The effectiveness of the pandemic H1N1 influenza vaccination program, introduced in Scotland in October 2009, has been assessed by a team of researchers from different Scottish and French institutions, coordinated by Dr. Colin Simpson, from the University of Edinburgh. The results of this assessment has been published in the June issue of Lancet.
The vaccination campaign consisted of two phases, the first being aimed at frontline health-care workers, pregnant women and people whose underlying health problems make them more sensitive to influenza-like illness; in the second phase, all children aged between 6 months and 5 years were targeted.
The researchers performed a retrospective study by linking primary care, hospital records and death certification datasets of 247178 persons, representing the 5% of Scottish population. Of them, 38296 (15.5%) were given the vaccination. In this nationally representative cohort there were fewer hospital admissions and deaths from influenza-like illness – influenza, pneumonia, chronic obstructive pulmonary disease and cardiac disorders – in patients who were vaccinated against H1N1 influenza A virus. A representative sub-group of patient was swabbed and tested with RT-PCR, revealing an estimated vaccine effectiveness of 77%. Such a result proved to be higher than recent estimates in case-control studies undertaken in the UK (72%) and Europe (71.9%) but lower than another one performed in Navarre, Spain (89%).
The study thus provided evidence that the Scottish H1N1 vaccination program have been effective, both in terms of protection against the virus and reduction of mortality from influenza-like illness, and is likely to have reduced the burden of pandemic influenza on health-care providers.
Effectiveness in Scotland
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Discovered a New Carbon-Carbon Chemical Bond

A group of researchers from Hokkaido University has provided the first experimental evidence of the existence of a new type of chemical bond: the single-electron covalent bond, theorized by Linus Pauling in 1931 but never verified until now. Using derivatives of hexaarylethane (HPE), the scientists were able to stabilize this unusual bond between two carbon atoms and study it with spectroscopic techniques and X-ray diffraction. This discovery opens new perspectives in understanding bond chemistry and could lead to the development of new materials with innovative applications.
In the cover image: study of the sigma bond with X-ray diffraction. Credits: Yusuke Ishigaki
After nearly a year of review, on September 25, a study was published in Nature that has sparked a lot of discussion, especially among chemists. A group of researchers from Hokkaido University synthesized a molecule that experimentally demonstrated the existence of a new type of chemical bond, something that does not happen very often.