Turns out the same glands that make you sweat are responsible for another job vital to your health: they help heal wounds.
Human skin is rich with millions of eccrine sweat glands that help your body cool down after a trip to the gym or on a warm day. These same glands, new University of Michigan Health System research shows, also happen to play a key role in providing cells for recovering skin wounds – such as scrapes, burns and ulcers.
The findings were released online ahead of print in the American Journal of Pathology.
“Skin ulcers – including those caused by diabetes or bed sores – and other non-healing wounds remain a tremendous burden on health services and communities around the world,” says lead author Laure Rittié, Ph.D., research assistant professor of dermatology at the University of Michigan Medical School.
“Treating chronic wounds costs tens of billions of dollars annually in the United States alone, and this price tag just keeps rising. Something isn’t working.”
Now, U-M researchers believe they have discovered one of the body’s most powerful secret weapons in healing.
Laure Rittié“By identifying a key process of wound closure, we can examine drug therapies with a new target in mind: sweat glands, which are very under-studied,” Rittié says. “We’re hoping this will stimulate research in a promising, new direction.”
Previous understanding of wound closure was that new skin cells originate from hair follicles and from intact skin at the edge of the wound. The U-M findings demonstrate that cells arise from beneath the wound, and suggest that human eccrine sweat glands also store an important reservoir of adult stem cells that can quickly be recruited to aid wound healing.
“It may be surprising that it’s taken until now to discover the sweat glands’ vital role in wound repair,” Rittié says. “But there’s a good reason why these specific glands are under-studied – eccrine sweat glands are unique to humans and absent in the body skin of laboratory animals that are commonly used for wound healing research.
“We have discovered that humans heal their skin in a very unique way, different from other mammals,” Rittié adds. “The regenerative potential of sweat glands has been one of our body’s best-kept secrets. Our findings certainly advance our understanding of the normal healing process and will hopefully pave the way for designing better, targeted therapies.”
Additional Authors: Dana L. Sachs, M.D.; Jeffrey S. Orringer, M.D.; John J. Voorhees, M.D.; and Gary J. Fisher, Ph.D., all of the University of Michigan Department of Dermatology.
Funding: U-M Dermatology Research Fund, the Dermatology Foundation, and the National Institutes of Health (NIH/NIAMS grant K01-AR059678)
Reference: http://dx.doi.org/10.1016/j.ajpath.2012.09.019
NOTICE: Except where otherwise noted, all articles are published under a Creative Commons Attribution 3.0 license. You are free to copy, distribute, adapt, transmit, or make commercial use of this work as long as you attribute the University of Michigan Health System as the original creator and include a link to this article.
Beata Mostafavi | Source: EurekAlert!
Further information: www.umich.edu
Further Reports about: adult stem cell > chronic wounds > Dermatology > hair follicle > health services > skin cell > skin wounds > Sweat glands > wound healing
More articles from Health and Medicine:
Proteins in migration: New insights into the mechanisms of Parkinson’s disease
24.05.2013 | Deutsches Zentrum für Neurodegenerative Erkrankungen e.V. (DZNE)
New insights contradict promising Alzheimer's research
24.05.2013 | VIB (the Flanders Institute for Biotechnology)
This morning at 05:45 CEST, the earth trembled beneath the Okhotsk Sea in the Pacific Northwest. The quake, with a magnitude of 8.2, took place at an exceptional depth of 605 kilometers.
Because of the great depth of the earthquake a tsunami is not expected and there should also be no major damage due to shaking.
Professor Frederik Tilmann of the GFZ German Research Centre for Geosciences: "The epicenter is exceptionally deep, far below the earth's crust in the mantle. Such strong ...
The Ring Nebula's distinctive shape makes it a popular illustration for astronomy books. But new observations by NASA's Hubble Space Telescope of the glowing gas shroud around an old, dying, sun-like star reveal a new twist.
"The nebula is not like a bagel, but rather, it's like a jelly doughnut, because it's filled with material in the middle," said C. Robert O'Dell of Vanderbilt University in Nashville, Tenn.
He leads a research team that used Hubble and several ground-based telescopes to obtain the best view yet of ...
New indicator molecules visualise the activation of auto-aggressive T cells in the body as never before
Biological processes are generally based on events at the molecular and cellular level. To understand what happens in the course of infections, diseases or normal bodily functions, scientists would need to examine individual cells and their activity directly in the tissue.
The development of new microscopes and fluorescent dyes in ...
A fried breakfast food popular in Spain provided the inspiration for the development of doughnut-shaped droplets that may provide scientists with a new approach for studying fundamental issues in physics, mathematics and materials.
The doughnut-shaped droplets, a shape known as toroidal, are formed from two dissimilar liquids using a simple rotating stage and an injection needle. About a millimeter in overall size, the droplets are produced individually, their shapes maintained by a surrounding springy material made of polymers.
Droplets in this toroidal shape made ...
Frauhofer FEP will present a novel roll-to-roll manufacturing process for high-barriers and functional films for flexible displays at the SID DisplayWeek 2013 in Vancouver – the International showcase for the Display Industry.
Displays that are flexible and paper thin at the same time?! What might still seem like science fiction will be a major topic at the SID Display Week 2013 that currently takes place in Vancouver in Canada.
High manufacturing cost and a short lifetime are still a major obstacle on ...
24.05.2013 | Life Sciences
Atlantic Research Expedition Uncovers Vast Methane-Based Ecosystem
24.05.2013 | Ecology, The Environment and Conservation
A Hidden Population of Exotic Neutron Stars
24.05.2013 | Physics and Astronomy
ITS European Congress: Traffic Warning and Information Platform
17.05.2013 | Event News
European Research Infrastructures help to solve air quality issues
15.05.2013 | Event News
The Problem of the European Unemployment
08.05.2013 | Event News