Cord Blood Ipscs

Cord blood induced pluripotent stem cells (iPSCs) are reprogrammed blood-derived cells that regain the ability to generate many specialized cell types, providing a valuable model for studying human development. Researchers introduce defined reprogramming factors into cord blood cells, resetting gene-regulatory networks and returning them to a pluripotent state while preserving the donor’s genetic background. These cells can then be expanded and differentiated into lineages such as neural, cardiac, or blood cells to examine developmental pathways, model congenital disorders, and test potential therapies. Because cord blood is collected without invasive procedures and contains youthful cells, it offers a practical source for developmental biology and regenerative research.

Cord Blood Ipscs - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Generating a Blood-Brain Barrier Chip Using iPSC-derived Precursor Cells

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2025

This video showcases creating a blood-brain barrier chip using iPSC-derived precursor cells. It involves seeding neural progenitor cells and brain microvascular endothelial cells in separate channels with a porous membrane. By flowing differentiation media, the endothelial cells form tight junctions resembling blood vessels, and the neural cells mature into various brain cell types, establishing a functional blood-brain barrier on the chip.

Chondrogenic Pellet Formation from Cord Blood-derived Induced Pluripotent Stem Cells

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Cited by 17 •

2017

Here, we propose a protocol for chondrogenic differentiation from cord blood mononuclear cell-derived human induced pluripotent stem cells.

Research

JoVE Journal - Immunology and Infection
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Isolation of Precursor B-cell Subsets from Umbilical Cord Blood

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Cited by 2 •

2013

Here we describe a protocol for isolating subsets of precursor B-cells from umbilical cord blood. A sufficient quantity and quality of nucleic acids may be extracted from the cells and used in subsequent assays utilizing DNA or RNA.

Isolation of Endothelial Progenitor Cells from Human Umbilical Cord Blood

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Cited by 16 •

2017

The goal of this protocol is to isolate endothelial progenitor cells from umbilical cord blood. Some of the applications include using these cells as a biomarker for identifying patients with cardiovascular risk, treating ischemic diseases, and creating tissue-engineered vascular and heart valve constructs.

Contrast Enhanced Ultrasound Imaging for Assessment of Spinal Cord Blood Flow in Experimental Spinal Cord Injury

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Cited by 16 •

2015

Contrast Enhanced Ultrasound imaging is a reliable in-vivo tool for quantifying spinal cord blood flow in an experimental rat spinal cord injury model. This paper contains a comprehensive protocol for application of this technique in association with a contusion model of thoracic spinal cord injury.

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