Showing posts with label Neuroscience News. Show all posts
Showing posts with label Neuroscience News. Show all posts

Friday, August 18, 2017

Solving the Puzzle of Alzheimer’s Disease

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Here is a great 
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The Dementia Caregiver's Little Book of Hope [Kindle Edition

Summary: A new study reports a compound by the name of AC253 may inhibit amyloid beta.

Source: University of Alberta.
UAlberta scientist seeks to neutralize ‘rogue’ protein believed to be a key player in the development of Alzheimer’s.
Every day tens of thousands of Canadians unwillingly find themselves becoming shadows of their former selves. They grasp onto moments of clarity–fleeting windows of time–before slipping away again into confusion; robbed of memories, talents and their very personalities.
Alzheimer’s is a heart-wrenching disease that directly affects half a million Canadians. There is no cure, let alone treatment to stop progression of the disease. While current answers are few, research at the University of Alberta is spearheading the discovery of new potential therapies for the future.
A study published in the journal Alzheimer’s and Dementia: Translational Research and Clinical Intervention examines if a compound called AC253 can inhibit a “rogue” protein called amyloid. The protein is found in large numbers in the brains of Alzheimer’s patients and is suspected to be a key player in the development of the disease.
“The way I look at it, it’s hard to ignore the biggest player on the stage, which is the amyloid protein. Whatever treatment you develop, it’s got to address that player,” says Jack Jhamandas, Professor of Neurology in the Faculty of Medicine & Dentistry at the University of Alberta and senior author of the study. “In our previous work we have shown that there are certain drug compounds that can protect nerve cells from amyloid toxicity. One of these is a compound we call AC253. It sounds like an Air Canada flight. I hope this one is on time and takes us to our destination!”
The team, comprised of postdoctoral fellows and research associates Rania Soudy, Aarti Patel and Wen Fu, tested AC253 on mice bred by David Westaway (a University of Alberta collaborator) to develop Alzheimer’s. Mice were treated with a continuous infusion of AC253 for five months, beginning at three months of age before development of the disease.
“We found at eight months, when these mice typically have a lot of amyloid in the brain and have a lot of difficulty in memory and learning tasks, that they actually improved their memory and learning,” says Jhamandas, also a member of the U of A’s Neuroscience and Mental Health Institute.
As part of the study, the team of local and international researchers also developed and tested a more efficient method of getting the compound into the brain. Given an injection three times a week for 10 weeks of AC253 with a slightly modified structure, they again found there was an improvement in memory and learning performance. In addition, the researchers noted there was a lower amount of amyloid in the brains of mice treated with the compound compared to mice that did not get the drug, and that they exhibited reduced inflammation of the brain.
A diagram of an alzhiemer's brain.
The team is now planning additional studies to examine optimal dosage and methods of further improving the compound to increase its effectiveness in the brain. Much more work is needed before the research can move to human trials. Image is for illustrative purposes only.
The team is now planning additional studies to examine optimal dosage and methods of further improving the compound to increase its effectiveness in the brain. Much more work is needed before the research can move to human trials.
Despite the long path still ahead, Jhamandas believes the findings offer both hope and a new way forward to unlock the Alzheimer’s enigma.
“Alzheimer’s is a complex disease. Not for a moment do I believe that the solution is going to be a simple one, but maybe it will be a combination of solutions.”
“We can’t build nursing homes and care facilities fast enough because of an aging population. And that tsunami, the silver tsunami, is coming if not already here,” adds Jhamandas. “At a human level, if you can keep someone home instead of institutionalized, even for a year, what does it mean to them? It means the world to them and their families.”
ABOUT THIS ALZHEIMER’S DISEASE RESEARCH ARTICLE
Funding: Funding provided by Canadian Institutes of Health Research, Alberta Innovates, Alberta Prion Research Institute, Alzheimer Society of Alberta, University Hospital Foundation.
Source: Ross Neitz – University of Alberta 
Image Source: NeuroscienceNews.com image is in the public domain.
Original Research: Full open access research for “Cyclic AC253, a novel amylin receptor antagonist, improves cognitive deficits in a mouse model of Alzheimer’s disease” by Rania Soudy1, Aarti Patel, Wen Fu, Kamaljit Kaur, David MacTavish, David Westaway, Rachel Davey, Jeffrey Zajac, and Jack Jhamandas in Alzheimer’s and Dementia. Published online December 9 2016 doi:10.1016/j.trci.2016.11.005
CITE THIS NEUROSCIENCENEWS.COM ARTICLE
University of Alberta “Solving the Puzzle of Alzheimer’s Disease.” NeuroscienceNews. NeuroscienceNews, 16 February 2017.
.

Abstract
Cyclic AC253, a novel amylin receptor antagonist, improves cognitive deficits in a mouse model of Alzheimer’s disease
Introduction
Amylin receptor serves as a portal for the expression of deleterious effects of amyloid β-protein (Aβ), a key pathologic hallmark of Alzheimer’s disease. Previously, we showed that AC253, an amylin receptor antagonist, is neuroprotective against Aβ toxicity in vitro and abrogates Aβ-induced impairment of hippocampal long-term potentiation.
Methods
Amyloid precursor protein–overexpressing TgCRND8 mice received intracerebroventricularly AC253 for 5 months. New cyclized peptide cAC253 was synthesized and administered intraperitoneally three times a week for 10 weeks in the same mouse model. Cognitive functions were monitored, and pathologic changes were quantified biochemically and immunohistochemically.
Results
AC253, when administered intracerebroventricularly, improves spatial memory and learning, increases synaptic integrity, reduces microglial activation without discernible adverse effects in TgCRND8 mice. cAC253 demonstrates superior brain permeability, better proteolytic stability, and enhanced binding affinity to brain amylin receptors after a single intraperitoneal injection. Furthermore, cAC253 administered intraperitoneally also demonstrates improvement in spatial memory in TgCRND8 mice.
Discussion
Amylin receptor is a therapeutic target for Alzheimer’s disease and represents a disease-modifying therapy for this condition.
“Cyclic AC253, a novel amylin receptor antagonist, improves cognitive deficits in a mouse model of Alzheimer’s disease” by Rania Soudy1, Aarti Patel, Wen Fu, Kamaljit Kaur, David MacTavish, David Westaway, Rachel Davey, Jeffrey Zajac, and Jack Jhamandas in Alzheimer’s and Dementia. Published online December 9 2016 doi:10.1016/j.trci.2016.11.005
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Tuesday, May 16, 2017

Low Body Mass NOT a Cause for Alzheimer's

Caregivers, and healthcare professionals,here is some great information

Here is a great 
dementia resource for caregivers and healthcare professionals,

Your residents will love the Amazon Kindle Fire

Here is information on being the best 
caregiver you can be


Here is a way for nurses administrators, social workers and other health care  professionals to get an easyceu or two

Follow 
alzheimersideas on twitter




The Dementia Caregiver's Little Book of Hope [Kindle Edition

Neuroscience news

Summary: Low body mass index does not appear to be a causal risk factor for developing Alzheimer’s disease, a new study reports.
Source: Endocrine Society.
Research clarifies past studies on weight, common cause of dementia.
A new large-scale genetic study found that low body mass index (BMI) is likely not a causal risk factor for Alzheimer’s disease, as earlier research had suggested, according to a study published in the Endocrine Society’s Journal of Clinical Endocrinology & Metabolism.
“Although prior studies found an association between Alzheimer’s disease and low BMI, the new findings suggest this is not a causal relationship,” said the study’s senior author, Ruth Frikke-Schmidt, M.D., D.M.Sc., Ph.D., Chief Physician at Rigshospitalet in Copenhagen, Denmark, and Associate Research Professor at the University of Copenhagen. “The association can likely be explained by the fact that individuals with Alzheimer’s disease are more likely to have low BMIs due to loss of appetite and weight loss in the early stages of the disease.”
More than 5 million Americans have Alzheimer’s disease, according to the Alzheimer’s Association’s 2017 Alzheimer’s Disease Facts and Figures Report. The disease affects the brain and is a common form of dementia. It is the sixth leading cause of death in the United States.
To examine the association between Alzheimer’s disease and low BMI, the researchers analyzed blood and DNA samples from 95,578 participants in the Copenhagen General Population Study (CGPS). Of the participants, 645 individuals developed Alzheimer’s disease.
The researchers analyzed the study participants’ DNA for the presence of five genetic variants that have strong associations with BMI. Based on how many variants were found, participants were divided into four groups to reflect the likelihood of low BMI. The researchers also analyzed data from up to 249,796 individuals participating in the Genetic Investigation of ANthropometric Traits (GIANT) consortium for the genetic variants closely linked to low BMI.
Image shows an old lady.
The analysis found the presence of the genetic variants tied to low BMI was not associated with increased risk of Alzheimer’s disease. NeuroscienceNews.com image is for illustrative purposes only.
The analysis found the presence of the genetic variants tied to low BMI was not associated with increased risk of Alzheimer’s disease. For comparison, the researchers examined if individuals with genetic variants connected to high BMI were more likely to have type 2 diabetes and did find the expected causal relationship.
“We found individuals with lifelong low BMI due to genetic variation were not at increased risk of Alzheimer’s disease,” Frikke-Schmidt said. “Since genetic variants are not affected by other risk factors or diseases, this is a clean measure that can help to determine causality. The findings highlight that testing causality of a risk factor is pivotal before considering changing public health recommendations based on observational data alone.”
ABOUT THIS NEUROSCIENCE RESEARCH ARTICLE
Other authors of the study include: Liv Tybjærg Nordestgaard and Anne Tybjærg-Hansen, of Rigshospitalet; and Børge G. Nordestgaard, of Herlev and Gentofte Hospital. All three also are affiliated with the University of Copenhagen.
Funding: The research was supported by the Danish Medical Research Council, the Lundbeck Foundation, the Alzheimer Research Foundation, and the Research Fund at the Capital Region of Denmark.
Source: Jenni Glenn Gingery – Endocrine Society 
Image Source: NeuroscienceNews.com image is in the public domain.
Original Research: Abstract for “Body Mass Index and Risk of Alzheimer Disease: a Mendelian Randomization Study of 399,536 Individuals” by Liv Tybjærg Nordestgaard, Anne Tybjærg-Hansen, Børge G. Nordestgaard, and Ruth Frikke-Schmidt in Journal of Clinical Endocrinology and Metabolism. Published online May 9 2017 doi:10.1210/jc.2017-00195
CITE THIS NEUROSCIENCENEWS.COM ARTICLE
Endocrine Society “Study Finds Alzheimer’s Disease Likely Not Caused by Low Body Mass Index.” NeuroscienceNews. NeuroscienceNews, 9 May 2017.
.

Abstract
Body Mass Index and Risk of Alzheimer Disease: a Mendelian Randomization Study of 399,536 Individuals

Context:

Recently, data on two million people established that low body mass index (BMI) is associated with increased risk of dementia. Whether this observational association reflects a causal effect remains to be clarified.
Objective:
We tested the hypothesis that there is a causal association between low BMI and high risk of Alzheimer disease.

Design, Setting and Participants:

Using a Mendelian randomization approach, we studied 95,578 individuals from the Copenhagen General Population Study (CGPS) with up to 36 years of follow-up, and consortia data on 303,958 individuals from the Genetic Investigation of Anthropometric Traits (GIANT) and the International Genomics of Alzheimer’s Project (IGAP).
Main Outcome Measure:
Risk of Alzheimer disease.

Results:

The causal odds ratio for a 1 kg/m2 genetically determined lower BMI was 0.98 (95 % confidence interval: 0.77-1.23) for a weighted allele score in the CGPS. Using 32 BMI decreasing variants from GIANT and IGAP the causal odds ratio for Alzheimer disease for a one standard deviation lower genetically determined BMI was 1.02 (0.86-1.22). Corresponding observational hazard ratios from the CGPS were 1.07 (1.05-1.09) and 1.32 (1.20-1.46) for a 1 kg/m2 and a 1 standard deviation lower BMI, respectively.
Conclusions:
Genetic and hence lifelong low BMI is not associated with increased risk of Alzheimer disease in the general population. These data suggest that low BMI is not a causal risk factor for Alzheimer disease, and that the corresponding observational association likely is explained by reverse causation or confounding.
“Body Mass Index and Risk of Alzheimer Disease: a Mendelian Randomization Study of 399,536 Individuals” by Liv Tybjærg Nordestgaard, Anne Tybjærg-Hansen, Børge G. Nordestgaard, and Ruth Frikke-Schmidt in Journal of Clinical Endocrinology and Metabolism. Published online May 9 2017 doi:10.1210/jc.2017-00195


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