February 16, 2026 09:15 pm (IST)
Follow us:
facebook-white sharing button
twitter-white sharing button
instagram-white sharing button
youtube-white sharing button
Actor Rajpal Yadav granted interim bail in ₹9-crore cheque bounce case | Learn AI or become redundant: Microsoft India President issues stark message | India’s wholesale inflation rises to 1.81% in January as manufacturing prices surge | 'India at forefront of AI revolution': PM Modi welcomes world leaders to Delhi summit | Rs 5,000 to women ahead of Tamil Nadu polls! Vijay slams Stalin, says: ‘take the money, blow the whistle’ | Modi congratulates Tarique Rahman as BNP clinches majority in Bangladesh polls | Bangladesh Polls: Tarique Rahman-led BNP secures 'absolute majority' with 151 seats in historic comeback | BJP MP files notice to cancel Rahul Gandhi's Lok Sabha membership, seeks life-long ban | Arrested in the morning, out by evening: Tycoon’s son walks free in Lamborghini crash case | ‘Why should you denigrate a section of society?’: Supreme Court pulls up ‘Ghooskhor Pandat’ makers
Internet wallpapaer image

Researchers identify novel molecular mechanism involved in Alzheimer's

| @indiablooms | Feb 12, 2019, at 07:43 pm

New York, Feb 12 (IBNS): Researchers at Wake Forest Baptist Health have identified a novel mechanism and potential new therapeutic target for Alzheimer’s disease (AD).

The findings are published in the current issue of the Journal of Clinical Investigation.

"Alzheimer’s is such a devastating disease and currently there is no cure or effective therapy," said Tao Ma, Ph.D., assistant professor of gerontology and geriatric medicine at Wake Forest School of Medicine, part of Wake Forest Baptist Health.

"All completed clinical trials of new drugs have failed so there is clearly a need for novel therapeutic targets for potential treatments."

Alzheimer’s is characterized by profound memory loss and synaptic failure. Although the exact cause of Alzheimer’s remains unclear, it is well established that maintaining memory and synaptic plasticity requires protein synthesis.

Ma’s team and others recently have shown AD-associated activation of a signaling molecule termed eEF2K leads to inhibition of protein synthesis. In this study they wanted to determine if suppression of eEF2K could improve protein synthesis capacity and consequently alleviate the cognitive and synaptic impairments associated with the disease.

The researchers used a genetic approach to repress the activity of eEF2K in two different Alzheimer’s mouse models. They found that genetic suppression of eEF2K prevented memory loss in those animal models and significantly improved synaptic function.

"These findings are encouraging and provide a new pathway for further research," Ma said.

His team hopes next to test this approach in additional animal studies and eventually in human trials using small molecule inhibitors targeting eEF2K.

 

Internet wallpapaer image

 

 

Support Our Journalism

We cannot do without you.. your contribution supports unbiased journalism

IBNS is not driven by any ism- not wokeism, not racism, not skewed secularism, not hyper right-wing or left liberal ideals, nor by any hardline religious beliefs or hyper nationalism. We want to serve you good old objective news, as they are. We do not judge or preach. We let people decide for themselves. We only try to present factual and well-sourced news.

Support objective journalism for a small contribution.