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joi, 15 decembrie 2011

Caffeine Study Shows Sport Performance Increase

Main Category: Sports Medicine / Fitness
Also Included In: Nutrition / Diet
Article Date: 15 Dec 2011 - 2:00 PST

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Caffeine combined with carbohydrate could be used to help athletes perform better on the field, according to new research by a sport nutrition expert.

Mayur Ranchordas, a senior lecturer and performance nutritionist at Sheffield Hallam University, carried out studies on footballers using caffeine and carbohydrates combined in a drink. Along with improvements in endurance caused by ingesting carbohydrate, the athletes' skill level improved after taking caffeine and carbohydrate together.

Mayur said: "There is already plenty of research that shows that caffeine and carbohydrate improve endurance, but this study shows that there is also a positive effect on skill and performance.

"We carried out three different soccer-specific match simulations of 90 minutes each two 45 minute sessions that tested agility, dribbling, heading and kicking accuracy. The test was designed to mimic a football game where the participants had to carry out multiple repeated sprints, dribble the ball around cones and shoot accurately.

"We found that the combination of carbohydrate and caffeine allowed players to sustain higher work intensity for the sprints, as well as improving shooting accuracy and dribbling during simulated soccer activity.

"These findings suggest that, for athletes competing in team sports where endurance and skill are important factors, ingesting a carbohydrate and caffeine drink, as opposed to just a carbohydrate drink, may significantly enhance performance. Our findings suggest that soccer players should choose a carbohydrate caffeine drink over a carbohydrate drink to consume before kick off and at half-time."

Article adapted by Medical News Today from original press release. Source: Sheffield Hallam University
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Intestine Crucial To Function Of Immune Cells, Research Shows

Main Category: Immune System / Vaccines
Also Included In: GastroIntestinal / Gastroenterology;  Arthritis / Rheumatology;  Multiple Sclerosis
Article Date: 15 Dec 2011 - 0:00 PST

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Researchers at the University of Toronto have found an explanation for how the intestinal tract influences a key component of the immune system to prevent infection, offering a potential clue to the cause of autoimmune disorders like rheumatoid arthritis and multiple sclerosis.

"The findings shed light on the complex balance between beneficial and harmful bacteria in the gut," said Prof. Jennifer Gommerman, an Associate Professor in the Department of Immunology at U of T, whose findings were published online by the scientific journal, Nature. "There has been a long-standing mystery of how certain cells can differentiate between and attack harmful bacteria in the intestine without damaging beneficial bacteria and other necessary cells. Our research is working to solve it."

The researchers found that some B cells - a type of white blood cell that produces antibodies - acquire functions that allow them to neutralize pathogens only while spending time in the gut. Moreover, this subset of B cells is critical to health.

"When we got rid of that B-cell function, the host was unable to clear a gut pathogen and there were other negative outcomes, so it appears to be very important for the cells to adopt this function in the gut," said Prof. Gommerman, whose lab conducted the research in mice.

Textbook immunology - based mostly on research done in the spleen, lymph nodes or other sterile sites distant from gut microbes - has suggested that B cells develop a specific immune function and rigidly maintain that identity. Over the last few years, however, some labs have shown the microbe-rich environment of the gut can induce flexibility in immune cell identity.

Prof. Gommerman and her colleagues, including trainees from her lab Drs. Jörg Fritz, Olga Rojas and Doug McCarthy, found that as B cells differentiate into plasma cells in the gut, they adopt characteristics of innate immune cells - despite their traditional association with the adaptive immune system. Specifically, they begin to look and act like inflammatory cells called monocytes, while maintaining their ability to produce a key antibody called Immunoglobulin A.

"What intrigued us was that this theme - B cells behaving like monocytes - had been seen before in fish and in vitro. But now we have a living example in a mammalian system, where this kind of bipotentiality is realized," said Prof. Gommerman.

This B-cell plasticity provides a potential explanation how cells dedicated to controlling pathogens can respond to a large burden of harmful bacteria without damaging beneficial bacteria and other cells essential for proper function of the intestine.

It also may explain how scientists had failed to appreciate the multi-functionality of some B cells. "There are classical markers immunologists use to identify B cells - receptors that are displayed on their surface - and most of them are absent from plasma cells," said Prof. Gommerman. "So in some cases, what people thought was a monocyte could have been a plasma cell because it had changed its surface identity, although monocytes play an important role in innate immunity as well."

This transformational ability, the researchers also found, is dependent on bacteria called commensal microflora that digests food and provides nutrients. That relationship highlights the importance of the gut in fighting infection, and begs the question of whether plasma cells trained in the gut to secrete specific anti-microbial molecules can play a role in other infectious disease scenarios, such as food-borne listeria infection.

It also opens a line of investigation into whether a systemic relationship exists between those anti-microbial molecules and healthy cells in sites remote from the intestine. Understanding the nature of that relationship could improve understanding of inflammatory mechanisms in autoimmune disorders such as lupus, rheumatoid arthritis and multiple sclerosis, in which immune cells attack and eventually destroy healthy tissue.

But the next step, said Prof. Gommerman, is to look at human samples for the same type of multi-potentiality they saw in rodent plasma cells that acquired their anti-microbial properties in the gut.

"We're really at the early stages of understanding what we call the microbiome in the gut," said Prof. Gommerman. "There is a role for plasma cells in many autoimmune diseases, and B cells can do a lot more than just make antibodies. We need to understand the full spectrum of their effects within the immune response."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our immune system / vaccines section for the latest news on this subject. The study was funded by the Canadian Institutes of Health Research, the Canada Foundation for Innovation, the Ontario Research Fund, the Austrian Academy of Sciences and the National Institutes of Health.
University of Toronto Please use one of the following formats to cite this article in your essay, paper or report:

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15 Dec. 2011. APA

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luni, 12 decembrie 2011

First Ever All-Ireland Cancer Atlas Shows Cancer Risk In Northern Ireland Lower Than The Republic Of Ireland

Main Category: Cancer / Oncology
Also Included In: Melanoma / Skin Cancer;  Lymphoma / Leukemia / Myeloma
Article Date: 12 Dec 2011 - 1:00 PST

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People in Northern Ireland have a lower risk of developing some cancers than those living in the Republic of Ireland, according to the All-Ireland Cancer Atlas - a collaborative publication by the Northern Ireland Cancer Registry at Queen's University Belfast and the National Cancer Registry in Cork.

The first ever All-Ireland Cancer Atlas analysed 18 types of cancer by electoral division over a 12-year period. Those cancers which were significantly higher for both sexes in the Republic of Ireland were:

For men, the risk of prostate cancer was higher in the Republic of Ireland and, for women, cancer of the oesophagus and cervix were higher.

Lung cancer, however, was higher in Northern Ireland compared with the Republic.

The following cancers were higher for women in Northern Ireland: Uterus Non-Hodgkin's lymphoma Head and neck cancers The Atlas also found that the following cancers were more common in areas of higher unemployment and/or lower levels of degree attainment across the island: Lung Stomach Head and neck Cervical cancers The following cancers were lower in areas of higher unemployment and/or lower levels of degree attainment: Non melanoma skin cancer Female breast cancer Prostate cancer Melanoma Other findings include: Stomach cancer rates were higher in a band running from Dublin to Donegal, excluding the north-east, but including Belfast. There was no statistically significant difference in female breast cancer risk between the Republic of Ireland and Northern Ireland. The risk of diagnosis of prostate cancer was 29 per cent lower in Northern Ireland. Men in areas with the highest educational attainment had the highest risk. The risk of head and neck cancer was greater, by 21 per cent, for women in Northern Ireland compared to the Republic of Ireland but there was no statistically significant difference for men. Commenting on the findings in the Atlas, Dr Anna Gavin, Director of the Northern Ireland Cancer Registry, said: "Mapping the incidence of cancer geographically in Ireland is hugely important in our quest to understand factors that increase cancer rates and also to provide appropriate treatment and cancer services.

"While it is generally accepted that geographic variations in cancer risk are predominantly the result of factors such as tobacco smoking, alcohol drinking, obesity, diet and sexual behaviour there are also a number of findings which we cannot explain yet including the band of increased stomach cancer incidence from Donegal to Dublin. The launch of the first All-Ireland Cancer Atlas will enable us to further identify different contributing factors to cancer in Ireland."

Dr Harry Comber, Director of the National Cancer Registry, said: "The Atlas shows major variations, sometimes more than two-fold, in the risk of several cancers, across the island. Understanding the reasons for this geographical variation, and taking appropriate action, would reduce the cancer burden significantly in Ireland. Areas with unexplained higher than average risk should now be studied in detail and a comprehensive programme of research into already known determinants of cancer risk in Ireland is needed to inform cancer control."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
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12 Dec. 2011. APA

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