Memory Loss
Senior Health

A Protein May Help Fight Aging Memory

Investigators have discovered an interesting way that may improve memory and learning in aging brains: by increasing the quantity of a protein in nerve cells.

The study, led by scientists at The Scripps Research Institute (TSRI), the Veterans Affairs San Diego Healthcare System (VA) and University of California (UC) San Diego School of Medicine, was published in the journal Biological Psychiatry.

ΓÇ£This is a novel strategy for treating neurodegenerative diseases, and it underscores the importance of brain cholesterol,ΓÇ¥ said Chitra Mandyam, associate professor at TSRI and co-first author of the study with Jan M. Schilling of UC San Diego and the VA.

Senior author Brian Head, a research scientist with the VA and associate professor at UC San Diego, added, ΓÇ£By bringing back this protein, youΓÇÖre actually bringing cholesterol back to the cell membrane, which is very important for forming new synaptic contacts.ΓÇ¥

According to a news release from The Scripps Research Institute, the study focuses on a specific membrane protein called caveolin-1 (Cav-1) and expands scientistsΓÇÖ understanding of neuroplasticity, the ability of neural pathways to grow in response to new stimuli.

Previous work by HeadΓÇÖs group at the VA and at UC San Diego had shown that raising Cav-1 levels supported healthy ΓÇ£raftsΓÇ¥ of cholesterol involved in neuron growth and cell signaling; however, it wasnΓÇÖt clear if this new growth actually improved brain function or memory.

To find out, the researchers delivered Cav-1 directly into a region of the brain known as the hippocampus in adult and ΓÇ£agedΓÇ¥ mice. The hippocampus is a structure thought to participate in the formation of contextual memoriesΓÇöfor example, if one remembers a past picnic when later visiting a park.

In addition to improved neuron growth, treated mice demonstrated better retrieval of contextual memoriesΓÇöthey froze in place, an indication of fear, when placed in a location where theyΓÇÖd once received small electric shocks.

Mandyam and Head believe that this type of gene therapy may be a path toward treating age-related memory loss. The researchers are now testing this gene therapy in mouse models of AlzheimerΓÇÖs disease and expanding it to possibly treat injuries such as spinal cord injury and traumatic brain injury. Mandyam said this new understanding of Cav-1 and neuroplasticity could also be relevant to memory loss due to alcohol and drug use.

ΓÇ£WeΓÇÖre very interested in studying whether we can manipulate Cav-1 in other areas of the brain,ΓÇ¥ Mandyam said.

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