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Altering cellular interactions around amyloid plaques may offer novel Alzheimer s treatment strategies

Researchers made a significant breakthrough in Alzheimer s disease research by identifying a novel way to potentially slow down or even halt disease progression. The study, which focuses on the role of reactive astrocytes and the plexin-B1 protein in Alzheimer s pathophysiology, provides crucial insights into brain cell communication and opens the door to innovative treatment strategies.

New Alzheimer s Study Shows Potential Method of Slowing or Halting Disease

New Alzheimer s Study Shows Potential Method of Slowing or Halting Disease
techtimes.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from techtimes.com Daily Mail and Mail on Sunday newspapers.

Manipulating Cellular Interactions of Protein May Enhance Clearing of Amyloid Plaques to Treat Alzheimer s Disease

Manipulating Cellular Interactions of Protein May Enhance Clearing of Amyloid Plaques to Treat Alzheimer s Disease
insideprecisionmedicine.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from insideprecisionmedicine.com Daily Mail and Mail on Sunday newspapers.

New Alzheimer s Treatment Strategies May Alter Cell Interactions

New Alzheimer s Treatment Strategies May Alter Cell Interactions
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Altering cellular interactions around amyloid plaques may offer novel Alzheimer s treatment strategies

Researchers at the Icahn School of Medicine at Mount Sinai have made a significant breakthrough in Alzheimer s disease research by identifying a novel way to potentially slow down or even halt disease progression. The study, which focuses on the role of reactive astrocytes and the plexin-B1 protein in Alzheimer s pathophysiology, provides crucial insights into brain cell communication and opens the door to innovative treatment strategies. It was published in Nature Neuroscience on May 27.

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