivation of human embryonic stem cells from embryos by immunosurgical isolation of the inner cell mass.

Research

JoVE Journal - Biology
Free Sample

Fate Mapping of Human Embryonic Stem Cells by Teratoma Formation

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Cited by 26 •

2010

Directed differentiation of hESCs into specific cells has generated much interest in regenerative medicine. We provide a concise, step-by-step protocol for determining the in vivo fate of selected hESCs that provides a valuable tool for characterizing tissue-specific reagents for cell-based therapy.

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