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Future Brain Therapies for Parkinson’s Possible with Stem Cell Bioengineering Innovation – NJTV News

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2016-03-17

NJTV News

Future Brain Therapies for Parkinson’s Possible with Stem Cell Bioengineering Innovation
NJTV News
The technology — a major innovation — involves converting adult tissue-derived stem cells into human neurons on 3D “scaffolds,” or tiny islands, of fibers, said Prabhas V. Moghe, a distinguished professor in the departments of Biomedical Engineering
3D technology can help reprogramming stem cells into neuronsTheHealthSite
3-D technology enriches human nerve cells for transplant to brainMedical Xpress

all 18 news articles »

Continue reading

2016-03-17

NJTV News

Future Brain Therapies for Parkinson’s Possible with Stem Cell Bioengineering Innovation
NJTV News
The technology — a major innovation — involves converting adult tissue-derived stem cells into human neurons on 3D “scaffolds,” or tiny islands, of fibers, said Prabhas V. Moghe, a distinguished professor in the departments of Biomedical Engineering
3D technology can help reprogramming stem cells into neuronsTheHealthSite
3-D technology enriches human nerve cells for transplant to brainMedical Xpress

all 18 news articles »

Continue reading

2016-03-17

Nanowerk

Future brain therapies for Parkinson’s possible with stem cell bioengineering innovation
Nanowerk
The technology – a major innovation – involves converting adult tissue-derived stem cells into human neurons on 3-D “scaffolds,” or tiny islands, of fibers, said Prabhas V. Moghe, a distinguished professor in the departments of Biomedical Engineering
3D technology can help reprogramming stem cells into neuronsTheHealthSite
3-D technology enriches human nerve cells for transplant to brainScience Codex

all 18 news articles »

Continue reading

2016-03-17

EurekAlert (press release)

Future brain therapies for Parkinson’s possible with stem cell bioengineering innovation
EurekAlert (press release)
The technology – a major innovation – involves converting adult tissue-derived stem cells into human neurons on 3-D “scaffolds,” or tiny islands, of fibers, said Prabhas V. Moghe, a distinguished professor in the departments of Biomedical Engineering
3-D technology enriches human nerve cells for transplant to brainMedical Xpress
3D technology to help create human nerve cells for transplant in brainBusiness Standard

all 11 news articles »