Skip to main content

Image of the Day: Cellular Destiny

Progenitor cells in the pancreas of humans get developmental cues from proteins in their environment.

Written byCarolyn Wilke
| 1 min read

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

R

esearchers have cracked the code that guides immature human pancreatic cells to their destiny. The results of this study, published in Nature on November 28, could help scientists direct stem cells to grow into the insulin-producing ones for potential use in replacement therapy for type 1 diabetes.

The researchers attached pancreatic progenitor cells, which are similar to stem cells but have a limited capacity to replicate, to a glass slide that was covered in different types of proteins. They could then watch how the cells reacted to the proteins without the interference of neighbor cells. They also observed mechanical force changes inside each cell that cued its development. Specifically, the protein laminin prodded progenitor cells into becoming endocrine cells, such as the insulin-producing beta cell, by reducing their mechanical force.

These results provide the tools “to more precisely engineer cells that are lost or damaged in severe diseases, such ...

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?
Add The Scientist as a preferred source on Google

Add The Scientist as a preferred Google source to see more of our trusted coverage.

Meet the Author

Related Topics

Related articles background image
The Scientist Digest cover September 2026
September 2026

Multiplex Microscopy Becomes Easier with Encoded Antibodies

A new system that enables researchers to uniquely tag monoclonal antibodies for use in microscopy could help simplify complex imaging studies.

View this Issue
Essential Genes Are Dominantly Activated by Single Transcription Factors

Essential Genes Are Dominantly Activated by Single Transcription Factors

EpiCypher Logo
Rethinking ALS Biomarkers: From Discovery to Clinical Impact

Rethinking ALS Biomarkers: From Discovery to Clinical Impact

Alamar Biosciences logo
Engineering CAR-Neutrophils In Vivo to Target Glioblastoma

Engineering CAR-Neutrophils In Vivo to Target Glioblastoma

Miltenyi
Best Practices for qPCR Assay Design and Optimization

Best Practices for qPCR Assay Design and Optimization

Bio-Rad

Products

Closeup image of a multi channel pipette dispensing pink liquid into a 96-well plate.

The ASSIST PLUS pipetting robot for affordable workflow automation

Integra Logo
Single cells in suspension

Rapidly isolate primary cells and make uniform single-cell suspensions with Corning® Cell Strainers

Corning logo
Abstract image representing cell membranes linked together.

CellBrite® Steady Membrane Stain: Cell surface staining built for real-time imaging

Biotium
sino biological logo

Monod Bio Licenses AI-designed Protein Technologies to SignalChem Biotech for Custom Discovery Assays