Showing posts with label hippocampus. Show all posts
Showing posts with label hippocampus. Show all posts

Sunday, 15 April 2012

BU Researchers Identify Genes that Influence Hippocampal Volume

The hippocampus shrinks before and during the progression of Alzheimer's disease, but other factors, such as vascular risk factors and normal aging, also lead to the decrease in size.

Alzheimer's Reading Room

Sudha Seshadri
An international team of researchers led by the Boston University School of Medicine (BUSM) has identified four loci that appear to be associated with decreasing the volume of the hippocampus.

The hippocampus is the region of the brain that plays an important role in the formation of specific, new memories, which is an ability that patients with Alzheimer's disease lose.

The findings may have broad implications in determining how age, Alzheimer's disease and other diseases impact the function and integrity of the hippocampus.

Sudha Seshadri, MD, professor of neurology at BUSM, is a senior author of the study, which will be published online in Nature Genetics.

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Previous research has shown that the hippocampus is one of the brain regions involved with short and long-term memory processes and that it shrinks with age. It also is one of the first regions to exhibit damage from Alzheimer's disease, which can cause memory problems and disorientation.
"One of the problems with studying the genetics of a disease like Alzheimer's, which becomes symptomatic later in life, is that many people die of other causes before they reach the age at which they might have manifested the clinical dementia associated with the disease," said Seshadri. "To get around this issue, we have been studying the genetics of traits that we know are associated with a high future risk of Alzheimer's disease but that can be measured in everyone, often 10 to 20 years before the age when most persons develop clinical symptoms."
The potential genetic traits are called endophenotypes, and hippocampal volume is one such trait. The hippocampus shrinks before and during the progression of Alzheimer's disease, but other factors, such as vascular risk factors and normal aging, also lead to the decrease in size.

"Our research team wanted to pinpoint the genetic causes of changes in the hippocampal volume in a sample of apparently normal older persons," said Seshadri.

The Cohorts for Heart and Aging Research in Genomic Epidemiology (CHARGE) Consortium allowed the researchers to gather data on hippocampal volume from 9,232 people who did not have dementia. They identified four genetic loci, including seven genes in or near these loci that appear to determine hippocampal volume.

The results show that if one of the genes is altered, the hippocampus is, on average, the same size as that of a person four to five years older. These results were replicated in two large European samples that included a mixed-age sample that included some participants with cognitive impairment.

"The findings indicate that these loci may have broad implications for determining the integrity of the hippocampus across a range of ages and cognitive capacities," said Seshadri. One of the genes identified by the researchers was also shown to play a role in memory performance in a different data sample.

The identified genetic associations indicate that certain genes could influence cell death by apoptosis, brain development and neuronal movement during brain development, and oxidative stress. Additionally, the researchers found that the genes play a role in ubiquitination, which is a process by which damaged proteins are removed, whereas other genes code for enzymes targeted by new diabetes medications.

"Future studies need to further explore these genetic regions in order to better understand the role of these genes in determining hippocampal volume," added Seshadri.

One of the largest cohorts involved in the study was the Framingham Heart Study cohort, affiliated with BUSM. Seshadri is a Senior Investigator at the Framingham Heart Study.

"Such important research would not be possible without the ongoing dedication of the Framingham study participants, which now span three generations and six decades," said Seshadri.
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This study was funded primarily through the National Institute on Aging.

Source Euereka Alert and Boston University School of Medicine.


More Insight and Advice from the Alzheimer's Reading Room

Original content Bob DeMarco, the Alzheimer's Reading Room

Wednesday, 28 May 2008

A Bigger Brain May Help Protect You from Alzheimer’s

While nobody can control the size of their brains, experts advise that mentally stimulating activities like completing puzzles, traveling, learning a new language, playing a musical instrument, or doing crossword puzzles can help stimulate new connections between brain cells.
A Bigger Brain May Help Protect You from Alzheimer’s


A large hippocampus – a part of the brain devoted to memory – may help ward off Alzheimer’s disease, a new study reports. The findings offer new clues into why some elderly people remain mentally sharp and alert well into their 80s and beyond, even though their brains are riddled with the plaques and tangles of Alzheimer’s disease.

The findings help support the notion of cognitive reserve, the theory that a brain rich in interconnections and working nerve cells may help to ward off the symptoms of Alzheimer’s disease even when a certain amount of brain tissue is already damaged. With a larger hippocampus, the more brain cells. According to the theory, if some cells die off from the ravages of Alzheimer’s or related ailments, enough cells remain so that people can continue to think and function normally..

From autopsies, researchers have long known that some people die with sharp minds and perfect memories, even though their brains are riddled with the plaques and tangles of Alzheimer’s disease. The new research suggests that people who have a larger hippocampus, a seahorse-shaped part of the brain that is critical for memory, may as a result be protected against Alzheimer’s.

“This larger hippocampus may protect these people from the effects of Alzheimer’s disease-related brain changes,” said study author Deniz Erten-Lyons, M.D., with Oregon Health & Science University in Portland. “Hopefully this will lead us eventually to prevention strategies.”

For the study, presented April 15 at the American Academy of Neurology 60th Annual Meeting in Chicago, researchers evaluated the brains of 12 people who had sharp memories and thinking skills at the time of their death. Autopsies revealed that their brains contained large numbers of Alzheimer’s plaques, even though they remained mentally sharp and alert. Their brains were compared to those of 23 people who had the same amount of plaques in their brains, but had been diagnosed with Alzheimer’s disease before death.

Researchers found that the volume of the hippocampus area of the brain was 20 percent larger in the cognitively intact group compared to the Alzheimer's disease group with dementia. There were no other demographic, clinical or pathological differences between the groups. The results remained the same regardless of whether they were men or women, their age and the total brain volume.

The findings help to explain why many people remain mentally sharp well into their 80s and beyond, even though autopsies after death show that their brains contain extensive damage like that seen in Alzheimer’s disease.

While nobody can control the size of their brains, experts advise that mentally stimulating activities like completing puzzles, traveling, learning a new language, playing a musical instrument, or doing crossword puzzles can help stimulate new connections between brain cells. These strengthened connections may help to preserve thinking and memory. Maintaining strong social ties and exercising into old age may also help to protect the brain, studies show.

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Bob DeMarco is the Founder of the Alzheimer's Reading Room and an X Wall Street executive turned full time Alzheimer's caregiver. The blog contains more than 2,310 articles with more than 285,100 links on the Internet. Bob resides in Delray Beach, FL.




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Original content Bob DeMarco, the Alzheimer's Reading Room