Omega-3 research sheds light on inflammation trigger
25 August 2009
BBSRC-funded scientists at the University of Birmingham have discovered a previously unknown step in early inflammation which is controlled by omega –3 and omega –6 fatty acids, potentially leading to clarification around conflicting health and diet advice on these two essential nutrients.
Dr Ed Rainger, from the Centre for Cardiovascular Sciences at the University, has discovered that a key product in the metabolism of omega –6 fatty acids is an essential signal for neutrophils (white blood cells that form an essential part of the immune system) to cross the endothelium, the thin layer of cells that line the interior surface of blood vessels, to work on inflammation.
Dr Rainger says the findings of the study, funded by BBSRC and the British Heart Foundation, will open up new possibilities: “The identification of these novel mechanisms by which inflammation is regulated may allow us to develop new therapies to intervene when the process of inflammation becomes pathological rather than physiological.”
These latest discoveries bolster the evidence that fish oils have anti-inflammatory effects in addition to other health benefits. Dr Rainger and his team have revealed new steps in the body’s response to tackling inflammation which researchers hope will lead to designing potential new drugs to tackle severe and chronic disease such as rheumatoid arthritis.
The team also found that the migration of neutrophils could be blocked by the increased levels of omega -3 generated after the endothelial cells had been supplemented with this omega –3 fatty acid.
Dr Rainger and his team conducted the study using a realistic, flow based system that models the process of inflammation at the interface of the circulating blood and inflamed tissue. They were then able to observe the effects of physiological levels of omega –3 and omega –6 fatty acids on the process of recruiting inflammatory blood cells such as neutrophils into the tissue. This process is regulated by endothelial cells lining the blood vessels.
Dr Ed Rainger, said: “Our findings are very significant. They support the idea that omega–6 fatty acids are pro-inflammatory – that they are required to sustain a normal inflammatory response without which we would be prone to serious infection and tissue damage.”
Conversely, Dr Rainger has uncovered mechanistic evidence that supports the anti-inflammatory role of omega -3 fatty acids: “We’ve all heard about the health benefits of eating oily fish, and its beneficial effects on cardiovascular health, possibly due to their anti inflammatory properties, yet little is known about the normal cellular mechanisms by which omega –3 fatty acids produce their protective effects.”
Nutritionists believe that imbalances in omega –3 and –6 - may explain the rise of diseases such as asthma, coronary heart disease, cancers, autoimmunity and neurodegenerative diseases, all of which are believed to stem from inflammation in the body.
Notes to editors
Fatty acids and Inflammation: novel interactions reveal a new step in neutrophil recruitment is published in PLoS Biology on 25 August.
The Biotechnology and Biological Sciences Research Council (BBSRC) is the UK funding agency for research in the life sciences. Sponsored by Government, BBSRC annually invests around £450 million in a wide range of research that makes a significant contribution to the quality of life for UK citizens and supports a number of important industrial stakeholders including the agriculture, food, chemical, healthcare and pharmaceutical sectors. BBSRC carries out its mission by funding internationally competitive research, providing training in the biosciences, fostering opportunities for knowledge transfer and innovation and promoting interaction with the public and other stakeholders on issues of scientific interest in universities, centres and institutes.
The Babraham Institute, Institute for Animal Health, Institute of Food Research, John Innes Centre and Rothamsted Research are Institutes of BBSRC. The Institutes conduct long-term, mission-oriented research using specialist facilities. They have strong interactions with industry, Government departments and other end-users of their research.
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