PsyPost
  • Mental Health
  • Social Psychology
  • Cognitive Science
  • Neuroscience
  • About
No Result
View All Result
Join
My Account
PsyPost
No Result
View All Result
Home Exclusive Mental Health Dementia Alzheimer's Disease

Boosting a cell-protecting protein may help slow Alzheimer’s disease progression

by PLoS
March 2, 2017
Reading Time: 2 mins read
Illustration of the characteristics of Alzheimer's Disease. (Photo credit: NIH)

Illustration of the characteristics of Alzheimer's Disease. (Photo credit: NIH)

Share on TwitterShare on Facebook

A new study of Alzheimer’s disease by Fiona Kerr and Linda Partridge at University College London, uses mouse and fruit fly models to show that Keap1, which inhibits the protective protein Nrf2, is a promising target for new preventative drugs for Alzheimer’s and other neurodegenerative diseases. Their findings are reported in a study published March 2nd, 2017 in PLOS Genetics.

While doctors can treat the symptoms of Alzheimer’s disease after a patient shows symptoms, there are no drugs available to prevent the development of this devastating yet common disease, or to stop its progression. One protein of interest is Nrf2, which normally protects brain cells from stressful conditions but, for unknown reasons, Nrf2 levels decrease in the neurons of people with Alzheimer’s disease.

Previous attempts to activate Nrf2 have created toxic side effects, so scientists used fruit fly models to investigate Keap1, an inhibitor of Nrf2. By blocking the interaction between Keap1 and Nrf2 in fly brains, researchers showed that they could prevent the damaging effects of amyloid-beta peptides, which create the characteristic plaques in the brains of Alzheimer’s patients. A chemical Keap1-Nrf2 disruptor also prevented amyloid toxicity in mouse nerve cells.

The study provides the first evidence that boosting Nrf2 by blocking its inhibitor, Keap1, can protect neurons from mice from the effects of the Alzheimer’s-causing amyloid beta peptides. The findings suggest that compounds that block this interaction are worthy targets for the development of new drugs, perhaps with fewer side effects, to prevent Alzheimer’s disease and other neurodegenerative conditions.

Fiona Kerr adds: “As our population ages the incidence of dementia is increasing dramatically and there is an urgent need to find new drugs to protect nerve cells and halt the progression of the disease. Our findings are important because chemicals that block Keap1 increase activity of a cell protective protein called Nrf2, and so they have potential to prevent this nerve cell loss in Alzheimer’s disease and other forms of dementia.

Our work is the first step in identifying Keap1 as an effective target to prevent neuronal damage in Alzheimer’s. The humble fruit fly is a powerful tool to identify new genetic causes of human diseases, including neuronal degeneration, and our study demonstrates that these findings have the potential to lead to the development of new compounds that are effective in mammalian systems. More work is now required to develop these Keap1-Nrf2 disrupting chemicals as drugs for use in whole organisms and to test whether this approach can protect human nerve cells from the damage associated with Alzheimer’s”.

Google News Preferences Add PsyPost to your preferred sources
TweetSendScanShareSendPin1ShareShareShareShareShare

Follow PsyPost

The latest research, however you prefer to read it.

Daily newsletter

One email a day. The newest research, nothing else.

Google News

Get PsyPost stories in your Google News feed.

Add PsyPost to Google News
RSS feed

Use your favorite reader.

Copy RSS URL
Social media
Support independent science journalism

Ad-free reading, full archives, and weekly deep dives for members.

Become a member

Trending

  • How personality and social context shape adolescent loneliness
  • Weightlifting offers large antidepressant effects for young women with anxiety, regardless of intensity
  • Brain scans reveal how recurrent depression leaves a lasting mark on the amygdala
  • A clever psychological test reveals the subtle detail that makes us want to work harder
  • Creatine improves muscle mass and cognitive function in older adults even without exercise

Science of Money

  • Why highly adaptable business clients aren’t always the most satisfied
  • The four ways underdog startups survive corporate giants
  • How AI-generated plain English changes investor interest in mutual funds
  • What 18 years of brokerage data reveals about selling losing stocks
  • When edgy brands meet manipulative consumers: The backfire effect of dark personalities

Recent

  • Adolescent narcissism brings brief popularity but not likeability among peers, study finds
  • Unintentional mind wandering disrupts attention in ADHD through two different mechanisms
  • How virtual reality is changing brain-training technology
  • A 20-minute workout protects memory after sleep loss just as well as a 90-minute nap
  • How personality and social context shape adolescent loneliness
  • Federal science funding cuts push young U.S. researchers to consider moving abroad
  • Autistic individuals might be somewhat better at reading emotions of other autistic people
  • Therapeutic gardening improves mental health for adults with chronic conditions
  • Weightlifting offers large antidepressant effects for young women with anxiety, regardless of intensity
  • Different video game genres alter brain activity and enhance cognition in unique ways

PsyPost is a psychology and neuroscience news website dedicated to reporting the latest research on human behavior, cognition, and society. (READ MORE...)

  • Mental Health
  • Neuroimaging
  • Personality Psychology
  • Social Psychology
  • Artificial Intelligence
  • Cognitive Science
  • Psychopharmacology
  • Contact us
  • Disclaimer
  • Privacy policy
  • Terms and conditions

(c) PsyPost Media Inc

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

Subscribe
  • My Account
  • Cognitive Science Research
  • Mental Health Research
  • Social Psychology Research
  • Drug Research
  • Relationship Research
  • About PsyPost
  • Contact
  • Privacy Policy

(c) PsyPost Media Inc