Cells from Stem Cells Still Immature

Cells derived from embryonic and induced pluripotent stem cells exhibit striking differences from the cells they’re supposed to represent.

Written byCristina Luiggi
| 1 min read

Register for free to listen to this article
Listen with Speechify
0:00
1:00
Share

Differentiated embryonic and induced pluripotent stem cells are significantly different from the actual cell types whose properties they’re supposed to recapitulate, according to a study published this week in Cell Research. When researchers compared the gene expression of neural progenitor cells, hepatocytes, and fibroblasts derived from embryonic and induced pluripotent stem cells with the same cell types taken from adult human tissues, they found that the stem cell-derived cells were much more similar to cells found during the first two months of fetal development. In fact, they found 100 differentially expressed genes in the cells differentiated from stem cells, half of which were genes expressed in pluripotent cells which had not been turned off.

“This finding may lead to exciting new ways to study early ...

Interested in reading more?

Become a Member of

The Scientist Logo
Receive full access to more than 35 years of archives, as well as TS Digest, digital editions of The Scientist, feature stories, and much more!
Already a member? Login Here

Related Topics

Meet the Author

Share
July Digest 2025
July 2025, Issue 1

What Causes an Earworm?

Memory-enhancing neural networks may also drive involuntary musical loops in the brain.

View this Issue
Screening 3D Brain Cell Cultures for Drug Discovery

Screening 3D Brain Cell Cultures for Drug Discovery

Explore synthetic DNA’s many applications in cancer research

Weaving the Fabric of Cancer Research with Synthetic DNA

Twist Bio 
Illustrated plasmids in bright fluorescent colors

Enhancing Elution of Plasmid DNA

cytiva logo
An illustration of green lentiviral particles.

Maximizing Lentivirus Recovery

cytiva logo

Products

The Scientist Placeholder Image

Sino Biological Sets New Industry Standard with ProPure Endotoxin-Free Proteins made in the USA

sartorius-logo

Introducing the iQue 5 HTS Platform: Empowering Scientists  with Unbeatable Speed and Flexibility for High Throughput Screening by Cytometry

parse_logo

Vanderbilt Selects Parse Biosciences GigaLab to Generate Atlas of Early Neutralizing Antibodies to Measles, Mumps, and Rubella

shiftbioscience

Shift Bioscience proposes improved ranking system for virtual cell models to accelerate gene target discovery