Tuesday, January 05, 2021

Bacteria Found in Human Gut Could Play Key Role in Treating Type 2 Diabetes

Researchers at Oregon State University in the US have found that a few organisms in the gut microbiome play a key role in type 2 diabetes, opening the door to possible probiotic treatments for a serious metabolic disease.

The human gut microbiome features more than 10 trillion microbial cells from about 1,000 different bacterial species.

Dysbiosis, or imbalance, in the microbiome is commonly associated with detrimental effects on a person's health.

According to study co-leader Andrey Morgun, the so-called 'western diet' high in saturated fats and refined sugars is one of the primary factors. "But gut bacteria have an important role to play in modulating the effects of diet."

A key risk factor for type 2 diabetes is being overweight, often a result of a western diet in combination with low physical activity. "Some studies suggest dysbiosis is caused by complex changes resulting from interactions of hundreds of different microbes," said Natalia Shulzhenko, an associate professor of biomedical sciences. "However, our study and other studies suggest that individual members of the microbial community, altered by diet, might have a significant impact on the host."

Shulzhenko and Morgun used a new, data-driven, systems-biology approach called Transkingdom network analysis to study host-microbe interactions under a western diet. That allowed them to investigate whether individual members of the microbiota played a part in metabolic changes the diet induces in a host.

"The analysis pointed to specific microbes that potentially would affect the way a person metabolizes glucose and lipids," Morgun said. The scientists identified four operational taxonomic units, or OTUs, that seemed to affect glucose metabolism; OTUs are a means of categorizing bacteria based on gene sequence similarity.

The identified OTUs corresponded to four bacterial species: Lactobacillus Johnsonii, Lactobacillus Gasseri, Romboutsia Ilealis and Ruminococcus Gnavus. Checking the mouse results against data from an earlier human study, the scientists found correlations between human body mass index and abundance of the four bacteria more of the improvers meant a better body mass index, more of the worseners was connected to a less healthy BMI.

"We found R. Ilealis to be present in more than 80 per cent of obese patients, suggesting the microbe could be a prevalent Pathobiont in overweight people," Shulzhenko said.

"Our study reveals potential probiotic strains for treatment of type 2 diabetes and obesity as well as insights into the mechanisms of their action," Morgun said in a paper published in Nature Communications.

"That means an opportunity to develop targeted therapies rather than attempting to restore 'healthy' microbiota in general."

 

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Thursday, July 04, 2019

Early morning workouts best for weight loss

When trying to lose weight, the timing of exercise plays a key role, recent findings suggest.

In a study of 375 adults who have successfully maintained weight loss and who engage in moderate-to-vigorous intensity physical activity, most reported consistency in the time of day that they exercised, with early morning being the most common time.

The study also found that being consistent in the timing of physical activity was associated with higher physical activity levels, regardless of whether people exercised consistently during the morning, afternoon, or evening.

"Our findings warrant future experimental research to determine whether promoting consistency in the time of day that planned and structured physical activity is performed can help individuals achieve and sustain higher levels of physical activity," said senior author.


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Friday, March 04, 2016

Protein that promotes brain tumour formation identified

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 Researchers have found that a protein involved in the breakdown of glucose - a process known as glycolysis -- plays an important role in coordinating cellular processes crucial to cancer metabolism and brain tumour formation.
The findings may lay the groundwork for improved approaches to diagnosis and treatment of glioblastoma and other cancers.

The study showed that PGK1, which is associated with cancer cell proliferation and drug resistance, was instrumental in glycolysis and the citric acid cycle -- both important for generating the energy that feeds cancer cells.


 "Our study highlights that PGK1 acts as a protein kinase in coordinating glycolysis and the citric acid cycle in cancer metabolism and tumour formation," said Zhimin Lu, professor at The University of Texas MD Anderson Cancer Centre in the US.

The study, published online in the journal Molecular Cell, also shed further light on the Warburg effect, an enzymatic mechanism that cancer cells employ to boost energy levels and produce cellular substances that lead to rapid cancer growth.

"The Warburg effect promotes tumour progression. Exactly how this is coordinated has remained elusive," Lu noted.

"Our findings provided critical insight into the Warburg effect and demonstrates that PGK1 ultimately promotes cancer cell proliferation and tumour formation," he said.

"It may help us to develop a molecular basis for improved diagnosis and treatment of cancer," Lu pointed out.

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Wednesday, December 02, 2015

Scientists isolate genes that delay Alzheimer's disease

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A team of researchers have identified a network of nine genes that play a key role in the onset of Alzheimer’s disease and these findings could help scientists develop new treatments to delay the onset of the disease in a study of a family of 5,000 people in Columbia, scientists identified genes that delayed the disease and others that accelerated it, and by how much. 

Arcos-Burgos at the John Curtin School of Medical Research said that if they could work out how to decelerate the disease, then they could have a profound impact. 

Mr.Burgos said that it would be more successful to delay the onset of the disease than to prevent it completely, adding that even if they delay the onset by on average one year, that would mean nine million fewer people will have the disease in 2050. 

Burgos and his team studied the variable age of onset of dementia in this family and with the cooperation of the family, the team were able to discount environmental factors and trace their genetic predisposition to Alzheimer’s Disease back to a founder mutation in one individual who came to the region about 500 years ago. 

The team was able to isolate the nine genes involved in Alzheimer’s, some of which delay the onset by up to 17 years, while others advance its progress. 

The study is published in the Journal Molecular Psychiatry.

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