Explore how stem cell biology is advancing strategies to repair the injured nervous system and support regeneration following ...
For decades, medicine has chased a simple but elusive goal of delivering the right drug to the right place at the right time.
Throughout the animal kingdom, several species have the ability to regenerate body parts after cuts or damage. Lizards can regrow their tails, salamanders can regrow arms and legs, certain flatworms ...
Scientists studying axolotls, zebrafish, and mice have uncovered a shared set of genes that may one day help humans regrow lost limbs. By identifying powerful “SP genes” involved in regeneration, ...
This is a Research Topic initiated by ISACB, the International Society for Applied Cardiovascular Biology.The field of ...
MDI Bio Lab scientists discovered how zebrafish solve a basic challenge in regenerative biology—insights in their newest publication in the journal Development could one day guide human repair. When ...
Stem cells in most organisms typically take cues from adjacent cells. But new research from the Stowers Institute for Medical Research has found that stem cells in the freshwater planarian Schmidtea ...
This Collection supports and amplifies research related to SDG3, SDG14, and SDG15. This collection delves into the fascinating world of model organisms that unlock the mysteries of regeneration. From ...
Research conducted by an international team and led by biologists at the University of Kentucky has found that the ability to regenerate complex tissue may be more widespread in mammals than ...
The Editorial Board is pleased to announce a Special Topic on “Advances in Craniofacial Biology: Development, Disease, and ...
A new study reported in Nature has determined that the amino acid cysteine could promote regeneration among cells in the small intestine. The work showed that cysteine can activate an immune signaling ...
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