Popular Articles
Teeth Whitening Products

Survival In Prostate Cancer Patients >/=70 Years After Radical Prostatectomy And Comparison To Younger Patients
UroToday.com - In the online issue of the World Journal of Urology, a group headed by Professor Markus Hohenfellner compared the outcomes of radical prostatectomy (RP) in men younger and older than age 70 years. They suggest that in well-selected men over age 70 years, the outcomes are comparable.
generic viagra online
NACDS To Honor Len DeMino At NACDS Pharmacy & Technology Conference As Industry Icon Announces Retirement As Consultant To The Association
The National Association of Chain Drug Stores (NACDS) today announced that the 2009 NACDS Pharmacy & Technology Conference will provide a forum at which to provide further recognition to Leonard J. DeMino, RPh., a chain pharmacy icon whose resume already includes some of the industry"s highest honors and achievements. This news comes as DeMino announces his retirement as senior pharmacy consultant to NACDS, effective in June 2009.
News of the day
Secretary Sebelius Praises National Conference Of State Legislatures Vote In Favor Of Health Insurance Reform
HHS Secretary Kathleen Sebelius congratulated the National Conference of State Legislatures (NCSL) after the conference approved an amendment in favor of health insurance reform. The amendment was approved by a vote of 38-11. According to NCSL rules, amendments must receive 75 percent of the vote in order to pass.
Endocrinology

Scientists Develop Mathematical Model To Predict The Immune Response To Influenza

Researchers at the University of Rochester have developed a mathematical model to predict immune responses to infection with influenza A viruses, including novel viruses such as the emergent 2009 influenza A (H1N1). This model examines the contributions of specific sets of immune cells in fighting influenza A virus. The model also helps predict when during the immune response to viral infection antiviral therapy would be most effective. The project was conducted by investigators funded through the Modeling Immunity for Biodefense program, a program established in 2005 by the National Institute of Allergy and Infectious Diseases (NIAID), part of the National Institutes of Health, to improve preparedness for emerging and re-emerging pathogens. When an individual is infected by a virus, a network of immune cells becomes immediately engaged, taking up viral particles and presenting pieces of the virus - antigens - to specialized white blood cells, thereby initiating a virus-specific response. The responding cells include T cells - which either directly attack and eliminate virus-infected cells or help other immune cells fight the virus - as well as B cells, which produce antibodies that bind and neutralize the virus. The mathematical model developed by the research team generates immune response scenarios reflecting multiple variables, including the pathogenicity of the virus, numbers of responding B and T cells and function of antigen-presenting cells, in the lungs and lymph nodes. Their model suggests that prolonged viral infection limits the production of T cells and inhibits antigen presentation to immune cells. Confirming previous findings, the mathematical model predicts that antiviral therapy is most effective in reducing the spread of the virus when given within two days after infection. The research team tested the accuracy of their model in mice infected with influenza A virus. They next plan to apply the model to human populations and continue to improve the model as more data become available. In addition to the investigators in Rochester, NIAID supports three additional laboratories across the United States as part of the Modeling Immunity for Biodefense program. These scientists are conducting immune modeling research with the goal of developing models to simulate host immune responses to infections or vaccination in order to better treat and prevent diseases affecting millions of people, such as seasonal flu and tuberculosis. Article: HY Lee et al. Simulation and prediction of the adaptive immune response to influenza A virus infection. Journal of Virology. DOI: 10.1128/JVI.00098-09. Who: Timothy A. Gondrç©-Lewis, Ph.D., Program Officer, Immunoregulation Section, Basic Immunology Branch, NIAID Division of Allergy, Immunology and Transplantation. Julie Wu NIH/National Institute of Allergy and Infectious Diseases


Add your comment:
Name:
Site address: http://
Your message:
Enter today\\\\'s date, 2 digits
(spam protection):