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Showing posts with label Metabolic. Show all posts
Showing posts with label Metabolic. Show all posts

Monday, July 23, 2012

Shedding Light On Human Sweet Perception, Metabolic Disorders With The Help Of Honey Bees

Main Category: Diabetes
Also Included In: Genetics;  Obesity / Weight Loss / Fitness
Article Date: 03 Jul 2012 - 0:00 PDT Current ratings for:
Shedding Light On Human Sweet Perception, Metabolic Disorders With The Help Of Honey Bees
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Scientists at Arizona State University have discovered that honey bees may teach us about basic connections between taste perception and metabolic disorders in humans.

By experimenting with honey bee genetics, researchers have identified connections between sugar sensitivity, diabetic physiology and carbohydrate metabolism. Bees and humans may partially share these connections.

In a study published in the open-access journal PLoS Genetics (Public Library of Science), Gro Amdam, an associate professor, and Ying Wang, a research scientist, in the School of Life Sciences in ASU's College of Liberal Arts and Sciences, explain how for the first time, they've successfully inactivated two genes in the bees' "master regulator" module that controls food-related behaviors. By doing so, researchers discovered a possible molecular link between sweet taste perception and the state of internal energy.

"A bee's sensitivity to sugar reveals her attitude towards food, how old the bee is when she starts searching for nectar and pollen, and which kind of food she prefers to collect," said Wang, the lead author of the paper. "By suppressing these two 'master' genes, we discovered that bees can become more sensitive to sweet taste. But interestingly, those bees also had very high blood sugar levels, and low levels of insulin, much like people who have Type 1 diabetes."

In Amdam's honey bee lab at ASU, scientists suppressed two genes including vitellogenin, which is similar to a human gene called apolipoprotein B, and ultraspiracle, which partners with an insect hormone that has some functions in common with the human thyroid hormone. The team is the first in the world to accomplish this double gene-suppressing technique. Researchers used this method to understand how the master regulator works.

"Now, if one can use the bees to understand how taste perception and metabolic syndromes are connected, it's a very useful tool," said Amdam, who also has a honey bee laboratory at the Norwegian University of Life Sciences. "Most of what we know about deficits in human perceptions is from people who are very sick or have had a brain trauma. We know shockingly little about people in this area."

The researchers are now considering how, exactly, the bees' sweet taste was enhanced by the experiment. The most metabolically active tissue of the bee, called the fat body, may hold the key. The fat body is similar to the liver and abdominal fat in humans, in that it helps store nutrients and create energy.

Amdam explains that taste perception evolved as a survival mechanism, for bees as well as for people. For example, bitter foods may be poisonous or sweet taste may signal foods rich in calories for energy. For all animals, taste perception must communicate properly with one's internal energetic state to control food intake and maintain normal life functions. Without this, poorly functioning taste perception can contribute to unhealthy eating behaviors and metabolic diseases, such as diabetes and obesity.

"From this study, we realized we can take advantage of honey bees in understanding how food-related behaviors interact with internal metabolism, as well as how to manipulate these food-related behaviors in order to control metabolic disorders," added Amdam.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our diabetes section for the latest news on this subject. In addition to Amdam and Wang, the team included former ASU research partners Colin Brent, a research entomologist with the USDA, and Erin Fennern, now with Oregon Health Science University.
A new-born honey bee worker (Apis mellifera) breaks free from her nursery chamber in the colony nest. A few weeks later, she will leave the hive in search for nectar and pollen to feed her siblings and mother queen. The genes vitellogenin and ultraspiracle, which regulate the bees’ behavioral transition to foraging tasks, also coordinate their carbohydrate metabolism, blood sugar levels, sweet taste, and several metabolic genes in adipose tissue. When vitellogenin and ultraspiracle are simultaneously suppressed in adipose cells, the bees develop a metabolic syndrome similar to Type 1 diabetes:
https://asunews.asu.edu/files/5p4r5064.jpg
Photo by: Christofer Bang
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Metabolic Output Profoundly Influenced By Circadian Rhythms

Main Category: Obesity / Weight Loss / Fitness
Also Included In: Diabetes;  Cholesterol
Article Date: 21 Mar 2012 - 1:00 PDT Current ratings for:
'Metabolic Output Profoundly Influenced By Circadian Rhythms'
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By analyzing the hundreds of metabolic products present in the liver, researchers with the UC Irvine Center for Epigenetics & Metabolism have discovered that circadian rhythms - our own body clock - greatly control the production of such key building blocks as amino acids, carbohydrates and lipids.

They identified more than 600 liver-originated metabolites, which are the chemical substances created by metabolism that sustain and promote cell health and growth. Approximately 60 percent of these metabolites were found to be dependent on the endogenous circadian clock - many more than expected, as only about 15 percent of the body's genes are regulated by it.

Circadian rhythms over 24 hours govern fundamental biological and physiological processes in almost all organisms. They anticipate environmental changes and adapt certain bodily functions to the appropriate time of day. Disruption of these cycles can seriously affect human health.

Center for Epigenetics & Metabolism director Paolo Sassone-Corsi, lead author on the study and one of the world's preeminent researchers on circadian rhythms, said the liver metabolites reveal how the body clock - through the main circadian gene, CLOCK - orchestrates the interplay between metabolites and signaling proteins in much the same way a conductor leads a symphony.

"Metabolites and signaling proteins - like the horns and strings in an orchestra - need to be perfectly coordinated, and we've found that CLOCK provides that direction," he said.

Since external cues such as day-night lighting patterns and nutrition influence the circadian machinery, metabolites and their relationship to signaling proteins in cells seem to be acutely tied to circadian disruptions. This may help explain, Sassone-Corsi added, some of the primary physiological factors underlying obesity, high cholesterol and metabolic-based diseases like diabetes.

"This interplay has far-reaching implications for human illness and aging, and it is likely vital for proper metabolism," he said. Study results appear this week in the early online edition of the Proceedings of the National Academy of Sciences.

"By identifying the relationship between metabolites and the body clock, we have taken a first step toward a better understanding of how nutrients interact with our metabolism, giving researchers a new opportunity to spot the optimal times for us to get the fullest benefits from the foods we eat and the medications we take," added Kristin Eckel-Mahan, a UCI postdoctoral researcher in biological chemistry and study co-author.

Working with Metabolon Inc., Sassone-Corsi and Eckel-Mahan created the first liver metabolome - the full set of metabolites. With this information, they partnered with Pierre Baldi, director of UCI's Institute for Genomics & Bioinformatics, and his graduate student Vishal Patel to analyze the data and build CircadiOmics, a Web-based data system that provides detailed profiles of the metabolites and related genes in the liver and the underlying networks through which they interact.

"Within CircadiOmics, we were able to integrate this circadian metabolite data with multiple other data sources to generate the first comprehensive map of the liver metabolome and its circadian oscillations and develop regulatory hypotheses that have been confirmed in the laboratory," said Baldi, Chancellor's Professor of computer science. "CircadiOmics is being expanded with metabolic data about other tissues and conditions and will be invaluable to further our understanding of the interplay between metabolism and circadian rhythms in healthy and diseased states."

Robert Mohney and Katie Vignola of Metabolon, in Durham, N.C., contributed to the study, which received National Institutes of Health and National Science Foundation support.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our obesity / weight loss / fitness section for the latest news on this subject. Please use one of the following formats to cite this article in your essay, paper or report:

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University of California - Irvine. "Metabolic Output Profoundly Influenced By Circadian Rhythms." Medical News Today. MediLexicon, Intl., 21 Mar. 2012. Web.
7 Jun. 2012. APA

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Saturday, July 21, 2012

Positive Impact On Metabolic Syndrome And Satiety Offered By Eggs

Main Category: Nutrition / Diet
Also Included In: Cholesterol;  Heart Disease
Article Date: 26 Apr 2012 - 0:00 PDT Current ratings for:
'Positive Impact On Metabolic Syndrome And Satiety Offered By Eggs'
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At Experimental Biology (EB) 2012 in San Diego, experts convened to discuss the latest science in a variety of health and disease-related areas, including nutrition. Research on whole egg consumption in individuals with metabolic syndrome as well as the positive effects of a higher-protein breakfast is further revealing the potential benefits of including eggs in the diet.

Whole Egg Consumption May Improve Markers of Metabolic Syndrome

A University of Connecticut study presented this week suggests that eating eggs may actually have favorable effects on HDL metabolism in men and women with metabolic syndrome.(i) Participants in the study followed a carbohydrate-restricted diet with some individuals eating three whole eggs per day and others eating an equivalent amount of egg substitute. After 12 weeks, the group eating whole eggs experienced an improvement in HDL measures showing significantly greater increases in the number and size of HDL particles. HDL or "good" cholesterol scavenges for fat throughout the bloodstream and returns it to the liver, making it less likely that fatty deposits will build up in the blood vessels and lead to atherosclerosis.

Related findings were also presented in separate sessions that suggest that consuming whole eggs as part of a carbohydrate-restricted diet may help to further improve markers indicative of inflammation, such as tumor necrosis factor-alpha, in individuals with metabolic syndrome.(ii)

Higher-Protein Breakfast Reduces High-Fat Snacking

A study by researchers at the University of Missouri found that teen girls reported greater feelings of satiety and experienced improved hormone responses related to hunger and satiety after consuming a higher-protein breakfast, containing about 35 grams of protein from egg or beef-based foods. Teen girls who consumed a high-protein breakfast also ate fewer snacks, especially those higher in fat, later in the day.(iii) These findings build on past research showing the benefits of high-quality protein on satiety, further supporting the science behind what makes eggs such a satisfying breakfast choice.(iv)

Clarifying Cholesterol Confusion

Many Americans avoid the dietary cholesterol found in eggs for fear of raising their risk of heart disease, but more than 40 years of research has shown that healthy adults can enjoy eggs without concern for increasing their risk for heart disease. Additionally, an analysis from the United States Department of Agriculture's Agricultural Research Service showed that eggs have 14 percent less cholesterol (down from 215 mg to 185 mg) than previously measured.(v) Established research also has shown that saturated fat intake may be more likely to raise a person's blood cholesterol than dietary cholesterol intake and eggs contain relatively little saturated fat.(vi) The findings presented at this week's meeting in combination with the decades of science demonstrating the health benefits of eating eggs further support the role of eggs in a nutritious diet.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our nutrition / diet section for the latest news on this subject. i Andersen CJ, Blesso CN, Park Y, Barona J, Pham T, Lee J and Fernandez ML. Carbohydrate restriction favorably affects HDL metabolism in men and women with metabolic syndrome: addition of egg yolk further increases large HDL particles. Experimental Biology 2012. San Diego, CA. April 23, 2012.
ii Blesso CN, Andersen CJ, Barona J, Volk B, Volek JS and Fernandez ML. A moderate carbohydrate-restricted diet results in weight loss and improves clinical parameters of metabolic syndrome in adult men and women and addition of egg yolk further improves inflammation. Experimental Biology 2012. San Diego, CA. April 23, 2012.
iii Leidy HJ, Ortinau LC, Douglas SM, Hoertel HA. Effects of Increased Dietary Protein at Breakfast on Appetite Control & Energy intake Throughout the Day in Overweight 'Breakfast Skipping' Teen Girls. Experimental Biology 2012. San Diego, CA. April 23, 2012.
iv Leidi HJ, Racki EM. The addition of a protein-rich breakfast and its effects on acute appetite control and food intake in 'breakfast-skipping' adolescents. International Journal of Obesity. E-pub ahead of print February 2010.
v US Department of Agriculture, Agricultural Research Service, 2011. USDA National Nutrient Database for Standard Reference, Release 23. Online. Available at: Nutrient Data Laboratory Home Page, http://www.ars.usda.gov/main/site_main.htm?modecode=12-35-45-00. Accessed October 24, 2011.
vi Siri-Tarino PW, Sun Q, Hu FB, Krauss RM. Saturated fat, carbohydrate, and cardiovascular disease. Am J Clin Nutr. 2010;91: 535-546.
Edelman Public Relations Please use one of the following formats to cite this article in your essay, paper or report:

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posted by RD on 27 Apr 2012 at 6:44 am

This piece about eggs is a PR article by Edelman PR agency, not a serious piece of research. Richard Edelman, the CEO's, current assignments include work for the National Dairy Council.

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posted by Axel F on 26 Apr 2012 at 1:12 pm

This adds support to previous study results that low carb/high fat diets may be favorable in patients with the metabolic syndrome. Generalized diet recommendations that apply to everybody are not justified.

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Wednesday, July 11, 2012

Honey Bees Reveal Link Between Sugar Sensitivity And Metabolic Disorders

Featured Article
Academic Journal
Main Category: Biology / Biochemistry
Also Included In: Diabetes;  Obesity / Weight Loss / Fitness;  Nutrition / Diet
Article Date: 03 Jul 2012 - 3:00 PDT Current ratings for:
Honey Bees Reveal Link Between Sugar Sensitivity And Metabolic Disorders
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Scientists studying the genetics of honey bees found they reveal some insights into the link between sugar sensitivity, diabetic physiology and carbohydrate metabolism that may also be relevant to humans.

Lead author Ying Wang, a research scientist, in the School of Life Sciences in the College of Liberal Arts and Sciences at Arizona State University (ASU), and colleagues, write about their findings in a paper published on 28 June in the open access journal PLoS Genetics.

Honey bees offer a useful model for studying what influences food-related behavior, such as the role of taste sensitivity in making choices between foods rich in carbohydrate and food rich in protein (for bees this is choosing between nectar and pollen).

A young bee's sensitivity to sugar predicts what she will forage for later in life, as Wang explained to the press:

"A bee's sensitivity to sugar reveals her attitude towards food, how old the bee is when she starts searching for nectar and pollen, and which kind of food she prefers to collect."

To study the processes that influence this, Wang and colleagues successfully inactivated two genes in the "master regulator" that controls the bees' food-related behavior.

When they did this, they discovered a possible molecular link between sweet taste perception and the state of internal energy.

"By suppressing these two 'master' genes, we discovered that bees can become more sensitive to sweet taste. But interestingly, those bees also had very high blood sugar levels, and low levels of insulin, much like people who have Type 1 diabetes," said Wang.

One of the genes they suppressed is called vitellogenin, which codes for a protein in the bee's fat cells and is similar to a human gene called apolipoprotein B. The other gene is called ultraspiracle, which partners with an insect hormone that has some functions in common with the human thyroid hormone.

The bee lab at ASU is run by the paper's senior author Gro Amdam, an ASU associate professor, who also runs a bee lab at the Norwegian University of Life Sciences.

Amdam said if they can use the bees to understand how taste perception and metabolic syndrome are linked, it could be a very useful tool for research. Metabolic syndrome is a cluster of risk factors that together increase the risk of developing cardiovascular disease and diabetes.

"Most of what we know about deficits in human perceptions is from people who are very sick or have had a brain trauma. We know shockingly little about people in this area," said Amdam.

Amdam explained that taste perception evolved in humans as well as bees, as a survival mechanism to help distinguish between foods that might be poisonous (which tend to be bitter) and foods that might be rich in calories (which tend to be sweet).

In all animals, from insects to humans, a communication goes on between the internal energy state and taste perception that regulates food intake and maintains normal life functions in the body. Without this, poorly functioning taste perception can spur unhealthy eating behaviors and metabolic diseases such as diabetes and obesity.

Amdam said this study has helped them realize they can use honey bees to understand how food-related behavior interacts with internal metabolism. The findings also give them insights into how to manipulate these behaviors in order to control metabolic disorders.

The team is now planning to find out how the absence of the two genes in the master regulator enhances bees' sensitivity to sweetness.

They have a hunch that it could be to do with the "fat body" in bees. This is the most metabolically active tissue in bees, it helps store nutrients and make energy, much like the liver and abdominal fat in humans.

Written by Catharine Paddock PhD
Copyright: Medical News Today
Not to be reproduced without permission of Medical News Today

Visit our biology / biochemistry section for the latest news on this subject. "Gustatory Perception and Fat Body Energy Metabolism Are Jointly Affected by Vitellogenin and Juvenile Hormone in Honey Bees"; Ying Wang, Colin S. Brent, Erin Fennern, Gro V. Amdam; PLoS Genetics, published 28 Jun 2012; DOI: 10.1371/journal.pgen.1002779; Link to Article.
Additional source: Arizona State University.
Please use one of the following formats to cite this article in your essay, paper or report:

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Catharine Paddock PhD. "Honey Bees Reveal Link Between Sugar Sensitivity And Metabolic Disorders." Medical News Today. MediLexicon, Intl., 3 Jul. 2012. Web.
5 Jul. 2012. APA

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posted by denise on 3 Jul 2012 at 11:54 am

i'm a beekeeper and i'm wondering what you're referencing when you say SUGAR. in the beekeeping world, besides the SUGAR from flowers (nectar) - beekeepers sometimes supplement food stores with SUGAR syrup (white cane) or (high fructose corn syrup) SUGAR.

i'd like to see the results differentiated. my guess is that the study based on HIGH FRUCTOSE CORN SYRUP would lead to even more metabolic disorders...as we're finding in humans....

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'Honey Bees Reveal Link Between Sugar Sensitivity And Metabolic Disorders'

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