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Stem cells heal spinal crods in study on rats
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PostWed Jul 27, 2005 9:14 am    Stem cells heal spinal crods in study on rats

Quote:
Stem cells heal spinal cords in study on rats
Two-thirds of animals with severed spines regained use of hind limbs

Reuters
Updated: 7:39 a.m. ET July 27, 2005


WASHINGTON - Genetically engineered stem cells can help rats� severed spinal cords grow back together, according to a study published Tuesday.

Rats given the treatment, using stem cells taken from rat embryos, could move their legs again after their spines were severed in the lab, said the researchers� report in the Journal of Neuroscience.

The scientists hope the approach, which generated a new fatty cover for the spinal cord cells called the myelin sheath, also could be shown to work in people.

The key is using the right stem cells and then stimulating them correctly, said the researchers, who were led by Scott Whittemore of the University of Louisville School of Medicine in Kentucky.

�These findings suggest the possibility that transplantation therapy using a subset of neural stem cells and neurotrophic factors might improve functional recovery in human spinal cord injury,� said Dr. Michael Selzer, a professor of neurology at the University of Pennsylvania Medical Center in Philadelphia.

Spinal cord injuries can be caused by accidents or infections and affect 250,000 people a year in the United States alone, costing $4 billion annually, according to the National Institute of Neurological Disorders.

Whittemore�s team took specific cells from rat embryos called glial restricted precursor cells � a kind of stem cell or master cell that gives rise to nerve cells.

They genetically engineered these cells to do a little extra work by producing a compound called a growth factor � in this case, a new one called multineurotrophin. It was designed to coax immature neural stem cells to mature and become specialized cells called oligodendrocytes.

Oligodendrocytes help myelin grow onto nerve fibers, which cannot grow or function without this fatty protective coating.

Two-thirds of the rats in the study regained some hind limb movement, the researchers said.

Copyright 2005 Reuters Limited. All rights reserved. Republication or redistribution of Reuters content is expressly prohibited without the prior written consent of Reuters.
� 2005 MSNBC.com


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jonathan95
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PostWed Jul 27, 2005 10:07 am    

I think will be good for a lot of people.

I know of another thing like this that if its sucessful will help people with brain damage regain some of the bad area's

I think this kind of work is great and that we should put more efort into these kind of break through's


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webtaz99
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PostWed Jul 27, 2005 8:58 pm    

This was done several years ago. I read about it and saw it on TV. The problem is getting individual synapses (the connections between nerve cells) to line up.


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