Thursday, December 31, 2020

All NewsScienceHealth Drug Reverses Age-Related Mental Decline Within Days, Suggesting Lost Cognitive Ability is Not Permanent

Just a few doses of an experimental drug that reboots protein production in cells can reverse age-related declines in memory and mental flexibility in mice, according to a new study by UC San Francisco scientists.

The drug, called ISRIB, has already been shown in laboratory studies to restore memory function months after traumatic brain injury (TBI), reverse cognitive impairments in Down Syndrome, prevent noise-related hearing loss, fight certain types of prostate cancer, and even enhance cognition in healthy animals.

In the new study, published Dec. 1 in the open-access journal eLife, researchers showed rapid restoration of youthful cognitive abilities in aged mice, accompanied by a rejuvenation of brain and immune cells that could help explain improvements in brain function—and with no side effects observed.

“ISRIB’s extremely rapid effects show for the first time that a significant component of age-related cognitive losses may be caused by a kind of reversible physiological “blockage” rather than more permanent degradation,” said Susanna Rosi, PhD, Lewis and Ruth Cozen Chair II and professor in the departments of Neurological Surgery and of Physical Therapy and Rehabilitation Science.

“The data suggest that the aged brain has not permanently lost essential cognitive capacities, as was commonly assumed, but rather that these cognitive resources are still there but have been somehow blocked, trapped by a vicious cycle of cellular stress,” added Peter Walter, PhD, a professor in the UCSF Department of Biochemistry and Biophysics and a Howard Hughes Medical Institute investigator. “Our work with ISRIB demonstrates a way to break that cycle and restore cognitive abilities that had become walled off over time.”

Rebooting cellular protein production holds key to aging

Walter has won numerous scientific awards, including the Breakthrough, Lasker and Shaw prizes, for his decades-long studies of cellular stress responses. ISRIB, discovered in 2013 in Walter’s lab, works by rebooting cells’ protein production machinery after it gets throttled by one of these stress responses – a cellular quality control mechanism called the integrated stress response (ISR; ISRIB stands for ISR InhiBitor).

The ISR normally detects problems with protein production in a cell—a potential sign of viral infection or cancer-promoting gene mutations—and responds by putting the brakes on cell’s protein-synthesis machinery. This safety mechanism is critical for weeding out misbehaving cells, but if stuck in the ‘on’ position in a tissue like the brain, it can lead to serious problems, as cells lose the ability to perform their normal activities, according to Walter and colleagues.

In particular, their recent animal studies have implicated chronic ISR activation in the persistent cognitive and behavioral deficits seen in patients after TBI, by showing that, in mice, brief ISRIB treatment can reboot the ISR and restore normal brain function almost overnight.

The cognitive deficits in TBI patients are often likened to premature aging, which led Rosi and Walter to wonder if the ISR could also underlie purely age-related cognitive decline. Aging is well known to compromise cellular protein production across the body, as life’s many insults pile up and stressors like chronic inflammation wear away at cells, potentially leading to widespread activation of the ISR.

“We’ve seen how ISRIB restores cognition in animals with traumatic brain injury, which in many ways is like a sped-up version of age-related cognitive decline,” said Rosi, who is director of neurocognitive research in the UCSF Brain and Spinal Injury Center and a member of the UCSF Weill Institute for Neurosciences. “It may seem like a crazy idea, but asking whether the drug could reverse symptoms of aging itself was just a logical next step.”

Signature effects of aging disappeared literally overnight

In the new study, researchers led by Rosi lab postdoc Karen Krukowski, PhD, trained aged animals to escape from a watery maze by finding a hidden platform, a task that is typically hard for older animals to learn. But animals who received small daily doses of ISRIB during the three-day training process were able to accomplish the task as well as youthful mice—and much better than animals of the same age who didn’t receive the drug.

The researchers then tested how long this cognitive rejuvenation lasted and whether it could generalize to other cognitive skills. Several weeks after the initial ISRIB treatment, they trained the same mice to find their way out of a maze whose exit changed daily – a test of mental flexibility for aged mice who, like humans, tend to get increasingly stuck in their ways. The mice who had received brief ISRIB treatment three weeks before still performed at youthful levels, while untreated mice continued to struggle.

To understand how ISRIB might be improving brain function, the researchers studied the activity and anatomy of cells in the hippocampus, a brain region with a key role in learning and memory, just one day after giving animals a single dose of ISRIB. They found that common signatures of neuronal aging disappeared literally overnight: neurons’ electrical activity became more sprightly and responsive to stimulation, and cells showed more robust connectivity with cells around them while also showing an ability to form stable connections with one another usually only seen in younger mice.

The researchers are continuing to study exactly how the ISR disrupts cognition in aging and other conditions and to understand how long ISRIB’s cognitive benefits may last. Among other puzzles raised by the new findings is the discovery that ISRIB also alters the function of the immune system’s T cells, which also are prone to age-related dysfunction. The findings suggest another path by which the drug could be improving cognition in aged animals, and could have implications for diseases from Alzheimer’s to diabetes that have been linked to heightened inflammation caused by an aging immune system.

“This was very exciting to me because we know that aging has a profound and persistent effect on T cells and that these changes can affect brain function in the hippocampus,” said Rosi. “At the moment, this is just an interesting observation, but it gives us a very exciting set of biological puzzles to solve.”

Success shows the ‘serendipity’ of basic research

Rosi and Walter were introduced by neuroscientist Regis Kelly, PhD, executive director of the University of California’s QB3 biotech innovation hub, following Walter’s 2013 study showing that the drug seemed to instantly enhance cognitive abilities in healthy mice. To Rosi, the results from that study implied some walled-off cognitive potential in the brain that the molecule was somehow unlocking, and she wondered if this extra cognitive boost might benefit patients with neurological damage from traumatic brain injury.

The labs joined forces to study the question in mice, and were astounded by what they found. ISRIB didn’t just make up for some of the cognitive deficits in mice with traumatic brain injury – it erased them. “This had never been seen before,” Rosi said. “The mantra in the field was that brain damage is permanent – irreversible. How could a single treatment with a small molecule make them disappear overnight?”

Further studies demonstrated that neurons throughout the brains of animals with traumatic brain injury are thoroughly jammed up by the ISR. Using ISRIB to release those brakes lets brain cells immediately get back to their normal business. More recently, studies in animals with very mild repetitive brain injury – akin to pro athletes who experience many mild concussions over many years – showed that ISRIB could reverse increased risk-taking behavior associated with damage to self-control circuits in the frontal cortex.

“It’s not often that you find a drug candidate that shows so much potential and promise,” Walter says, calling it “just amazing”.

No side effects

One might think that interfering with the ISR, a critical cellular safety mechanism, would be sure to have serious side effects, but so far in all their studies, the researchers have observed none. This is likely due to two factors. First, it takes just a few doses of ISRIB to reset unhealthy, chronic ISR activation back to a healthier state. Second, ISRIB has virtually no effect when applied to cells actively employing the ISR in its most powerful form – against an aggressive viral infection, for example.

SRIB has been licensed by Calico, a South San Francisco, Calif. company exploring the biology of aging, and the idea of targeting the ISR to treat disease has been picked up by many other pharmaceutical companies, Walter says.

“It almost seems too good to be true, but with ISRIB we seem to have hit a sweet spot for manipulating the ISR with an ideal therapeutic window,” Walter said.


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Thursday, July 05, 2018

Importance of Vitamin B

A vitamin is an organic compound, which is required by the human body in appropriate amounts to ensure the proper and healthy functioning of the various body parts. These vitamins help you in being healthy and maintaining an optimum level of brain activity. The deficiency of the same can cause you to have various health issues and illnesses.
B Vitamins are of various subtypes, and they are collectively known as B-Complex Vitamins. These vitamins are medically proven to relieve stress and boost up your energy levels. They also fight depression, restrict brain ageing and help you to live a longer life.

Here's how B vitamins help in keeping your brain healthy.
  • Prevent mental decline: The three vitamin B types that help to avoid a mental decline are B6, B12, and B9 (Folic Acid). Additionally, these 3 vitamins also prevent dementia and Alzheimer's disease.
  • Act as dopamine boosters: Dopamine is a neurotransmitter inside the brain that that boosts productivity, motivation and focus among human beings. This helps to ensure your mental well-being keep you mentally happy. B vitamins enhance your brain health by facilitating an increase in dopamine levels.
  • Lets you avoid mental disorders: The lack of Vitamin B12 leads to certain mental disorders like- dementia, brain atrophy, brain shrinkage, depression, and schizophrenia. You can avoid this condition by taking Vitamin B12 supplements.
  • Sharpen memory: In case you have a short-term memory or face other memory problems, various forms of B vitamins supplements will help you to regain the optimal state of mind.
THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                                                                                                                                                                                        PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/  


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Saturday, April 29, 2017

Alzheimer's vs. Dementia: How They Differ And What To Do

Dementia and Alzheimer's disease may share many of the same symptoms, but the two are not different names for the same condition. Here’s what you need to know about both in order for you to avoid this common mistake.

Dementia is a syndrome, or a group of symptoms that consistently occur together. It is not a specific disease. The term “dementia” is used to describe a set of symptoms that can include memory loss, difficulty thinking, problem solving, or issues with language. Dementia is caused by damage to the brain cells, and because Alzheimer’s is a disease that destroys the brain, it is one of the most common causes of dementia.
 
As many as 50 to 70% of all dementia cases are caused by Alzheimer’s, Alzheimer's net  reported. However, other conditions can also cause dementia, such as Parkinson’s Disease and Creutzfeldt-Jakob disease. In addition, dementia is often incorrectly referred to as "senility" or "senile dementia," which reflects the formerly widespread but incorrect belief that serious mental decline is a normal part of aging.

According to The Alzheimer's Association, the symptoms of dementia vary greatly and can include factors such as memory troubles, communication and language problems, loss of the ability to focus and pay attention, difficulties with reasoning and judgement, and trouble with visual perception. However, different types of dementia are associated with different types of brain damage.

In addition, an estimated 10 percent of people with dementia have more than one type at the same time, with the most common combination being Alzheimer's disease with vascular dementia, The Alzheimer's Society reported.

According to the Alzheimer's Association, Alzheimer’s Disease is a specific type of dementia caused when high levels of certain proteins inside and outside brain cells make it hard for brain cells to stay healthy and to communicate with each other. This leads to the loss of connections between nerve cells, and eventually to the death of nerve cells and loss of brain tissue.

Here's the major difference between Alzheimer’s Disease and dementia — when an individual is diagnosed with dementia, they are diagnosed based on their symptoms without actually knowing what's behind the symptoms. In Alzheimer’s disease, the exact cause of the symptoms is understood. In addition, Alzheimer's disease is not reversible, whereas some types of dementia, such as those caused by nutritional problems or a drug interaction, can be reversed.

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Saturday, January 21, 2017

Delirium could accelerate dementia-related mental decline:

Delirium, a condition in which people become acutely confused and disorientated, may have long-lasting consequences, including accelerated dementia-related mental decline, a new study has warned. The study is the first to show the multiplying effects of delirium, that affects a quarter of older patients, and dementia in these people, researchers said. Episodes of delirium in people who are not known to have dementia, might also reveal dementia at its earliest stages, researchers, including those at University College London in the UK, found.

While both delirium and dementia are important factors in cognitive decline among the elderly, delirium is preventable and treatable through dedicated geriatric care. Further research is needed to understand exactly how delirium interacts with dementia, and how this could be blocked, researchers said. “If delirium is causing brain injury in the short and long-term, then we must increase our efforts to diagnose, prevent and treat delirium. Ultimately, targeting delirium could be a chance to delay or reduce dementia,” said Daniel Davis, who led the research while at the University of Cambridge in the UK.

Scientists looked at three European populations – in Finland, Cambridge and UK-wide – and examined brain specimens in 987 people aged 65 and older. Each person’s memory, thinking and experience of delirium had been recorded over 10 years towards the end of their life. When these were linked with pathology abnormalities due to Alzheimer’s and other dementias, those with both delirium and dementia-changes had the most severe change in memory.

 “Unfortunately, most delirium goes unrecognised. In busy hospitals, a sudden change in confusion is not noticed by hospital staff,” Davis said. “Patients can be transferred several times and staff often switch over – it requires everyone to ‘think delirium’ and identify that a patient’s brain function has changed,” he added. The study was published in the journal JAMA Psychiatry.

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