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International Panel Of Experts Reaches Consensus On Diagnosis And Treatment Of Bleeding Disorders In Women
Because bleeding from the reproductive tract is a naturally occurring event during menstruation and childbirth, women who exhibit menorrhagia, or excessive bleeding after their menstrual cycle, may have underlying diseases that are underdiagnosed. In order to address important issues related to the diagnosis and management of reproductive tract bleeding in women with bleeding disorders, a consensus conference was convened. Results are published in the July 2009 issue of the American Journal of Obstetrics & Gynecology.
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Counselling To Overcome Challenges, UK
Counsellors from around the world will meet to discuss their role in helping people deal with social, cultural, economic and natural challenges at the 2009 International Association for Counselling (IAC) Counference organised by the British Association for Counselling and Psychotherapy (BACP).
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Abbott And AstraZeneca Extend Relationship To Include Co-promotion Of TRILIPIX(R) (fenofibric Acid)
Abbott and AstraZeneca announced today that they have entered into an agreement for AstraZeneca to co-promote Abbott"s TRILIPIX® (fenofibric acid), a medication for use alone or in combination with a statin to treat certain lipid disorders. Under the terms of the agreement, AstraZeneca will obtain the non-exclusive right to co-promote TRILIPIX alongside Abbott in the United States, excluding Puerto Rico. Specific financial terms were not disclosed.
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Breakthrough In The Treatment Of Bacterial Meningitis

It can take just hours after the symptoms appear for someone to die from bacterial meningitis. Now, after years of research, experts at The University of Nottingham have finally discovered how the deadly meningococcal bacteria is able to break through the body"s natural defence mechanism and attack the brain. The discovery could lead to better treatment and vaccines for meningitis and could save the lives of hundreds of children. Bacterial meningitis in childhood is almost exclusively caused by the respiratory tract pathogens Streptococcus pneumoniae, Neisseria meningitidis, and Haemophilus influenzae. The mechanism used by these lethal germs to break through the blood brain barrier (BBB) has, until now, been unknown. The team led by Dlawer Ala"Aldeen, Professor of Clinical Microbiology and Head of the Molecular Bacteriology and Immunology Group at the Centre for Biomolecular Sciences, recently discovered that all three pathogens target the same receptor on human cerebrovascular endothelial cells - the specialised filtering system that protects our brain from disease - enabling the organisms to cross the blood-brain barrier. Their findings, published today in The Journal of Clinical Investigation, suggest that disruption or modulation of this interaction of bacterial adhesins with the receptor might offer unexpectedly broad protection against bacterial meningitis and may provide a therapeutic target for the prevention and treatment of disease. Professor Ala"Aldeen, who has been studying meningitis and its causes for over 20 years, said: "This is a significant breakthrough which will help us design novel strategies for the prevention and treatment of bacterial meningitis. Identification of the human receptor and bacterial ligands is like identifying a mysterious key and its lock, which will open new doors and pave the way for new discoveries." The research, carried out in collaboration with the Department of Infectious Diseases at St. Jude Children"s Research Hospital in Memphis Tennessee, also involved students from the University who have been regular and willing volunteers in the research programme. Professor Ala"Aldeen said: "The ultimate aim is to save lives by protecting the healthy and curing the sick. We are one step closer to new breakthroughs that would prevent disease or its complications. There still is a long way to go before we have the ultimate vaccine and the ultimate treatment of bacterial meningitis." Professor Dlawer Ala-Aldeen University of Nottingham


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