Researchers Reduce MS Disability With Stem Cells

Posted: Published on January 22nd, 2015

This post was added by Dr Simmons

Scientists are hesitant to call it a cure, but they have succeeded in significantly reducing -- and in some cases, reversing -- disability caused by the crippling disorder multiple sclerosis. The therapy involves using the patients own stem cells in a single treatment.

The stem cells are collected from the patients blood and they are used to reset the immune system, so the body's fighter cells no longer mistake the patients own nervous system tissue for an invader. Those attacks cause disability and autoimmune diseases like multiple sclerosis.

MS is a degenerative disease. Ten years after being diagnosed, half of all MS patients are unable to work, and after 25 years with the disease, half lose the ability to walk.

Richard Burt, chief of the Division of Immunotherapy at Northwestern University in Evanston, Illinois, led a study of 150 MS patients, most with the mildest form of the disease called relapsing-remitting MS, in which they received the stem-cell therapy.

He said their disability seemed to reverse itself or disappear.

This is a one-time treatment and then you are done. And so we hope patients never need to be treated again, said Burt.

About half of the patients tested two years after the study showed significant improvement in their movement and cognitive function. Of the three dozen participants tested after four years, 23 had continued improvement of their symptoms, and 80 percent were free of relapses or flare-ups.

Ten percent of patients required another treatment after five years. Some of the participants, who had a more serious form of MS, did not improve.

MS disease progression and severity are measured by the number of lesions in the brain seen by high-tech imaging. Most of the patients who received the stem cells had fewer brain lesions.

Treatment for multiple sclerosis is expensive, typically close to $50,000 or more per year.

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Researchers Reduce MS Disability With Stem Cells

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