A consortium of scientists has identified unique cells within the adult tendon that have stem-cell characteristics--including the ability to proliferate and self-renew. The research team, led in part by University of Southern California (USC) School of Dentistry researcher Songtao Shi, was able to isolate these cells and regenerate tendon-like tissue in the animal model. Their findings hold tremendous promise for the treatment of tendon injuries caused by overuse and trauma.
Tendons, the tough band of specialized tissues that connect bone to muscle, are comprised of strong collagen fibrils that transmit force allowing the body to move. Tendon injuries are a common clinical problem as damaged tendon tissue heals slowly and rarely regains the integrity or strength of a normal, undamaged tendon.
Prior to this research, little existed on the cellular makeup of tendons and their precursors. By looking at tendons at the molecular level, the research team identified a unique cell population--termed tendon stem/progenitor cells (TSPCs) in both mice and adult humans--that when guided by a certain molecular environment, form into tendon cells. The team included leading scientists from the National Institute of Dental and Craniofacial Research at the National Institutes of Health, Johns Hopkins University, and the University of Maryland School of Medicine.
"Clinically, tendon injury is a difficult one to treat, not only for athletes but for patients who suffer from tendinopathy such as tendon rupture or ectopic ossification," Shi says. "This research demonstrates that we can use stem cells to repair tendons. We now know how to collect them from tissue and how to control their formation into tendon cells."
Funding for the study came from the USC School of Dentistry and the National Institutes of Health.
Illustration: Songtao Shi. -Newswise.
NIH News (09/09/07)
Science Daily (09/09/07)
News-Medical Net (09/10/07)
Dental Plans (09/09/07)