Thursday, August 29, 2019

Researchers find new drug to prevent neural deaths

A team of scientists has found a new drug that may prevent neural death through glucose metabolism modification in stressed neurons.

The trials conducted on mice are rather promising for future use in humans. The new drug can be advantageous in neurological conditions ranging from Amyotrophic lateral sclerosis, Alzheimer's and Huntington's diseases to traumatic brain injury and ischemic stroke.


According to WHO, stroke is the 2nd most common cause of mortality and more than a third of people who have survived a stroke will have a severe disability.


As the population ages, many more millions are poised to develop Alzheimer's or Parkinson's disease in the near future.


Glycolysis is generally considered as the metabolic pathway essential for cell survival since it meets cell energy needs in case of intensive energy consumption.


However, it is already known that in the brain tissue, the situation is quite different-different cell types show distinct glucose metabolism patterns.


In Neurons, only a small portion of glucose is consumed vie the glycolysis pathway. At the same time, astrocytes provide nutrients to neurons and utilise glycolysis to metabolise glucose.


These differences are mostly due to the special protein called PFKFB3, which is normally absent in neurons and is active is astrocytes.


In the case of certain neurological diseases, stroke being one of them, the amount of active PFKFB3 increases in neurons, which is highly stressful for these cells and leads to cell death.
Researchers in the in vivo experiments confirmed that a small molecule, the inhibitor or PFKFB3, may prevent cell death in the case of ischemia injury.


Inhibition of PFKFB3 improves co-ordination of mice after stroke and reduced brain infarct volume. Moreover, PFKFB3 inhibitor protects neurons from the amyloid-beta peptide, the main component of the amyloid plaques found in the brains of Alzheimer's disease patients. 


A Prof. said, " Excitotoxicity is a hallmark of various neurological diseases, stroke being one of them. Our group has previously established a link between this pathological condition and high activity of PFKFB3 enzyme in neurons, which leads to severe oxidative stress and neuronal death".


These promising results bring hope to dozens of millions of patients suffering from life-threatening neurological disease, mentioned a researcher.


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Wednesday, June 19, 2019

Breast cancer raises heart disease risk

Researchers have found that postmenopausal women with breast cancer are at greater risk of developing cardiovascular disease.

“Heart disease appears more commonly in women treated for breast cancer because of the toxicities of chemotherapy, radiation therapy and use of aromatase inhibitors, which lower estrogen,” said a Prof.

The cardiovascular effects may occur more than five years after radiation exposure, with the risk persisting for up to 30 years.

“Heart-healthy lifestyle modifications will decrease both the risk of recurrent breast cancer and the risk of developing heart disease,” she said.

The goal of the study was to compare and evaluate risk factors for cardiovascular disease in postmenopausal women who are survivors of breast cancer and women without breast cancer. 

For the findings, more than 90 postmenopausal breast cancer survivors were compared with 192 postmenopausal women.

The researchers found that postmenopausal women who are survivors of breast cancer showed a markedly stronger association with metabolic syndrome, diabetes, atherosclerosis, 
hypertriglyceridemia and abdominal obesity, which are major risk factors for cardiovascular disease.
The risk of cardiovascular mortality similarly increased to match death rates from cancer itself.

“Women should schedule a cardiology consultation when breast cancer is diagnosed and continue with ongoing follow-up after cancer treatments are completed,” she added.

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/                                                                                                                                                FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                  https:// kneereplacement-stickclub.blogspot.com/                                                                      FOR CROCHET DESIGNS                                                                                                                                                                                     https://gscrochetdesigns.blogspot.com



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Tuesday, January 29, 2019

Heavy drinking can change your DNA

Are you a heavy drinker? Take note. Besides alcohol taking a toll on your health in many ways, it may also trigger a long-lasting genetic change resulting in an even greater craving for alcohol, researchers  have warned.

"We found that people who drink heavily may be changing their DNA in a way that makes them crave alcohol even more," said a Prof. "This may help explain why alcoholism is such a powerful addiction, and may one day contribute to new ways to treat alcoholism or help prevent at-risk people from becoming addicted," said the Prof.

For the study, researchers focused on two genes implicated in the control of drinking behaviour: PER2, which influences the body's biological clock, and POMC, which regulates our stress-response system.

By comparing groups of moderate, binge and heavy drinkers, the team found that the two genes had changed in binge and heavy drinkers through an alcohol-influenced gene modification process called methylation, according to the findings.

In addition, the binge and heavy drinkers also showed reductions in gene expression, or the rate at which these genes create proteins. These changes increased with greater alcohol intake.
Also, in another experiment, the drinkers viewed stress-related, neutral or alcohol-related images. They were also shown containers of beer and subsequently tasted beer, and their motivation to drink was evaluated. 

Results showed that alcohol-fuelled changes in the genes of binge and heavy drinkers were associated with a greater desire for alcohol. The findings may eventually help researchers identify biomarkers -- measurable indicators such as proteins or modified genes -- that could predict an individual's risk for binge or heavy drinking, the Prof. noted.

In 2016, more than 3 million people died from the harmful use of alcohol. More than three quarters of alcohol-caused deaths were among men. The harmful use of alcohol also caused 5.1 per cent of disease and injuries worldwide, according to the World Health Organization.

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, March 22, 2014

Accelerating muscle cells generation from stem cells possible

In a path-breaking discovery, researchers at University of Wisconsin-Madison have discovered a novel way to make large concentrations of skeletal muscle cells from human stem cells.
The new method could be used to generate large numbers of muscle cells and muscle progenitors directly from human pluripotent stem cells.
These stem cells, such as embryonic (ES) or induced pluripotent stem (iPS) cells, can be made into virtually any adult cell in the body.
"The novelty of this technique is that it generates a larger number of muscle stem cells without using genetic modification which is required by existing methods for making muscle cells," explained Masatoshi Suzuki, an assistant professor of comparative biosciences in school of veterinary medicine at University of Wisconsin-Madison.
Adapting a method previously used to make brain cells, Suzuki directed universal stem cells to become both adult muscle cells and muscle progenitors.
Importantly, the new technique grows the pluripotent stem cells as floating spheres in high concentrations of two growth factors - fibroblast growth factor-2 and epidermal growth factor.
These growth factors 'urge' the stem cells to become muscle cells.
"The new protocol avoids some techniques that would prohibit clinical applications. We think this new method has great promise for alleviating human suffering," added co-author Jonathan Van Dyke, a post-doctoral fellow in Suzuki's laboratory.
The new technique can also be used to grow muscle cells from iPS cells from patients with neuromuscular diseases like amyotrophic lateral sclerosis (ALS), spinal muscular atrophy and muscular dystrophy.
Thus, the technique could produce adult muscle cells in a dish that carry genetic diseases.
The new protocol incorporates a number of advantages.
First, the cells are grown in defined supplements without animal products such as bovine serum, enhancing the clinical safety for the muscle stem cells.
Second, when grown as spheres, the cells grow faster than with previous techniques.
Third, 40 to 60 percent of the cells grown using the process are either muscle cells or muscle progenitors, a high proportion compared to traditional non-genetic techniques of generating muscle cells.
"These cells could then be used as a tool for studying these diseases and screening potential drug compounds," Suzuki noted in a paper published in the journal Stem Cells Translational Medicine.

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