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UGA researchers develop first mouse model to study important aspect of Alzhei
bi2280279
( University of Georgia ) In research at the University of Georgia, a cellular biologist and colleagues have found that Hirano bodies may play a protective role the progression of neurodegenerative diseases such as Alzheimer's. And to find out why may be happening, they have developed the world's first transgenic model that has Hirano bodies, open new frontiers on ..
Researchers develop first mouse model to study important aspect of Alzheimer's
bi2280279
Hirano bodies are almost indescribably tiny objects found nerve cells of people suffering from conditions such as Alzheimer's, mad cow and Lou Gehrig's diseases. Yet for decades, researchers weren't sure these structures helped cause the conditions or appeared after onset of the disease and had some other role
UGA researchers develop first mouse model to study important aspect of Alzhei
bi2280279
( University of Georgia ) In research at the University of Georgia, a cellular biologist and colleagues have found that Hirano bodies may play a protective role the progression of neurodegenerative diseases such as Alzheimer's. And to find out why may be happening, they have developed the world's first transgenic model that has Hirano bodies, open new frontiers on ..
Researchers develop first mouse model to study important aspect of Alzheimer's
bi2280279
Hirano bodies are almost indescribably tiny objects found nerve cells of people suffering from conditions such as Alzheimer's, mad cow and Lou Gehrig's diseases. Yet for decades, researchers weren't sure these structures helped cause the conditions or appeared after onset of the disease and had some other role
Neurological disorder impacts brain cells differently
bi2280279
In a new paper, researchers describe deeper detail the pathology of a devastating neurological disorder, but also reveal new cellular targets for possibly slowing development
New cellular targets for devastating neurological disorder
bi2280279
In a paper published the November 9 issue of The Journal of Neuroscience, researchers at the University of California, San Diego School of Medicine and University of Washington describe deeper detail the pathology of a devastating neurological disorder, but also reveal new cellular targets for possibly slowing development
Hirano bodies may play a protective role progression of Alzheimer's
bi2280279
Hirano bodies are almost indescribably tiny objects found nerve cells of people suffering from conditions such as Alzheimer's, mad cow and Lou Gehrig's diseases. Yet for decades, researchers weren't sure these structures helped cause the conditions or appeared after onset of the disease and had some other role
New Mad Cow Disease Form Shows up Two Swiss Cows
bi2280279
An international team of researchers identified two Swiss cows a new form of mad-cow disease a study released online Friday
Neuronascent Issued US Patent for Neurogenesis, Therapeutic Candidates
bi2280279
CLARKSVILLE, MD-- - Neuronascent, Inc. announced today that the USPTO has allowed claims for patent, "Methods and Compositions for Stimulating Neurogenesis and Inhibiting Neuronal Degeneration," ..
Lab-made skin cells aid transplantation, cancer, drug discovery research
bi2280279
Researchers have found a way to create melanocytes from tail cells using embryonic stem cell-like intermediates called inducible pluripotent (iPS) cells. They converted tail-tip fibroblasts iPS cells, producing pluripotent cells similar to embryonic stem cells, but the concomitant ethical issues
Researchers Discover Tactic to Delay Age-Related Disorders
bi2280279
Researchers at Mayo Clinic have shown that eliminating cells that accumulate age could prevent or delay the onset of age-related disorders and disabilities. The study, performed models, provides the first evidence that these "deadbeat" cells could contribute to aging and suggests a way to help people stay healthier as they age
Tactic to delay age-related disorders
bi2280279
Researchers have shown that eliminating cells that accumulate age could prevent or delay the onset of age-related disorders and disabilities. The study, performed models, provides the first evidence that these "deadbeat" cells could contribute to aging and suggests a way to help people stay healthier as they age
Neurological disorder impacts brain cells differently
bi2280279
In a new paper, researchers describe deeper detail the pathology of a devastating neurological disorder, but also reveal new cellular targets for possibly slowing development
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